<?xml version="1.0" ?>
<document version="1.7" entity_encoding="single">
  <page number="1">
    <text>**Soft Tissue Calcifications**
**and Ossifications**
**in the Head and Neck**

Dr. May Lam
Oral and Maxillofacial Radiologist
Senior lecturer
BDSc (Hons) FRACDS (GDP) DClinDent (DMFR) MRACDS (DMFR)</text>
    <formatted_text>Dr. May Lam

Oral and Maxillofacial Radiologist

Senior lecturer

BDSc (Hons) FRACDS (GDP) DClinDent (DMFR) MRACDS (DMFR)</formatted_text>
  </page>
  <page number="2">
    <text>&lt;h2&gt;Heterotopia&lt;/h2&gt;

&lt;ul&gt;
  &lt;li&gt;&lt;b&gt;Definition:&lt;/b&gt; The presence of a particular tissue type at a non-physiological site, but usually co-existing with original tissue in its correct anatomical location. In other words, it implies ectopic tissue, in addition to retention of the original tissue type.&lt;/li&gt;
  &lt;li&gt;Two types:
    &lt;ul&gt;
      &lt;li&gt;Heterotopic calcification&lt;/li&gt;
      &lt;li&gt;Heterotopic ossification&lt;/li&gt;
    &lt;/ul&gt;
  &lt;/li&gt;
&lt;/ul&gt;</text>
    <formatted_text>**Definition:** The presence of a particular tissue type at a non-physiological site, but usually co-existing with original tissue in its correct anatomical location. In other words, it implies ectopic tissue, in addition to retention of the original tissue type.

Two types:

- Heterotopic calcification
- Heterotopic ossification</formatted_text>
    <audio_inserts count="1">
      <insert timestamp="00:02:21" confidence="5" anchor="- Heterotopic ossification">
- ==Because these findings remain in their anatomical locations, interpretation on panoramic radiographs requires familiarity with the head and neck anatomy visible on the panoramic image.==</insert>
    </audio_inserts>
  </page>
  <page number="3">
    <text># Heterotopic Calcifications

*   When deposition of calcium salts occurs in an &lt;u&gt;unorganised&lt;/u&gt; fashion in soft tissue
*   Divided into 3 categories:

| Dystrophic calcification | Metastatic calcification | Idiopathic calcification (or calcinosis) |
| :--- | :--- | :--- |
| • **Forms in degenerating/diseased/dead tissue**&lt;br&gt;• Normal serum calcium and phosphate levels&lt;br&gt;• Often localised to site of injury | • Mineral precipitation into normal tissue due to **higher than normal serum levels of calcium** (e.g. hyperparathyroidism, hypercalcemia of malignancy) **or phosphate** (e.g. chronic renal failure)&lt;br&gt;• Typically occurs bilaterally and symmetrically | • **Deposition of calcium in normal tissue**&lt;br&gt;• Normal serum calcium and phosphate levels&lt;br&gt;• E.g. chondrocalcinosis, phleboliths |

![](L2 - Opacities in Dental Imaging_figures/img_6692e3eaa4ed33dd.webp)</text>
    <formatted_text>- When deposition of calcium salts occurs in an *unorganised* fashion in soft tissue
- Divided into 3 categories:

| Dystrophic calcification | Metastatic calcification | Idiopathic calcification (or calcinosis) |
| :--- | :--- | :--- |
| • Forms in degenerating/diseased/dead tissue&lt;br&gt;• Normal serum calcium and phosphate levels&lt;br&gt;• Often localised to site of injury | • Mineral precipitation into normal tissue due to higher than normal serum levels of calcium (e.g. hyperparathyroidism, hypercalcemia of malignancy) or phosphate (e.g. chronic renal failure)&lt;br&gt;• Typically occurs bilaterally and symmetrically | • Deposition of calcium in normal tissue&lt;br&gt;• Normal serum calcium and phosphate levels&lt;br&gt;• E.g. chondrocalcinosis, phleboliths |</formatted_text>
    <audio_inserts count="2">
      <insert timestamp="00:16:06" confidence="2" anchor="• Deposition of calcium in normal tissue&lt;br&gt;• Normal serum calcium and phosphate">
- ==The cause is unknown==</insert>
      <insert timestamp="00:01:53" confidence="9" anchor="Examples of soft tissue calcifications such as progressive myositis ossificans a">
- ==Bone formation within muscles in myositis ossificans==
- ==Extra bone formation around the spine in ankylosing spondylitis==</insert>
    </audio_inserts>
    <images>
      <img order="0" bbox="80,489,925,914" bbox_format="xyxy_norm_1000" bbox_origin="top_left" bbox_space="page" type="table" path="L2 - Opacities in Dental Imaging_figures/img_6692e3eaa4ed33dd.webp">
        <description>A three-column comparison table categorizing heterotopic calcifications into Dystrophic, Metastatic, and Idiopathic types. Each column features a distinct header color (red, orange, green) and lists specific characteristics such as tissue involvement, serum levels, and examples.</description>
      </img>
    </images>
  </page>
  <page number="4">
    <text># Heterotopic Ossification

*   When mineral is deposited in soft tissue as organised, well-formed bone
*   “Heterotopic bone” = bone that has formed in an abnormal (extraskeletal) location
    *   May be all compact bone, or exhibit some trabeculae and fatty marrow
*   Size ranges from 1mm to several cm in diameter
*   One or more may be present
*   Examples:
    *   Post-traumatic ossification,
    *   bone produced by tumours,
    *   ossification from diseases such as progressive myositis ossificans and ankylosing spondylitis</text>
    <formatted_text>- When mineral is deposited in soft tissue as organised, well-formed bone
- &quot;Heterotopic bone&quot; = bone that has formed in an abnormal (extraskeletal) location
  - May be all compact bone, or exhibit some trabeculae and fatty marrow
- Size ranges from 1mm to several cm in diameter
- One or more may be present
- Examples:
  - Post-traumatic ossification
  - Bone produced by tumours
  - Ossification from diseases such as progressive myositis ossificans and ankylosing spondylitis</formatted_text>
    <audio_inserts count="1">
      <insert timestamp="00:01:36" confidence="6" anchor="When mineral is deposited in soft tissue as organised, well-formed bone">
- ==Calcium and phosphate are deposited as organised bone rather than as unorganised clumps of salt crystals.==</insert>
    </audio_inserts>
  </page>
  <page number="5">
    <text>Phleboliths
Triticeous cartilage and thyroid cartilage
Calcified lymph nodes
Tonsilloliths
Calcified atheromatous plaque
Antrolith
Ossified stylohyoid ligament
Sialoliths

White and Pharoah, 2014

![FIGURE 28-1 Schematic of panoramic radiograph demonstrating the typical geometry and location of selected soft tissue calcifications and ossifications.](L2 - Opacities in Dental Imaging_figures/img_b9c22a9c006d2d56.webp)</text>
    <formatted_text>- Phleboliths
- Triticeous cartilage and thyroid cartilage
- Calcified lymph nodes
- Tonsilloliths
- Calcified atheromatous plaque
- Antrolith
- Ossified stylohyoid ligament
- Sialoliths

*White and Pharoah, 2014*</formatted_text>
    <audio_inserts count="1">
      <insert timestamp="00:13:09" confidence="5" anchor="- Sialoliths">
- ==Common locations for soft tissue calcifications can be anticipated by reviewing the anatomical structures represented on a panoramic radiograph.==
- ==Dystrophic calcifications==
- ==Post-inflammatory tonsillar calcifications==
- ==Calcified atherosclerotic plaques==
- ==Mönckeberg’s medial calcific sclerosis==
- ==Laryngeal cartilage calcifications==
- ==Rhinoliths==
- ==Metastatic calcification==</insert>
    </audio_inserts>
    <images>
      <img order="0" bbox="82,164,887,749" bbox_format="xyxy_norm_1000" bbox_origin="top_left" bbox_space="page" type="diagram" path="L2 - Opacities in Dental Imaging_figures/img_b9c22a9c006d2d56.webp" caption="FIGURE 28-1 Schematic of panoramic radiograph demonstrating the typical geometry and location of selected soft tissue calcifications and ossifications.">
        <description>This labelled schematic diagram illustrates the typical anatomical locations of various soft tissue calcifications and ossifications superimposed on a panoramic radiograph outline. A color-coded legend identifies specific entities, including blue for phleboliths, light blue for triticeous and thyroid cartilage, dark green for calcified lymph nodes, light green for tonsilloliths, purple for calcified atheromatous plaque, orange for antrolith, tan for ossified stylohyoid ligament, and red for sialoliths.</description>
      </img>
    </images>
  </page>
  <page number="6">
    <text>1. Dystrophic Calcifications

1.  &lt;span style=&quot;color: #00FFFF;&quot;&gt;Calcified lymph nodes&lt;/span&gt;
2.  &lt;span style=&quot;color: #00FFFF;&quot;&gt;Post-inflammatory tonsillar calcifications&lt;/span&gt;
3.  &lt;span style=&quot;color: #00FFFF;&quot;&gt;Calcified atherosclerotic plaque&lt;/span&gt;
4.  &lt;span style=&quot;color: #00FFFF;&quot;&gt;Arteriosclerosis&lt;/span&gt;</text>
    <formatted_text>1. Calcified lymph nodes
2. Post-inflammatory tonsillar calcifications
3. Calcified atherosclerotic plaque
4. Arteriosclerosis</formatted_text>
  </page>
  <page number="7">
    <text>1. Dystrophic Calcification

E.g. long standing chronically infected cyst or polyp
Location: gingiva, tongue, lymph nodes, and cheek
Clinical Sign/Symptoms:
Typically none
Enlargement and ulceration of overlying soft tissue
Palpation of solid mass of calcium salts

Imaging Features:
Varies from being barely perceptible as fine grains of radiopacities to larger, irregular radiopaque particles (but rarely exceed 0.5cm in diameter)
One or more radiopacities may be seen
Periphery: irregular or indistinct
Internal: may be homogeneous or contain punctate areas

White and Pharoah, 201

![A](L2 - Opacities in Dental Imaging_figures/img_c2ccb03d159cd1d7.webp)
![B](L2 - Opacities in Dental Imaging_figures/img_93948e12d273709c.webp)
![](L2 - Opacities in Dental Imaging_figures/img_244cbfe624284b1f.webp)</text>
    <formatted_text>E.g. long standing chronically infected cyst or polyp

Location: gingiva, tongue, lymph nodes, and cheek

#### Clinical Sign/Symptoms

- Typically none
- Enlargement and ulceration of overlying soft tissue
- Palpation of solid mass of calcium salts

#### Imaging Features

- Varies from being barely perceptible as fine grains of radiopacities to larger, irregular radiopaque particles (but rarely exceed 0.5 cm in diameter)
- One or more radiopacities may be seen
- Periphery: irregular or indistinct
- Internal: may be homogeneous or contain punctate areas

*White and Pharoah, 201*</formatted_text>
    <audio_inserts count="1">
      <insert timestamp="00:02:39" confidence="10" anchor="- Palpation of solid mass of calcium salts">
- ==Dystrophic calcifications occur in degenerating, diseased, or dead tissue despite normal serum calcium and phosphate levels.==
- Evidence of previous trauma may include soft-tissue hyperplasia or ulceration.
- A fibrous hyperplasia following repeated trauma to the alveolar ridge is another example.</insert>
    </audio_inserts>
    <images>
      <img order="0" bbox="504,286,749,606" bbox_format="xyxy_norm_1000" bbox_origin="top_left" bbox_space="page" type="figure" path="L2 - Opacities in Dental Imaging_figures/img_c2ccb03d159cd1d7.webp" caption="A">
        <description>Radiograph: A lateral cephalometric or panoramic X-ray view of the maxillofacial region showing irregular radiopaque particles indicated by white arrows, illustrating dystrophic calcification.</description>
      </img>
      <img order="1" bbox="505,284,991,607" bbox_format="xyxy_norm_1000" bbox_origin="top_left" bbox_space="page" type="figure" path="L2 - Opacities in Dental Imaging_figures/img_93948e12d273709c.webp" caption="B">
        <description>The figure displays two medical imaging scans side-by-side, labeled 'A' and 'B', illustrating the radiographic appearance of dystrophic calcification. Panel A is a lateral projection (likely a lateral skull or soft tissue neck view) showing irregular radiopaque particles indicated by white arrows within the soft tissue. Panel B is a coronal CT scan slice, also marked with a white arrow pointing to a cluster of dense, granular calcifications in the lower region.</description>
      </img>
      <img order="2" bbox="595,617,887,971" bbox_format="xyxy_norm_1000" bbox_origin="top_left" bbox_space="page" type="figure" path="L2 - Opacities in Dental Imaging_figures/img_244cbfe624284b1f.webp">
        <description>A radiograph showing a distinct, irregular radiopaque mass (indicated by an arrow) located within soft tissue. This illustrates the imaging features of dystrophic calcification, specifically the presence of calcium salt deposits that appear as opaque particles.</description>
      </img>
    </images>
  </page>
  <page number="8">
    <text>1.1 Calcified Lymph Nodes

*   Deposition of hydroxyapatite-like calcium salts within the lymph node (LN), nearly effacing all nodal architecture
*   An isolated calcified LN in the level I nodes are usually related to post-inflammatory calcification
*   More extensive dystrophic calcification in LN that are chronically inflamed due to various diseases (frequently granulomatous disorders e.g. TB, sarcoidosis, etc.)
    *   Implies either active or previously treated disease
*   Occasionally associated with malignancies

![](L2 - Opacities in Dental Imaging_figures/img_8ec8853f70cd8ca5.webp)</text>
    <formatted_text>- Deposition of hydroxyapatite-like calcium salts within the lymph node (LN), nearly effacing all nodal architecture
- An isolated calcified LN in the level I nodes is usually related to post-inflammatory calcification
- More extensive dystrophic calcification in LNs that are chronically inflamed due to various diseases (frequently granulomatous disorders, e.g. TB, sarcoidosis, etc.)
  - Implies either active or previously treated disease
- Occasionally associated with malignancies</formatted_text>
    <images>
      <img order="0" bbox="540,277,953,960" bbox_format="xyxy_norm_1000" bbox_origin="top_left" bbox_space="page" type="figure" path="L2 - Opacities in Dental Imaging_figures/img_8ec8853f70cd8ca5.webp">
        <description>Radiograph: A lateral view of the mandible and teeth showing a cluster of calcified lymph nodes in the submandibular region, consistent with dystrophic calcification.</description>
      </img>
    </images>
  </page>
  <page number="9">
    <text># 1.1 Calcified Lymph Nodes

**Clinical Features:**
*   Generally asymptomatic
*   Often incidental finding
*   When nodes can be palpated, are hard, lumpy, round-oblong masses
*   Most common: Submandibular and superficial/deep cervical nodes (Level Ib and II nodes)
    *   Less common: Preauricular and submental nodes

**Management:**
*   Typically no treatment
*   Need to manage underlying cause</text>
    <formatted_text>#### Clinical Features

- Generally asymptomatic
- Often incidental finding
- When nodes can be palpated, are hard, lumpy, round-oblong masses
- Most common: submandibular and superficial/deep cervical nodes (Level Ib and II nodes)
  - Less common: preauricular and submental nodes

#### Management

- Typically no treatment
- Need to manage underlying cause</formatted_text>
  </page>
  <page number="10">
    <text>1.1 Calcified Lymph Nodes

Location:
o Submandibular region – at or just below Md angle or between posterior border of ramus and C-spine
o May affect a single node or linear series of nodes (“LN chaining”)

Periphery/Shape:
o Well-defined
o Usually **irregular**
o Often lobulated, like shape of cauliflower

![A](L2 - Opacities in Dental Imaging_figures/img_52865e6921604e81.webp)
![B](L2 - Opacities in Dental Imaging_figures/img_5aba4653d9e92d9c.webp)</text>
    <formatted_text>#### Location

- Submandibular region — at or just below the mandibular angle or between the posterior border of the ramus and the C-spine
- May affect a single node or a linear series of nodes (&quot;LN chaining&quot;)

#### Periphery/Shape

- Well-defined
- Usually irregular
- Often lobulated, like the shape of a cauliflower</formatted_text>
    <images>
      <img order="0" bbox="306,326,646,908" bbox_format="xyxy_norm_1000" bbox_origin="top_left" bbox_space="page" type="figure" path="L2 - Opacities in Dental Imaging_figures/img_52865e6921604e81.webp" caption="A">
        <description>A lateral radiograph of the neck and submandibular region showing multiple dense, irregular calcified masses. The larger, lobulated cluster in the lower right resembles a cauliflower shape, while smaller, chained nodes are indicated by white arrows.</description>
      </img>
      <img order="1" bbox="650,327,984,908" bbox_format="xyxy_norm_1000" bbox_origin="top_left" bbox_space="page" type="photo" path="L2 - Opacities in Dental Imaging_figures/img_5aba4653d9e92d9c.webp" caption="B">
        <description>Radiograph: A lateral view of the mandible and cervical spine showing multiple irregular, radiopaque masses in the submandibular region, consistent with calcified lymph nodes.</description>
      </img>
    </images>
  </page>
  <page number="11">
    <text>1.1 Calcified Lymph Nodes

Internal Features:
o May vary in degree of opacity
o Occasional laminated appearance

Surrounding Features: N/A

| DDx | |
| :--- | :--- |
| **Sialolith** | • May be difficult to differentiate if only a single calcified LN as both appear in a similar region&lt;br&gt;• Typically smoother outline&lt;br&gt;• Check clinically for symptoms related to submandibular salivary gland |
| **Phlebolith** | • Usually smaller and multiple with targetoid appearance&lt;br&gt;• Shape may mimic a portion of a blood vessel |

![](L2 - Opacities in Dental Imaging_figures/img_c5125b2f7f0f720e.webp)</text>
    <formatted_text>#### Internal Features

- May vary in degree of opacity
- Occasional laminated appearance

#### Surrounding Features

N/A

#### Differential Diagnosis

| DDx | Features |
| :--- | :--- |
| Sialolith | May be difficult to differentiate if only a single calcified LN, as both appear in a similar region; typically smoother outline; check clinically for symptoms related to submandibular salivary gland |
| Phlebolith | Usually smaller and multiple with targetoid appearance; shape may mimic a portion of a blood vessel |</formatted_text>
    <images>
      <img order="0" bbox="461,353,963,873" bbox_format="xyxy_norm_1000" bbox_origin="top_left" bbox_space="page" type="table" path="L2 - Opacities in Dental Imaging_figures/img_c5125b2f7f0f720e.webp">
        <description>A two-row differential diagnosis table comparing Sialoliths and Phleboliths. The table lists distinguishing features for each entity, such as the smoother outline of sialoliths versus the targetoid appearance of phleboliths.</description>
      </img>
    </images>
  </page>
  <page number="12">
    <text>1.2 Post-inflammatory tonsillar
calcifications

Synonyms: tonsilloliths, dystrophic calcifications in the tonsils,
tonsillar calculi, tonsil concretions

Clinical Features:
Hard, white/yellow objects projecting from the tonsillar crypts
Usually palatine tonsil
Typically no clinical signs and symptoms
Larger calcifications – pain, swelling, fetor oris, dysphagia or foreign
body sensation on swallowing

![B](L2 - Opacities in Dental Imaging_figures/img_463939d127225da2.webp)
![](L2 - Opacities in Dental Imaging_figures/img_941ed0645e7c0f58.webp)</text>
    <formatted_text>Synonyms: tonsilloliths, dystrophic calcifications in the tonsils, tonsillar calculi, tonsil concretions

#### Clinical Features

- Hard, white/yellow objects projecting from the tonsillar crypts
- Usually palatine tonsil
- Typically no clinical signs and symptoms
- Larger calcifications — pain, swelling, fetor oris, dysphagia or foreign body sensation on swallowing</formatted_text>
    <images>
      <img order="0" bbox="755,0,998,464" bbox_format="xyxy_norm_1000" bbox_origin="top_left" bbox_space="page" type="diagram" path="L2 - Opacities in Dental Imaging_figures/img_463939d127225da2.webp" caption="B">
        <description>A labelled schematic diagram illustrating Waldeyer's ring, depicting the arrangement of the pharyngeal, tubal (Eustachian/Gerlach's), palatine, and lingual tonsils. Arrows indicate the drainage pathways for lymph to various cervical and retropharyngeal nodes, as well as the flow of lymphocytes into the pharynx.</description>
      </img>
      <img order="1" bbox="697,468,998,1000" bbox_format="xyxy_norm_1000" bbox_origin="top_left" bbox_space="page" type="figure" path="L2 - Opacities in Dental Imaging_figures/img_941ed0645e7c0f58.webp">
        <description>A lateral radiograph of the facial skeleton and cervical spine, showing multiple small, dense calcifications in the posterior oropharyngeal region. Two black arrows point directly to these distinct, rounded opacities.</description>
      </img>
    </images>
  </page>
  <page number="13">
    <text>1.2 Post-inflammatory tonsillar calcifications

**Disease Mechanism:**
*   Formed when repeated bouts of inflammation enlarge the tonsillar crypts
*   Incomplete resolution of organic debris can serve as a nidus for dystrophic calcification

**Management:**
*   Asymptomatic – no treatment
    *   Unless elderly with manual deglutition disorders or immunocompromised patients for risk of aspiration pneumonia
*   Symptomatic – manual expression or surgical removal if large</text>
    <formatted_text>#### Disease Mechanism

- Formed when repeated bouts of inflammation enlarge the tonsillar crypts
- Incomplete resolution of organic debris can serve as a nidus for dystrophic calcification

#### Management

- Asymptomatic — no treatment
  - Unless elderly with manual deglutition disorders or immunocompromised patients, for risk of aspiration pneumonia
- Symptomatic — manual expression or surgical removal if large</formatted_text>
    <audio_inserts count="1">
      <insert timestamp="00:07:36" confidence="12" anchor="- Formed when repeated bouts of inflammation enlarge the tonsillar crypts - Inco">

&gt; [!note] Lecturer — Tonsillar Debris
&gt; Repeated tonsillitis enlarges the crypts, allowing organic debris to become lodged before calcification.
&gt;
&gt; - The debris may include dead bacteria, pus, epithelial cells, and food.
</insert>
    </audio_inserts>
  </page>
  <page number="14">
    <text>1.2 Post-inflammatory tonsillar calcifications

Location:
[PAN] Superimposed over mid-ramus region where dorsum of tongue crosses ramus in the oropharyngeal air spaces, often inferior to IAC
[CT] medial to ramus, next to lateral wall of pharyngeal air space

Periphery/Shape:
Cluster of multiple small radiopacities
Rarely large size

Internal Features:
Slightly more radiopaque than cancellous bone
Roughly same as cortical bone

Surrounding Features: N/A

![](L2 - Opacities in Dental Imaging_figures/img_9ea0aac4891ad2b3.webp)</text>
    <formatted_text>#### Location

- [PAN] Superimposed over the mid-ramus region where the dorsum of tongue crosses the ramus in the oropharyngeal air spaces, often inferior to the IAC
- [CT] Medial to the ramus, next to the lateral wall of the pharyngeal air space

#### Periphery/Shape

- Cluster of multiple small radiopacities
- Rarely large size

#### Internal Features

- Slightly more radiopaque than cancellous bone
- Roughly the same as cortical bone

#### Surrounding Features

N/A</formatted_text>
    <audio_inserts count="2">
      <insert timestamp="00:07:07" confidence="7" anchor="- Rarely large size">
- ==Tonsilloliths may also occur in the lingual and pharyngeal tonsils, but are almost never seen in the eustachian tonsil.==</insert>
      <insert timestamp="00:08:34" confidence="4" anchor="#### **Surrounding Features**  N/A  #### **Differential Diagnosis**  | DDx | Fea">
- ==Their position beside the pharyngeal airspace and medial to the ramus helps identify tonsilloliths.==</insert>
    </audio_inserts>
    <images>
      <img order="0" bbox="699,0,998,1000" bbox_format="xyxy_norm_1000" bbox_origin="top_left" bbox_space="page" type="figure" path="L2 - Opacities in Dental Imaging_figures/img_9ea0aac4891ad2b3.webp">
        <description>A composite medical image featuring a panoramic radiograph (top) and an axial CT scan (bottom). The top panel shows a cluster of small, irregular radiopacities superimposed over the mid-ramus region, indicated by a black arrow. The bottom panel displays an axial CT slice where a white arrow points to similar calcifications located medial to the mandibular ramus, adjacent to the lateral wall of the pharyngeal air space.</description>
      </img>
    </images>
  </page>
  <page number="15">
    <text>1.2 Post-inflammatory tonsillar calcifications

| | |
| :--- | :--- |
| **Lymph node calcifications** | • Usually larger and occur where LNs are expected to exist |
| **Sialolith** | • Usually more ovoid and smooth, located within the duct.&lt;br&gt;• Classically internal laminated appearance |
| **Parotid parenchymal calcifications** | • Usually smaller and rounded.&lt;br&gt;• On an OPG, these are usually projected over or posterior to the posterior aspect of the ramus |
| **Bone island** | • Differentiation may be difficult on a panoramic or lateral radiographic. |
| **Phlebolith** | • Targetoid appearance (lucent centrally)&lt;br&gt;• MSCT +/- MRI may be required |
| **Tumours** | • Calcifications can be associated with tumours. If there is clinical suspicion for a tumour, MSCT is recommended over CBCT. |

![](L2 - Opacities in Dental Imaging_figures/img_a848c2a2f66834f3.webp)</text>
    <formatted_text>#### Differential Diagnosis

| DDx | Features |
| :--- | :--- |
| Lymph node calcifications | Usually larger and occur where LNs are expected to exist |
| Sialolith | Usually more ovoid and smooth, located within the duct; classically internal laminated appearance |
| Parotid parenchymal calcifications | Usually smaller and rounded; on an OPG, these are usually projected over or posterior to the posterior aspect of the ramus |
| Bone island | Differentiation may be difficult on a panoramic or lateral radiograph |
| Phlebolith | Targetoid appearance (lucent centrally); MSCT +/- MRI may be required |
| Tumours | Calcifications can be associated with tumours. If there is clinical suspicion for a tumour, MSCT is recommended over CBCT. |</formatted_text>
    <images>
      <img order="0" bbox="72,332,942,957" bbox_format="xyxy_norm_1000" bbox_origin="top_left" bbox_space="page" type="table" path="L2 - Opacities in Dental Imaging_figures/img_a848c2a2f66834f3.webp">
        <description>A two-column table listing differential diagnoses for calcifications (Lymph node, Sialolith, Parotid parenchymal, Bone island, Phlebolith, Tumours) alongside their distinguishing radiographic features and management notes.</description>
      </img>
    </images>
  </page>
  <page number="16">
    <text>1.3 Calcified Atherosclerotic Plaque

Definition: dystrophic calcification occurring in atheromatous plaques in the intima of large or medium sized vessels

Disease Mechanism:
* Atheromatous plaques begin as fatty streaks composed of lipid-laden macrophages (foam cells)
* Composed of soft necrotic core surrounded by chronic inflammatory cells, smooth muscle cells, and neovascularisation, covered by a fibrous cap
* Often undergo calcification

![](L2 - Opacities in Dental Imaging_figures/img_aa74b2bf3bcfad3d.webp)</text>
    <formatted_text>**Definition:** dystrophic calcification occurring in atheromatous plaques in the intima of large or medium sized vessels

#### Disease Mechanism

- Atheromatous plaques begin as fatty streaks composed of lipid-laden macrophages (foam cells)
- Composed of soft necrotic core surrounded by chronic inflammatory cells, smooth muscle cells, and neovascularisation, covered by a fibrous cap
- Often undergo calcification</formatted_text>
    <images>
      <img order="0" bbox="592,314,841,564" bbox_format="xyxy_norm_1000" bbox_origin="top_left" bbox_space="page" type="diagram" path="L2 - Opacities in Dental Imaging_figures/img_aa74b2bf3bcfad3d.webp">
        <description>A labelled cross-sectional diagram of an elastic artery illustrating its three main layers: the tunica intima (composed of endothelium and internal elastic membrane), the tunica media, and the tunica externa.</description>
      </img>
    </images>
  </page>
  <page number="17">
    <text># 1.3 Calcified Atherosclerotic Plaque

**Aetiology:**
*   Not completely understood
*   Thought to involve chronic endothelial injury leading to inflammatory response, accumulation of lipids, platelet aggregation and activation of smooth muscle cells

**Disease Progression:**
*   Stenosis, occlusion, ischaemia, infarction, distal embolism, haemorrhage, aneurysmal dilatation

**Management:**
*   1 in 7 patients with CAP on OPG will have a clinically significant carotid artery stenosis (Constantine et al. 2019)
*   Referral for medical review if:
    *   Patients with established risk factors for cerebrovascular and cardiovascular disease
    *   Younger patients
    *   Substantial carotid calcifications</text>
    <formatted_text>#### Aetiology

- Not completely understood
- Thought to involve chronic endothelial injury leading to inflammatory response, accumulation of lipids, platelet aggregation and activation of smooth muscle cells

#### Disease Progression

- Stenosis, occlusion, ischaemia, infarction, distal embolism, haemorrhage, aneurysmal dilatation

#### Management

- 1 in 7 patients with CAP on OPG will have a clinically significant carotid artery stenosis (Constantine et al. 2019)
- Referral for medical review if:
  - Patients with established risk factors for cerebrovascular and cardiovascular disease
  - Younger patients
  - Substantial carotid calcifications</formatted_text>
    <audio_inserts count="1">
      <insert timestamp="00:12:02" confidence="3" anchor="- Referral for medical review if:   - Patients with established risk factors for">
- ==Referral to a general practitioner should be considered when a plaque is seen on an OPG, particularly in a patient who is unusually young for this finding.==</insert>
    </audio_inserts>
  </page>
  <page number="18">
    <text>1.3 Calcified
Atherosclerotic Plaque

Location:
First develop at arterial bifurcations due to increased endothelial damage from shear forces at these sites
[PAN] either superior or inferior to greater cornu of hyoid, adjacent to C3-4 or intervertebral space between them

Periphery/Shape:
May be singular or multiple
Well-defined and irregular
May be C-shaped or circular in morphology
Vertical linear distribution

Internal Features:
Heterogeneous radiopacity with radiolucent voids

Surrounding Features: N/A

![](L2 - Opacities in Dental Imaging_figures/img_d6b9b84014cd4b57.webp)</text>
    <formatted_text>#### Location

- First develop at arterial bifurcations due to increased endothelial damage from shear forces at these sites
- [PAN] Either superior or inferior to the greater cornu of the hyoid, adjacent to C3-4 or the intervertebral space between them

#### Periphery/Shape

- May be singular or multiple
- Well-defined and irregular
- May be C-shaped or circular in morphology
- Vertical linear distribution

#### Internal Features

- Heterogeneous radiopacity with radiolucent voids

#### Surrounding Features

N/A</formatted_text>
    <audio_inserts count="1">
      <insert timestamp="00:12:11" confidence="9" anchor="- First develop at arterial bifurcations due to increased endothelial damage fro">

&gt; [!note] Lecturer — Carotid Bifurcation
&gt; Calcified atherosclerotic plaques commonly develop where the common carotid artery divides into the external and internal carotid arteries.
&gt;
&gt; - On a panoramic radiograph, this bifurcation is approximately at the level of the C3 and C4 vertebrae, around the level of the hyoid bone.
</insert>
    </audio_inserts>
    <images>
      <img order="0" bbox="694,2,997,1000" bbox_format="xyxy_norm_1000" bbox_origin="top_left" bbox_space="page" type="figure" path="L2 - Opacities in Dental Imaging_figures/img_d6b9b84014cd4b57.webp">
        <description>A composite medical image featuring a lateral radiograph (top) and a sagittal CT scan (bottom), both illustrating the cervical spine and neck region. White arrows in each panel point to irregular, high-density calcifications located anterior to the vertebral bodies, consistent with the description of calcified atherosclerotic plaques.</description>
      </img>
    </images>
  </page>
  <page number="19">
    <text>1.4 Arteriosclerosis

Synonyms: Mönckeberg’s medial calcific sclerosis

Definition: Thickening and loss of elasticity of the walls of muscular arteries due to calcification of the tunica media

Disease Mechanism:
Deposition of calcium within the medial coat of vessel $\rightarrow$ fragmentation, degeneration, and eventual loss of elastic fibres
No luminal narrowing

Aetiology:
Uncertain
More common with advancing age, diabetes, and chronic renal disease

![© 2008 Encyclopædia Britannica, Inc.](L2 - Opacities in Dental Imaging_figures/img_36004c590ea24f45.webp)</text>
    <formatted_text>Synonyms: Mönckeberg's medial calcific sclerosis

**Definition:** thickening and loss of elasticity of the walls of muscular arteries due to calcification of the tunica media

#### Disease Mechanism

- Deposition of calcium within the medial coat of vessel → fragmentation, degeneration, and eventual loss of elastic fibres
- No luminal narrowing

#### Aetiology

- Uncertain
- More common with advancing age, diabetes, and chronic renal disease</formatted_text>
    <images>
      <img order="0" bbox="534,0,996,1000" bbox_format="xyxy_norm_1000" bbox_origin="top_left" bbox_space="page" type="diagram" path="L2 - Opacities in Dental Imaging_figures/img_36004c590ea24f45.webp" caption="© 2008 Encyclopædia Britannica, Inc.">
        <description>A labelled anatomical diagram of a muscular artery showing its cross-section and magnified wall structure, identifying the tunica intima, media, and adventitia along with components like endothelium and elastic fibres. Below the diagram is a radiograph marked with arrows indicating calcification.</description>
      </img>
    </images>
  </page>
  <page number="20">
    <text>**1.4 Arteriosclerosis**

*   **Clinical Features:**
    *   Initially asymptomatic
    *   Late in disease: peripheral vascular disease, cutaneous gangrene, myositis as a result of vascular insufficiency
*   **Management:**
    *   Evaluation for occlusive arterial disease or peripheral vascular disease</text>
    <formatted_text>#### Clinical Features

- Initially asymptomatic
- Late in disease: peripheral vascular disease, cutaneous gangrene, myositis as a result of vascular insufficiency

#### Management

- Evaluation for occlusive arterial disease or peripheral vascular disease</formatted_text>
  </page>
  <page number="21">
    <text>1.4 Arteriosclerosis

*   Location:
    *   Facial artery &gt; Carotid artery on PAN
*   Periphery/Shape:
    *   Outline of an artery (due to calcific deposits in the wall)
    *   When viewed from the side: a parallel pair of thin, radiopaque lines with a straight course or tortuous path
        *   Described as ‘tram-track’ or ‘pipe stem’ appearance
    *   In cross-section, circular, tubular, or ring-like pattern
*   Internal Features:
    *   No internal structure as the diffuse, finely divided calcium deposits occur solely in the medial wall of vessels
*   Surrounding Features: N/A


![VXP](L2 - Opacities in Dental Imaging_figures/img_5beca688ac421e5f.webp)</text>
    <formatted_text>#### Location

- Facial artery &gt; carotid artery on PAN

#### Periphery/Shape

- Outline of an artery (due to calcific deposits in the wall)
- When viewed from the side: a parallel pair of thin, radiopaque lines with a straight course or tortuous path
  - Described as 'tram-track' or 'pipe stem' appearance
- In cross-section, circular, tubular, or ring-like pattern

#### Internal Features

- No internal structure, as the diffuse, finely divided calcium deposits occur solely in the medial wall of vessels

#### Surrounding Features

N/A</formatted_text>
    <audio_inserts count="2">
      <insert timestamp="00:14:09" confidence="8" anchor="- Facial artery &gt; carotid artery on PAN">

&gt; [!note] Lecturer — Arterial Involvement
&gt; In the head and neck, the facial artery is most commonly affected, while the lingual arteries may also be involved.
&gt;
&gt; - Lingual artery involvement is not seen on an OPG and requires three-dimensional imaging.
&gt; - When the carotid vessels are outlined, this is almost always due to atheromatous plaque calcification.
</insert>
      <insert timestamp="00:15:30" confidence="6" anchor="- No internal structure, as the diffuse, finely divided calcium deposits occur s">

&gt; [!note] Lecturer — Arterial Cross Section
&gt; In cross-section, the calcification appears as a circular ring with a central lucency representing the non-occluded lumen.
&gt;
&gt; - The finding is often bilateral.
</insert>
    </audio_inserts>
    <images>
      <img order="0" bbox="512,105,978,942" bbox_format="xyxy_norm_1000" bbox_origin="top_left" bbox_space="page" type="figure" path="L2 - Opacities in Dental Imaging_figures/img_5beca688ac421e5f.webp" caption="VXP">
        <description>Radiograph: A lateral view of a mandible and maxilla showing multiple teeth with radiopaque restorations. The image illustrates the 'tram-track' or parallel thin, radiopaque lines characteristic of arterial calcification (arteriosclerosis) running through the soft tissue.</description>
      </img>
    </images>
  </page>
  <page number="22">
    <text>![](L2 - Opacities in Dental Imaging_figures/img_c82ad8bfb6f49b33.webp)</text>
    <images>
      <img order="0" bbox="0,32,996,973" bbox_format="xyxy_norm_1000" bbox_origin="top_left" bbox_space="page" type="figure" path="L2 - Opacities in Dental Imaging_figures/img_c82ad8bfb6f49b33.webp">
        <description>A panoramic radiograph of the maxillofacial region showing the mandible, maxilla, and dentition. The image displays multiple teeth with radiopaque restorations (crowns or fillings) in the posterior right mandibular region, along with other dental structures and bone anatomy.</description>
      </img>
    </images>
  </page>
  <page number="23">
    <text>2. Idiopathic Calcification

1. Sialolith
2. Phlebolith
3. Laryngeal cartilage calcification
4. Antroliths and Rhinoliths</text>
    <formatted_text>1. Sialolith
2. Phlebolith
3. Laryngeal cartilage calcification
4. Antroliths and Rhinoliths</formatted_text>
    <audio_inserts count="2">
      <insert timestamp="00:16:09" confidence="5" anchor="Idiopathic Calcification">

&gt; [!note] Lecturer — Idiopathic Calcification
&gt; Idiopathic calcifications occur in normal tissue despite normal serum calcium and phosphate levels, and their cause is unknown. They are relatively common in the head and neck.
</insert>
      <insert timestamp="00:17:48" confidence="5" anchor="Parenchymal calcifications:  - Generally multiple in the parotid gland">

&gt; [!note] Lecturer — Sialolith Epidemiology
&gt; Ductal sialoliths are increasingly seen in younger and teenage patients. The lecture suggested that increased consumption of energy drinks instead of water may contribute, noting an association between kidney stones and salivary gland stones.
&gt;
&gt; - Within the submandibular gland, approximately 50% are in the distal portion of Wharton’s duct, 20% are in the proximal duct, and 30% are within the gland itself.
</insert>
    </audio_inserts>
  </page>
  <page number="24">
    <text>2.1 Sialoliths

Definition: Salivary gland stones
“Ductal sialolith” vs “Parenchymal calcifications”

Disease Mechanism:
Ductal sialolith:
Arises due to alteration in mechanical conditions (e.g. slow flow rate or physiochemical characteristics of gland secretion)
Leads to nidus formation and subsequent precipitation of Ca and PO4 salts

Parenchymal calcifications:
May be related to a previous inflammatory condition or ongoing chronic sialadenitis (e.g. Sjogren's syndrome)

Epidemiology:
Ductal sialoliths:
Usually occur singly (70-80%)
Most common in submandibular glands of middle-aged or older men

Parenchymal calcifications:
Generally multiple in the parotid gland


![Kraaij, S. et al. 2014](L2 - Opacities in Dental Imaging_figures/img_9954f20f9aa1c1fd.webp)</text>
    <formatted_text>**Definition:** Salivary gland stones — &quot;ductal sialolith&quot; vs &quot;parenchymal calcifications&quot;

#### Disease Mechanism

*Ductal sialolith:*

- Arises due to alteration in mechanical conditions (e.g. slow flow rate or physiochemical characteristics of gland secretion)
- Leads to nidus formation and subsequent precipitation of Ca and PO4 salts

*Parenchymal calcifications:*

- May be related to a previous inflammatory condition or ongoing chronic sialadenitis (e.g. Sjogren's syndrome)

#### Epidemiology

*Ductal sialoliths:*

- Usually occur singly (70-80%)
- Most common in submandibular glands of middle-aged or older men

*Parenchymal calcifications:*

- Generally multiple in the parotid gland</formatted_text>
    <images>
      <img order="0" bbox="824,8,992,393" bbox_format="xyxy_norm_1000" bbox_origin="top_left" bbox_space="page" type="figure" path="L2 - Opacities in Dental Imaging_figures/img_9954f20f9aa1c1fd.webp" caption="Kraaij, S. et al. 2014">
        <description>A grayscale cross-sectional micrograph, likely from a CT scan or histological section, showing a sialolith with distinct concentric laminations. The image illustrates the internal structure of a salivary gland stone, featuring a dark central nidus surrounded by multiple lighter rings of precipitated salts.</description>
      </img>
    </images>
  </page>
  <page number="25">
    <text>**2.1 Sialoliths**

*   **Clinical Features:**
    *   May be asymptomatic
    *   History of pain and swelling in floor of mouth/gland/cheek
        *   Discomfort intensifies during mealtimes, when salivary flow is stimulated – usually abates if the stone does not occlude the duct completely
*   **Prognosis and Recurrence:**
    *   9% recurrent sialolithiasis
    *   10% with sialolithiasis also have nephrolithiasis
*   **Management:**
    *   Small stones can be ‘milked out’ by bimanual palpation through ductal orifice
    *   If too large or located in proximal duct, may require lithotripsy or sialendoscopy
    *   Surgical removal of stone/gland in cases of exceedingly large or intraparenchymal sialoliths
    *   Parenchymal calcifications require treatment of the underlying sialadenitis</text>
    <formatted_text>#### Clinical Features

- May be asymptomatic
- History of pain and swelling in floor of mouth/gland/cheek
  - Discomfort intensifies during mealtimes, when salivary flow is stimulated — usually abates if the stone does not occlude the duct completely

#### Prognosis and Recurrence

- 9% recurrent sialolithiasis
- 10% with sialolithiasis also have nephrolithiasis

#### Management

- Small stones can be 'milked out' by bimanual palpation through ductal orifice
- If too large or located in proximal duct, may require lithotripsy or sialendoscopy
- Surgical removal of stone/gland in cases of exceedingly large or intraparenchymal sialoliths
- Parenchymal calcifications require treatment of the underlying sialadenitis</formatted_text>
  </page>
  <page number="26">
    <text># 2.1 Sialoliths

o Location:
    o 83-94% submandibular gland
    o 4-10% parotid gland
    o 1-7% sublingual gland

o Periphery/Shape:
    o *Ductal*: cylindrical, smooth, elongated
    o *Hilum*: larger, more irregularly shaped/ovoid
    o *Parenchymal*: ranges from a few small opacities within a focal region to widespread opacities throughout the gland

![](L2 - Opacities in Dental Imaging_figures/img_e8b1d2ca936162cb.webp)</text>
    <formatted_text>#### Location

- 83-94% submandibular gland
- 4-10% parotid gland
- 1-7% sublingual gland

#### Periphery/Shape

- *Ductal*: cylindrical, smooth, elongated
- *Hilum*: larger, more irregularly shaped/ovoid
- *Parenchymal*: ranges from a few small opacities within a focal region to widespread opacities throughout the gland</formatted_text>
    <images>
      <img order="0" bbox="536,445,990,995" bbox_format="xyxy_norm_1000" bbox_origin="top_left" bbox_space="page" type="figure" path="L2 - Opacities in Dental Imaging_figures/img_e8b1d2ca936162cb.webp">
        <description>Radiograph: A side-by-side comparison of two dental X-ray views (likely a lateral oblique and a panoramic crop) demonstrating the visualization of sialoliths. The images show radiopaque calcifications in the soft tissue region below the mandible, corresponding to salivary stones.</description>
      </img>
    </images>
  </page>
  <page number="27">
    <text>2.1 Sialoliths

Internal Features:
Either homogeneously radiopaque or laminated
&lt;20% of submandibular and 40% of parotid sialoliths are radiolucent due to low mineral content of parotid secretions – requires a sialogram for visualisation
Radiolucent sialoliths very rare in the sublingual gland

Surrounding Features:
Ductal sialoliths may contribute to sialodochitis, sialadenitis, cellulitis, and atrophy of the salivary gland

(b)
Sialolith within the intraglandular proximal duct
Normal left submandibular gland
Koong, 2017

![](L2 - Opacities in Dental Imaging_figures/img_7722c0fdfffa16fa.webp)
![Fat density right submandibular gland](L2 - Opacities in Dental Imaging_figures/img_242be716526f15d3.webp)</text>
    <formatted_text>#### Internal Features

- Either homogeneously radiopaque or laminated
- &lt;20% of submandibular and 40% of parotid sialoliths are radiolucent due to low mineral content of parotid secretions — requires a sialogram for visualisation
- Radiolucent sialoliths very rare in the sublingual gland

#### Surrounding Features

- Ductal sialoliths may contribute to sialodochitis, sialadenitis, cellulitis, and atrophy of the salivary gland

*(b) Sialolith within the intraglandular proximal duct; normal left submandibular gland. Koong, 2017*</formatted_text>
    <audio_inserts count="1">
      <insert timestamp="00:22:41" confidence="9" anchor="Ductal sialoliths may contribute to sialodochitis, sialadenitis, cellulitis, and">

&gt; [!note] Lecturer — Sialolith Obstruction
&gt; On soft-tissue-window multislice CT, a chronically obstructed and atrophic gland may be replaced by fat. The lecture described a right submandibular gland replaced by fat in association with an opaque sialolith.
</insert>
    </audio_inserts>
    <images>
      <img order="0" bbox="474,1,997,408" bbox_format="xyxy_norm_1000" bbox_origin="top_left" bbox_space="page" type="figure" path="L2 - Opacities in Dental Imaging_figures/img_7722c0fdfffa16fa.webp">
        <description>Two radiographic images (likely lateral oblique and occlusal views) demonstrating sialoliths. The left image shows a calcified stone in the floor of the mouth region, while the right image displays two distinct radiopaque calculi indicated by white arrows.</description>
      </img>
      <img order="1" bbox="638,437,860,862" bbox_format="xyxy_norm_1000" bbox_origin="top_left" bbox_space="page" type="figure" path="L2 - Opacities in Dental Imaging_figures/img_242be716526f15d3.webp" caption="Fat density right submandibular gland">
        <description>This is an axial CT scan image (labeled 'b') of the neck region, demonstrating a cross-sectional view of the submandibular area. The image highlights specific anatomical features with red leader lines and text labels.</description>
      </img>
    </images>
  </page>
  <page number="28">
    <text>2.1 Sialoliths

Further imaging techniques:
Plain films:
Rarely used today as they only detect moderately large, fairly dense calcifications and further imaging is often required.
CBCT:
Not indicated for sialoliths due to poor soft tissue contrast and inability to detect small changes in radiodensities.
US or MSCT is preferred

Large distal ductal sialolith
(a)
Koong, 2017

![MDCT is more sensitive than CBCT at detecting small sialoliths. The MDCT (soft tissue window) image demonstrates the small ductal sialoliths proximal to the large distal sialolith. These small sialoliths are not demonstrated in the CBCT image](L2 - Opacities in Dental Imaging_figures/img_5b18cc997f8c6872.webp)
![(b)](L2 - Opacities in Dental Imaging_figures/img_0a909610b5bf12aa.webp)</text>
    <formatted_text>#### Further Imaging Techniques

- *Plain films:* Rarely used today as they only detect moderately large, fairly dense calcifications and further imaging is often required.
- *CBCT:* Not indicated for sialoliths due to poor soft tissue contrast and inability to detect small changes in radiodensities. US or MSCT is preferred.

*(a) Large distal ductal sialolith. Koong, 2017*</formatted_text>
    <images>
      <img order="0" bbox="490,440,722,854" bbox_format="xyxy_norm_1000" bbox_origin="top_left" bbox_space="page" type="figure" path="L2 - Opacities in Dental Imaging_figures/img_5b18cc997f8c6872.webp" caption="MDCT is more sensitive than CBCT at detecting small sialoliths. The MDCT (soft tissue window) image demonstrates the small ductal sialoliths proximal to the large distal sialolith. These small sialoliths are not demonstrated in the CBCT image">
        <description>Radiograph: Axial MDCT image (soft tissue window) demonstrating a large distal ductal sialolith indicated by the upper red line, and small proximal ductal sialoliths indicated by the lower red line.</description>
      </img>
      <img order="1" bbox="730,457,970,852" bbox_format="xyxy_norm_1000" bbox_origin="top_left" bbox_space="page" type="figure" path="L2 - Opacities in Dental Imaging_figures/img_0a909610b5bf12aa.webp" caption="(b)">
        <description>Radiograph: An axial CT scan (labeled 'b') showing a cross-section of the mandible with teeth. A red vertical line marks the location of a small, hyperdense sialolith situated in the soft tissue medial to the mandibular body.</description>
      </img>
    </images>
  </page>
  <page number="29">
    <text># 2.1 Sialoliths

*   Further imaging techniques:
    *   US:
        *   Very good initial imaging choice, esp. parotid gland
        *   Advantages: no ionising radiation, real time imaging, accessibility, inexpensive, good soft tissue discrimination
        *   Disadvantages: limited to superficial structures, technique sensitive, operator dependent, hard to interpret
    *   MSCT:
        *   May be performed as sialography
        *   Advantages: multiplanar imaging, good soft tissue and hard tissue contrast, small changes in radiodensity can be detected, provides 3D information in conventional sialography, can detect ‘mucus plugs’
        *   Disadvantages: higher radiation dose, cost
    *   MRI:
        *   Not typically needed for sialolith evaluation, although may be used as an alternative to conventional MSCT sialography in evaluating ductal pathosis</text>
    <formatted_text>#### Further Imaging Techniques

- *US:*
  - Very good initial imaging choice, esp. parotid gland
  - Advantages: no ionising radiation, real time imaging, accessibility, inexpensive, good soft tissue discrimination
  - Disadvantages: limited to superficial structures, technique sensitive, operator dependent, hard to interpret
- *MSCT:*
  - May be performed as sialography
  - Advantages: multiplanar imaging, good soft tissue and hard tissue contrast, small changes in radiodensity can be detected, provides 3D information in conventional sialography, can detect 'mucus plugs'
  - Disadvantages: higher radiation dose, cost
- *MRI:*
  - Not typically needed for sialolith evaluation, although may be used as an alternative to conventional MSCT sialography in evaluating ductal pathosis</formatted_text>
    <audio_inserts count="1">
      <insert timestamp="00:27:08" confidence="10" anchor="MRI:*   - Not typically needed for sialolith evaluation, although may be used as">

&gt; [!note] Lecturer — Sialolith Imaging
&gt; On ultrasound, a sialolith appears as a hyperechoic, well-defined structure with posterior acoustic shadowing. Ultrasound is limited for deep structures, including the deep lobe of the parotid, may not fully visualise the submandibular gland, and is operator dependent.
&gt;
&gt; - A multislice CT sialogram can show a flow void caused by a mucus plug or non-calcified sialolith; such an obstruction may not be visible on conventional two-dimensional imaging or non-contrast multislice CT.
&gt; - Sialography may also demonstrate an acute bend in a duct that interferes with salivary flow.
</insert>
    </audio_inserts>
  </page>
  <page number="30">
    <text>https://radiopaedia.org/cases/sialolithiasis-submandibular-gland-7

![](L2 - Opacities in Dental Imaging_figures/img_86061fa41ce2137a.webp)
![](L2 - Opacities in Dental Imaging_figures/img_7a311801401248a1.webp)</text>
    <formatted_text>https://radiopaedia.org/cases/sialolithiasis-submandibular-gland-7</formatted_text>
    <images>
      <img order="0" bbox="49,57,476,930" bbox_format="xyxy_norm_1000" bbox_origin="top_left" bbox_space="page" type="figure" path="L2 - Opacities in Dental Imaging_figures/img_86061fa41ce2137a.webp">
        <description>Ultrasound image showing a hyperechoic focus with posterior acoustic shadowing within the glandular tissue, consistent with a calculus.</description>
      </img>
      <img order="1" bbox="523,43,953,923" bbox_format="xyxy_norm_1000" bbox_origin="top_left" bbox_space="page" type="figure" path="L2 - Opacities in Dental Imaging_figures/img_7a311801401248a1.webp">
        <description>A labelled ultrasound image showing the sublingual gland and surrounding muscles, with a hyperechoic calculus casting an acoustic posterior shadow.</description>
      </img>
    </images>
  </page>
  <page number="31">
    <text>Flow void within the proximal duct reflects either a mucus plug or a non-calcified ductal sialolith. This would not be identified without a sialogram

Koong, 2017

![Figure 16.24 Mucus plug/non-calcified ductal sialolith related to the left parotid gland (recurrent swelling related to meals): axial maximum intensity projection MDCT sialogram image.](L2 - Opacities in Dental Imaging_figures/img_5471105ef0359994.webp)</text>
    <formatted_text>Flow void within the proximal duct reflects either a mucus plug or a non-calcified ductal sialolith. This would not be identified without a sialogram.

*Koong, 2017*</formatted_text>
    <images>
      <img order="0" bbox="215,103,617,815" bbox_format="xyxy_norm_1000" bbox_origin="top_left" bbox_space="page" type="figure" path="L2 - Opacities in Dental Imaging_figures/img_5471105ef0359994.webp" caption="Figure 16.24 Mucus plug/non-calcified ductal sialolith related to the left parotid gland (recurrent swelling related to meals): axial maximum intensity projection MDCT sialogram image.">
        <description>Radiograph: Axial maximum intensity projection MDCT sialogram image of the left parotid gland. The image displays a branching, bright white contrast-filled ductal system with a focal interruption (flow void) in the proximal duct, indicated by a red line.</description>
      </img>
    </images>
  </page>
  <page number="32">
    <text>(a)
(b)
(c)

Acute bend in the
proximal duct.
No sialoliths

**Figure 16.25** Acute bend of the right submandibular gland proximal duct (recurrent swelling related to meals): axial (a) and surface-rendered (b,c) MDCT sialogram images.

![Acute bend in the proximal duct. No sialoliths](L2 - Opacities in Dental Imaging_figures/img_da24d35ce6df6e0f.webp)</text>
    <formatted_text>*(a) (b) (c) Acute bend in the proximal duct. No sialoliths.*

*Figure 16.25 Acute bend of the right submandibular gland proximal duct (recurrent swelling related to meals): axial (a) and surface-rendered (b,c) MDCT sialogram images.*</formatted_text>
    <images>
      <img order="0" bbox="23,12,986,879" bbox_format="xyxy_norm_1000" bbox_origin="top_left" bbox_space="page" type="figure" path="L2 - Opacities in Dental Imaging_figures/img_da24d35ce6df6e0f.webp" caption="Acute bend in the proximal duct. No sialoliths">
        <description>This composite medical image displays three panels labeled (a), (b), and (c), showing axial and surface-rendered MDCT sialogram views of the submandibular region. Red leader lines from all three panels converge on a caption below, indicating an acute bend in the proximal duct where no sialoliths are present.</description>
      </img>
    </images>
  </page>
  <page number="33">
    <text>2.2 Phleboliths

Definition: calcified thrombi found in veins, venulae, or sinusoidal vessels of haemangiomas (esp. cavernous type)

Disease Mechanism:
Venous stagnation → intravascular thrombi → become organised and mineralised
Mineralisation begins in core of thrombus
Consists of calcium carbonate-fluorohydroxyapetite

R

![](L2 - Opacities in Dental Imaging_figures/img_e0efe4f559b1aeff.webp)</text>
    <formatted_text>**Definition:** Calcified thrombi found in veins, venulae, or sinusoidal vessels of haemangiomas (esp. cavernous type)

#### Disease Mechanism

- Venous stagnation → intravascular thrombi → become organised and mineralised
- Mineralisation begins in core of thrombus
- Consists of calcium carbonate-fluorohydroxyapetite</formatted_text>
    <images>
      <img order="0" bbox="587,8,993,963" bbox_format="xyxy_norm_1000" bbox_origin="top_left" bbox_space="page" type="figure" path="L2 - Opacities in Dental Imaging_figures/img_e0efe4f559b1aeff.webp">
        <description>A lateral radiograph of the head and neck region, showing the mandible, maxilla, teeth, and cervical spine. Multiple round, concentric calcified structures (phleboliths) are visible in the soft tissue of the submandibular and neck area.</description>
      </img>
    </images>
  </page>
  <page number="34">
    <text>&lt;h2&gt;2.2 Phleboliths&lt;/h2&gt;

&lt;h3&gt;Clinical Features:&lt;/h3&gt;
&lt;ul&gt;
  &lt;li&gt;In the head and neck, almost always signify presence of haemangioma&lt;/li&gt;
  &lt;li&gt;In adults, may be the sole residua of a childhood haemangioma that has regressed&lt;/li&gt;
  &lt;li&gt;Soft tissues may be swollen, throbbing, or discoloured by presence of veins or haemangioma&lt;/li&gt;
  &lt;li&gt;Haemangiomas often fluctuate in size (associated with body positioning or Valsalva manoeuvre); should blanch/change in colour with pressure&lt;/li&gt;
  &lt;li&gt;Auscultation may reveal a bruit in cases of cavernous hemangioma but not in the capillary type&lt;/li&gt;
&lt;/ul&gt;

&lt;h3&gt;Management:&lt;/h3&gt;
&lt;ul&gt;
  &lt;li&gt;May need further imaging with &lt;i&gt;MSCT&lt;/i&gt; or MRI +/- contrast to visualise the vascular malformation&lt;/li&gt;
  &lt;li&gt;Central haemangiomas are treated without delay due to risk of lethal exsanguination&lt;/li&gt;
  &lt;ul&gt;
    &lt;li&gt;Embolisation, surgery, or sclerosing techniques&lt;/li&gt;
  &lt;/ul&gt;
&lt;/ul&gt;</text>
    <formatted_text>#### Clinical Features

- In the head and neck, almost always signify presence of haemangioma
- In adults, may be the sole residua of a childhood haemangioma that has regressed
- Soft tissues may be swollen, throbbing, or discoloured by presence of veins or haemangioma
- Haemangiomas often fluctuate in size (associated with body positioning or Valsalva manoeuvre); should blanch/change in colour with pressure
- Auscultation may reveal a bruit in cases of cavernous hemangioma but not in the capillary type

#### Management

- May need further imaging with *MSCT* or MRI +/- contrast to visualise the vascular malformation
- Central haemangiomas are treated without delay due to risk of lethal exsanguination
  - Embolisation, surgery, or sclerosing techniques</formatted_text>
    <audio_inserts count="1">
      <insert timestamp="00:29:14" confidence="8" anchor="Central haemangiomas are treated without delay due to risk of lethal exsanguinat">

&gt; [!note] Lecturer — Vascular Malformation Precautions
&gt; The phlebolith itself does not require treatment, but the associated vascular malformation does. Dental clinicians should establish whether the patient knows about the malformation, has received treatment, and requires precautions before procedures in the region because puncturing a vessel may cause severe or lethal exsanguination.
</insert>
    </audio_inserts>
  </page>
  <page number="35">
    <text># 2.2 Phleboliths

*   **Location:**
    *   Most commonly found in haemangiomas (Mand&gt;Max; typically manibular body, ramus, or within IAC)
*   **Periphery/Shape:**
    *   In cross-section: Round/oval shape with smooth periphery, up to 6mm in diameter
    *   If viewed from the side, resembles a straight or slightly curved sausage
*   **Internal Features:**
    *   Laminated, bulls-eye or targetoid appearance
    *   May be homogeneously radiopaque
    *   Radiolucent flow voids may be seen
*   **Surrounding Features:** N/A

![](L2 - Opacities in Dental Imaging_figures/img_986b19c30ec49be8.webp)</text>
    <formatted_text>#### Location

- Most commonly found in haemangiomas (Mand &gt; Max; typically mandibular body, ramus, or within IAC)

#### Periphery/Shape

- In cross-section: round/oval shape with smooth periphery, up to 6mm in diameter
- If viewed from the side, resembles a straight or slightly curved sausage

#### Internal Features

- Laminated, bulls-eye or targetoid appearance
- May be homogeneously radiopaque
- Radiolucent flow voids may be seen

#### Surrounding Features

- N/A</formatted_text>
    <images>
      <img order="0" bbox="624,3,996,1000" bbox_format="xyxy_norm_1000" bbox_origin="top_left" bbox_space="page" type="figure" path="L2 - Opacities in Dental Imaging_figures/img_986b19c30ec49be8.webp">
        <description>Two radiographic images (an upper lateral view and a lower periapical/occlusal-style view) showing multiple round, radiopaque calcifications within the soft tissues of the mandibular region. The white arrows in the lower image point to these structures, which exhibit a characteristic laminated or targetoid appearance.</description>
      </img>
    </images>
  </page>
  <page number="36">
    <text>![](L2 - Opacities in Dental Imaging_figures/img_4a5a88cd639bdcee.webp)
![](L2 - Opacities in Dental Imaging_figures/img_5aaa1dda2238de3a.webp)</text>
    <images>
      <img order="0" bbox="24,62,445,936" bbox_format="xyxy_norm_1000" bbox_origin="top_left" bbox_space="page" type="figure" path="L2 - Opacities in Dental Imaging_figures/img_4a5a88cd639bdcee.webp">
        <description>Radiograph: A lateral cephalometric radiograph showing the craniofacial skeleton, including the mandible, maxilla, teeth with restorations, and the temporomandibular joint region.</description>
      </img>
      <img order="1" bbox="472,94,980,905" bbox_format="xyxy_norm_1000" bbox_origin="top_left" bbox_space="page" type="figure" path="L2 - Opacities in Dental Imaging_figures/img_5aaa1dda2238de3a.webp">
        <description>Axial CT scan of the midface and skull base, showing bony structures including the maxillary sinuses, nasal cavity with turbinates, hard palate, mandibular rami, and petrous temporal bones. Orientation markers 'R' (right) and 'L' (left) are visible on either side of the image.</description>
      </img>
    </images>
  </page>
  <page number="37">
    <text>2.3 Laryngeal Cartilage Calcifications

Mechanism:
*   Progresses as a physiologic process
*   Endochondral calcification and ossification of the hyaline laryngeal cartilages begins on attainment of skeletal maturity

Clinical Features:
*   Asymptomatic
*   Typically an incidental finding

Management:
*   No treatment needed

![](L2 - Opacities in Dental Imaging_figures/img_bbeec7bc6e9197f7.webp)
![](L2 - Opacities in Dental Imaging_figures/img_8cfb28ada1570bc8.webp)</text>
    <formatted_text>#### Mechanism

- Progresses as a physiologic process
- Endochondral calcification and ossification of the hyaline laryngeal cartilages begins on attainment of skeletal maturity

#### Clinical Features

- Asymptomatic
- Typically an incidental finding

#### Management

- No treatment needed</formatted_text>
    <audio_inserts count="1">
      <insert timestamp="00:31:17" confidence="6" anchor="Endochondral calcification and ossification of the hyaline laryngeal cartilages ">

&gt; [!note] Lecturer — Laryngeal Cartilage
&gt; Most laryngeal cartilages are hyaline cartilage and may ossify. The epiglottis and vocal processes of the arytenoid cartilages are fibroelastic and are excluded.
</insert>
    </audio_inserts>
    <images>
      <img order="0" bbox="467,518,712,949" bbox_format="xyxy_norm_1000" bbox_origin="top_left" bbox_space="page" type="figure" path="L2 - Opacities in Dental Imaging_figures/img_bbeec7bc6e9197f7.webp">
        <description>A lateral radiograph of the neck and mandible showing a white arrow pointing to a distinct, calcified mass in the anterior neck region.</description>
      </img>
      <img order="1" bbox="737,517,979,947" bbox_format="xyxy_norm_1000" bbox_origin="top_left" bbox_space="page" type="photo" path="L2 - Opacities in Dental Imaging_figures/img_8cfb28ada1570bc8.webp">
        <description>Lateral radiograph of the neck showing the cervical spine and mandible, with a white arrow pointing to calcification in the anterior laryngeal region.</description>
      </img>
    </images>
  </page>
  <page number="38">
    <text>**2.3 Laryngeal Cartilage Calcifications**

**Location:**
*   *Triticeous cartilage*: small, paired, found within lateral thyrohyoid ligaments
    *   [PAN] located inferior to greater cornu of hyoid and adjacent to superior border of C4
*   *Superior cornu of thyroid cartilage*: medial to C4

**Periphery/Shape:**
*   Triticeous: “grain of wheat” measuring 7-9mm (L) and 2-4mm (W) with smooth, well-defined, regular geometry
*   Thyoid cartilage: usually on 2-3mm visible at lower edge of radiograph

**Internal Features:**
*   Homogeneous radiopaque, but occasionally with an outer cortex

**Surrounding Features:** N/A

![Hyoid bone, lesser cornu Hyoid bone, greater cornu Lateral thyrohyoid ligament Cartilago triticea Aperture for internal laryngeal nerve and superior laryngeal artery Thyroid cartilage, superior cornu Superior thyroid tubercle Oblique line Inferior thyroid tubercle Lateral cricothyroid ligament Hyoid bone, body Median thyrohyoid ligament Thyrohyoid membrane Thyroid notch Laryngeal prominence Laminae of thyroid cartilage Median cricothyroid ligament Anterior arch of cricoid](L2 - Opacities in Dental Imaging_figures/img_bd2da01293d0e1fc.webp)
![](L2 - Opacities in Dental Imaging_figures/img_7e396a80df12ea5d.webp)</text>
    <formatted_text>#### Location

- *Triticeous cartilage*: small, paired, found within lateral thyrohyoid ligaments
  - [PAN] located inferior to greater cornu of hyoid and adjacent to superior border of C4
- *Superior cornu of thyroid cartilage*: medial to C4

#### Periphery/Shape

- Triticeous: &quot;grain of wheat&quot; measuring 7-9mm (L) and 2-4mm (W) with smooth, well-defined, regular geometry
- Thyroid cartilage: usually only 2-3mm visible at lower edge of radiograph

#### Internal Features

- Homogeneous radiopaque, but occasionally with an outer cortex

#### Surrounding Features

- N/A</formatted_text>
    <images>
      <img order="0" bbox="659,1,948,376" bbox_format="xyxy_norm_1000" bbox_origin="top_left" bbox_space="page" type="diagram" path="L2 - Opacities in Dental Imaging_figures/img_bd2da01293d0e1fc.webp" caption="Hyoid bone, lesser cornu Hyoid bone, greater cornu Lateral thyrohyoid ligament Cartilago triticea Aperture for internal laryngeal nerve and superior laryngeal artery Thyroid cartilage, superior cornu Superior thyroid tubercle Oblique line Inferior thyroid tubercle Lateral cricothyroid ligament Hyoid bone, body Median thyrohyoid ligament Thyrohyoid membrane Thyroid notch Laryngeal prominence Laminae of thyroid cartilage Median cricothyroid ligament Anterior arch of cricoid">
        <description>Labelled diagram: An anterior view of the laryngeal skeleton illustrating the hyoid bone, thyroid cartilage, and cricoid arch along with their connecting ligaments. Specific anatomical structures are identified on both sides, including the body and cornua of the hyoid bone, the laminae and tubercles of the thyroid cartilage, and the triticeous cartilage.</description>
      </img>
      <img order="1" bbox="623,381,951,965" bbox_format="xyxy_norm_1000" bbox_origin="top_left" bbox_space="page" type="figure" path="L2 - Opacities in Dental Imaging_figures/img_7e396a80df12ea5d.webp">
        <description>A lateral radiograph of the head and neck, showing the cervical spine, mandible, teeth, and soft tissues of the pharyngeal region. A small, oval-shaped calcification is visible anterior to the upper cervical vertebrae (approximately C3-C4 level), consistent with a triticeous cartilage.</description>
      </img>
    </images>
  </page>
  <page number="39">
    <text>2.4 Rhinoliths and Antroliths

Disease Mechanism:
Arise from deposition of nasal, lacrimal, and inflammatory mineral salts by accretion around a nidus
Rhinolith nidus = typically an exogenous foreign object
Usually enters from anterior, but may be from posterior choana
Antrolith nidus = typically endogenous
Dystrophic calcification within chronically inflamed mucosa in long-standing sinusitis, or
A non-invasive aspergillosis mycetoma in patients with chronic sinus disease → necrotic fungus ball or hard mycolith

![](L2 - Opacities in Dental Imaging_figures/img_0198bdfaa24b10df.webp)</text>
    <formatted_text>#### Disease Mechanism

- Arise from deposition of nasal, lacrimal, and inflammatory mineral salts by accretion around a nidus
- Rhinolith nidus = typically an exogenous foreign object
  - Usually enters from anterior, but may be from posterior choana
- Antrolith nidus = typically endogenous
  - Dystrophic calcification within chronically inflamed mucosa in long-standing sinusitis, or
  - A non-invasive aspergillosis mycetoma in patients with chronic sinus disease → necrotic fungus ball or hard mycolith</formatted_text>
    <audio_inserts count="1">
      <insert timestamp="00:33:08" confidence="12" anchor="Antrolith nidus = typically endogenous   - Dystrophic calcification within chron">

&gt; [!note] Lecturer — Rhinolith Nidus
&gt; A rhinolith nidus is usually an exogenous object, such as a coin, bead, seed, fruit pit, or other object introduced through the nostril. Drug smuggling was also mentioned as a possible source of a nasal foreign object.
</insert>
    </audio_inserts>
    <images>
      <img order="0" bbox="613,325,994,894" bbox_format="xyxy_norm_1000" bbox_origin="top_left" bbox_space="page" type="figure" path="L2 - Opacities in Dental Imaging_figures/img_0198bdfaa24b10df.webp">
        <description>Radiograph: A frontal skull X-ray (likely a Waters view or PA projection) showing the paranasal sinuses and facial bones. A black arrow points to a distinct, radiopaque (white) mass located within the left nasal cavity, illustrating the appearance of a rhinolith.</description>
      </img>
    </images>
  </page>
  <page number="40">
    <text># 2.4 Rhinoliths and Antroliths

**Clinical Features:**
*   Asymptomatic
*   Expanding mass may impinge on mucosa → pain, congestion, and ulceration
*   May have nasal obstruction, unilateral purulent or blood-stained rhinorrhoea, sinusitis, headache, epistaxis, anosmia, fetor, and fever

**Management:**
*   Referral to ENT for endonasal or sinus endoscopic surgical removal
*   Lithotripsy has been used in some cases to debulk large rhinoliths</text>
    <formatted_text>#### Clinical Features

- Asymptomatic
- Expanding mass may impinge on mucosa → pain, congestion, and ulceration
- May have nasal obstruction, unilateral purulent or blood-stained rhinorrhoea, sinusitis, headache, epistaxis, anosmia, fetor, and fever

#### Management

- Referral to ENT for endonasal or sinus endoscopic surgical removal
- Lithotripsy has been used in some cases to debulk large rhinoliths</formatted_text>
  </page>
  <page number="41">
    <text>2.4 Rhinoliths and Antroliths

o Location:
    o Rhinoliths: develop in nose
    o Antroliths: develop in maxillary antrum
    o Concretions rarely form in frontal or ethmoid sinus
o Periphery/Shape:
    o Various shapes and sizes, depending on nature of nidus
o Internal Features:
    o Homogeneous or heterogeneous radiopacities, depending on nature of nidus
    o May have laminations
    o Occasionally, density exceeds surrounding bone
o Surrounding Features: N/A

![](L2 - Opacities in Dental Imaging_figures/img_a45d46c2a311cf41.webp)</text>
    <formatted_text>#### Location

- Rhinoliths: develop in nose
- Antroliths: develop in maxillary antrum
- Concretions rarely form in frontal or ethmoid sinus

#### Periphery/Shape

- Various shapes and sizes, depending on nature of nidus

#### Internal Features

- Homogeneous or heterogeneous radiopacities, depending on nature of nidus
- May have laminations
- Occasionally, density exceeds surrounding bone

#### Surrounding Features

- N/A</formatted_text>
    <images>
      <img order="0" bbox="670,473,991,978" bbox_format="xyxy_norm_1000" bbox_origin="top_left" bbox_space="page" type="figure" path="L2 - Opacities in Dental Imaging_figures/img_a45d46c2a311cf41.webp">
        <description>A cropped radiograph (likely a panoramic dental X-ray) showing the maxillary teeth and sinuses, with a distinct round radio-opacity visible within the maxillary antrum. This illustrates the location of an antrolith, which is described in the text as developing in the maxillary antrum.</description>
      </img>
    </images>
  </page>
  <page number="42">
    <text># 3. Metastatic Calcification</text>
  </page>
  <page number="43">
    <text>**3. Metastatic Calcifications**

*   Caused by conditions involving elevated serum Ca and PO₄ levels
*   E.g. hyperparathyroidism, hypercalcaemia of malignancy
*   Occurs in soft tissues of orofacial region
*   Extremely rare</text>
    <formatted_text>- Caused by conditions involving elevated serum Ca and PO₄ levels
- E.g. hyperparathyroidism, hypercalcaemia of malignancy
- Occurs in soft tissues of orofacial region
- Extremely rare</formatted_text>
    <audio_inserts count="1">
      <insert timestamp="00:35:35" confidence="3" anchor="Occurs in soft tissues of orofacial region - Extremely rare">

&gt; [!note] Lecturer — Metastatic Calcification
&gt; Metastatic calcification may also occur in chronic renal failure. These findings are uncommon in dental practice.
</insert>
    </audio_inserts>
  </page>
  <page number="44">
    <text>4. Heterotopic Ossifications

1. Stylohyoid ligament ossification
2. Osteoma cutis
3. Myositis ossificans</text>
    <formatted_text>1. Stylohyoid ligament ossification
2. Osteoma cutis
3. Myositis ossificans</formatted_text>
    <audio_inserts count="1">
      <insert timestamp="00:01:36" confidence="5" anchor="3. Myositis ossificans">
- ==Heterotopic ossification is the deposition of calcium and phosphate as organised bone within soft tissue.==</insert>
    </audio_inserts>
  </page>
  <page number="45">
    <text># 4.1 Stylohyoid Ligament Ossification

**Disease Mechanism:**
*   The styloid process arises from second branchial arch (Reichert's cartilage).
*   The stylohyoid ligament is a remnant of the second branchial arch.
*   Ossification of the styloid process begins from the base of the skull downwards
*   Length of styloid process is variable, but maximum 3cm is considered to be normal
*   This ossification process may extend to the stylohyoid ligament
    *   Commonly bilateral

**Epidemiology:**
*   **Prevalence:** ~18% of population showed ossification of &gt;3cm of the stylohyoid ligament
*   **Age:** may show some calcification at any age

![](L2 - Opacities in Dental Imaging_figures/img_ee0ea3ec501317ab.webp)</text>
    <formatted_text>#### Disease Mechanism

- The styloid process arises from second branchial arch (Reichert's cartilage).
- The stylohyoid ligament is a remnant of the second branchial arch.
- Ossification of the styloid process begins from the base of the skull downwards.
- Length of styloid process is variable, but maximum 3 cm is considered to be normal.
- This ossification process may extend to the stylohyoid ligament
  - Commonly bilateral

#### Epidemiology

- **Prevalence:** ~18% of population showed ossification of &gt;3 cm of the stylohyoid ligament
- **Age:** may show some calcification at any age</formatted_text>
    <images>
      <img order="0" bbox="634,299,961,973" bbox_format="xyxy_norm_1000" bbox_origin="top_left" bbox_space="page" type="figure" path="L2 - Opacities in Dental Imaging_figures/img_ee0ea3ec501317ab.webp">
        <description>A lateral cephalometric radiograph showing the skull, cervical spine, and dentition with orthodontic brackets. An elongated, ossified styloid process is visible extending inferiorly from the base of the skull towards the hyoid bone.</description>
      </img>
    </images>
  </page>
  <page number="46">
    <text># 4.1 Stylohyoid Ligament Ossification

**Clinical Features:**
*   Usually an incidental feature on panoramic images
*   The ossified ligament can be palpated at the palatine tonsil as a hard, pointed structure
*   Only a few patients have symptoms
*   Little correlation between extent of ossification and intensity of symptoms
*   Symptoms related to the ossification of the stylohyoid ligament is known as **Eagle Syndrome** with two subtypes:
    *   Classic Eagle syndrome
        *   Results from cranial nerve impingement
    *   Carotid artery syndrome
        *   Results from impingement of carotid vessels</text>
    <formatted_text>#### Clinical Features

- Usually an incidental feature on panoramic images
- The ossified ligament can be palpated at the palatine tonsil as a hard, pointed structure
- Only a few patients have symptoms
- Little correlation between extent of ossification and intensity of symptoms
- Symptoms related to the ossification of the stylohyoid ligament is known as **Eagle Syndrome** with two subtypes:
  - Classic Eagle syndrome
    - Results from cranial nerve impingement
  - Carotid artery syndrome
    - Results from impingement of carotid vessels</formatted_text>
  </page>
  <page number="47">
    <text>Classic Eagle Syndrome

Stylohyoid ligament ossification + Presence of clinical discomfort + a recent history of neck trauma (typically tonsillectomy)

The ossified stylohyoid complex and local scar tissue are thought to cause symptoms by impinging on CN V, VII, IX, X or XII (pass in close proximity to the styloid process)

Symptoms
Vague, nagging to intense pain in the pharynx on speaking, chewing, swallowing, turning the head or opening the mouth widely, especially on singing or yawning
A foreign body sensation in the throat on swallowing
Tinnitus
Otalgia

![styloid process](L2 - Opacities in Dental Imaging_figures/img_dc92d76ca905076b.webp)</text>
    <formatted_text>Stylohyoid ligament ossification + presence of clinical discomfort + a recent history of neck trauma (typically tonsillectomy)

The ossified stylohyoid complex and local scar tissue are thought to cause symptoms by impinging on CN V, VII, IX, X or XII (pass in close proximity to the styloid process)

#### Symptoms

- Vague, nagging to intense pain in the pharynx on speaking, chewing, swallowing, turning the head or opening the mouth widely, especially on singing or yawning
- A foreign body sensation in the throat on swallowing
- Tinnitus
- Otalgia</formatted_text>
    <audio_inserts count="1">
      <insert timestamp="00:39:46" confidence="12" anchor="Vague, nagging to intense pain in the pharynx on speaking, chewing, swallowing, ">

&gt; [!note] Lecturer — Carotid Artery Syndrome
&gt; Carotid artery syndrome, also called vascular Eagle syndrome, consists of stylohyoid ligament ossification with symptoms but no history of neck trauma.
&gt;
&gt; - It is more prevalent than classic Eagle syndrome and tends to affect individuals over 40 years of age.
&gt; - Head turning may cause compression of the internal or external carotid artery.
&gt; - Reported effects include vertigo, syncope, carotid-distribution pain and carotidynia from stimulation of the sympathetic plexus around the artery.
&gt; - Other reported symptoms include eye pain, temporoparietal headaches, migraines, aphasia, visual symptoms and weakness.
</insert>
    </audio_inserts>
    <images>
      <img order="0" bbox="189,437,473,931" bbox_format="xyxy_norm_1000" bbox_origin="top_left" bbox_space="page" type="diagram" path="L2 - Opacities in Dental Imaging_figures/img_dc92d76ca905076b.webp" caption="styloid process">
        <description>This is a labelled anatomical diagram of the lateral neck, illustrating the styloid process and surrounding structures. It depicts the spatial relationship between the stylohyoid complex (including the stylohyoid ligament and muscle) and adjacent neurovascular bundles such as the internal jugular vein, common carotid artery, and cranial nerves (facial, glossopharyngeal, vagus, spinal accessory, hypoglossal). The image highlights the anatomy relevant to Eagle Syndrome, showing how an ossified ligament or elongated process could impinge on these nearby nerves.</description>
      </img>
    </images>
  </page>
  <page number="48">
    <text>Classic Eagle Syndrome
Stylohyoid ligament ossification + Presence of clinical discomfort + a recent history of neck trauma (typically tonsillectomy)
The ossified stylohyoid complex and local scar tissue are thought to cause symptoms by impinging on CN V, VII, IX, X or XII (pass in close proximity to the styloid process)
Symptoms
Vague, nagging to intense pain in the pharynx on speaking, chewing, swallowing, turning the head or opening the mouth widely, especially on singing or yawning
A foreign body sensation in the throat on swallowing
Tinnitus
Otalgia

Carotid Artery Syndrome
Synonym: Vascular Eagle Syndrome
Stylohyoid ligament ossification + Clinical symptoms WITHOUT a history of neck trauma
&gt;40yo
More prevalent than Classic Eagle Syndrome
Referred pain along the distribution of ECA or ICA
Due to mechanical impingement of the involved artery and stimulation of its sympathetic nerve plexus → carotidynia
May even occur in the absence of ossification of the stylohyoid complex
Symptoms:
ECA: suborbital facial pain
ICA: eye pain, temporal/parietal headache, migraines, aphasia, visual symptoms, weakness and transient hemispheric ischemia with vertigo or syncope notably when turning the head to the ipsilateral side

![Anatomical diagram showing the styloid process, muscles, nerves, and vessels of the neck](L2 - Opacities in Dental Imaging_figures/img_6bcaa14b77e48a31.webp)
![Mastoid process Styloid process External carotid artery Stylohyoid ligament Internal carotid artery Lesser cornu of hyoid bone](L2 - Opacities in Dental Imaging_figures/img_1e7e3636185a35cb.webp)</text>
    <formatted_text>Stylohyoid ligament ossification + presence of clinical discomfort + a recent history of neck trauma (typically tonsillectomy)

The ossified stylohyoid complex and local scar tissue are thought to cause symptoms by impinging on CN V, VII, IX, X or XII (pass in close proximity to the styloid process)

#### Symptoms

- Vague, nagging to intense pain in the pharynx on speaking, chewing, swallowing, turning the head or opening the mouth widely, especially on singing or yawning
- A foreign body sensation in the throat on swallowing
- Tinnitus
- Otalgia

#### Carotid Artery Syndrome

Synonym: Vascular Eagle Syndrome

- Stylohyoid ligament ossification + clinical symptoms WITHOUT a history of neck trauma
- &gt;40 years old
- More prevalent than Classic Eagle Syndrome
- Referred pain along the distribution of ECA or ICA
- Due to mechanical impingement of the involved artery and stimulation of its sympathetic nerve plexus → carotidynia
- May even occur in the absence of ossification of the stylohyoid complex

#### Symptoms

- ECA: suborbital facial pain
- ICA: eye pain, temporal/parietal headache, migraines, aphasia, visual symptoms, weakness and transient hemispheric ischemia with vertigo or syncope notably when turning the head to the ipsilateral side</formatted_text>
    <images>
      <img order="0" bbox="190,435,472,932" bbox_format="xyxy_norm_1000" bbox_origin="top_left" bbox_space="page" type="diagram" path="L2 - Opacities in Dental Imaging_figures/img_6bcaa14b77e48a31.webp" caption="Anatomical diagram showing the styloid process, muscles, nerves, and vessels of the neck">
        <description>Labelled anatomical diagram showing the lateral view of the neck, detailing the styloid process and surrounding structures. The illustration identifies specific nerves (facial, glossopharyngeal, vagus, hypoglossal), vessels (common carotid artery, internal jugular vein), and muscles/ligaments associated with the stylohyoid complex.</description>
      </img>
      <img order="1" bbox="755,11,987,421" bbox_format="xyxy_norm_1000" bbox_origin="top_left" bbox_space="page" type="diagram" path="L2 - Opacities in Dental Imaging_figures/img_1e7e3636185a35cb.webp" caption="Mastoid process Styloid process External carotid artery Stylohyoid ligament Internal carotid artery Lesser cornu of hyoid bone">
        <description>An anatomical illustration depicting the relationship between the stylohyoid ligament and the carotid arteries. The diagram shows the styloid process connecting to the lesser cornu of the hyoid bone via the stylohyoid ligament, which crosses between the internal and external carotid arteries.</description>
      </img>
    </images>
  </page>
  <page number="49">
    <text>&lt;h2&gt;4.1 Stylohyoid Ligament Ossification&lt;/h2&gt;

&lt;table&gt;
  &lt;tr&gt;
    &lt;th colspan=&quot;2&quot;&gt;DDx for Stylohyoid ligament Ossification and Eagle Syndrome&lt;/th&gt;
  &lt;/tr&gt;
  &lt;tr&gt;
    &lt;td colspan=&quot;2&quot;&gt;Symptoms are often vague, but symptoms + evidence of ligament ossification is usually distinctive for Eagle syndrome.&lt;/td&gt;
  &lt;/tr&gt;
  &lt;tr&gt;
    &lt;td colspan=&quot;2&quot;&gt;NOTE: Presence of stylohyoid ligament ossification WITHOUT symptoms is not considered to be Eagle syndrome&lt;/td&gt;
  &lt;/tr&gt;
  &lt;tr&gt;
    &lt;td&gt;&lt;b&gt;TMD&lt;/b&gt;&lt;/td&gt;
    &lt;td&gt;Diagnostic confirmation of stylohyoid ligament ossification can be achieved by topical anaesthesia to suppress gag reflex, palpation of tonsillar fossa to reproduce symptoms, and detection of the hard submucosal mass&lt;/td&gt;
  &lt;/tr&gt;
&lt;/table&gt;

&lt;ul&gt;
  &lt;li&gt;&lt;span style=&quot;color: #00CED1;&quot;&gt;Management:&lt;/span&gt;
    &lt;ul&gt;
      &lt;li&gt;Most are asymptomatic: no treatment&lt;/li&gt;
      &lt;li&gt;Vague symptoms: conservative management, reassurance, steroid or lidocaine injections into tonsillar fossa&lt;/li&gt;
      &lt;li&gt;Persistent or intense symptoms: stylohyoidectomy (amputation of styloid process)&lt;/li&gt;
    &lt;/ul&gt;
  &lt;/li&gt;
&lt;/ul&gt;</text>
    <formatted_text>#### DDx for Stylohyoid Ligament Ossification and Eagle Syndrome

Symptoms are often vague, but symptoms + evidence of ligament ossification is usually distinctive for Eagle syndrome.

&gt; NOTE: Presence of stylohyoid ligament ossification WITHOUT symptoms is not considered to be Eagle syndrome.

- **TMD:** Diagnostic confirmation of stylohyoid ligament ossification can be achieved by topical anaesthesia to suppress gag reflex, palpation of tonsillar fossa to reproduce symptoms, and detection of the hard submucosal mass

#### Management

- Most are asymptomatic: no treatment
- Vague symptoms: conservative management, reassurance, steroid or lidocaine injections into tonsillar fossa
- Persistent or intense symptoms: stylohyoidectomy (amputation of styloid process)</formatted_text>
  </page>
  <page number="50">
    <text>Location:
Linear ossification extends from region of mastoid process, crosses the posteroinferior aspect of the ramus towards the hyoid bone

Periphery/Shape:
Styloid process appears as long, tapering, thin radiopaque process of 0.5-2.5cm in length
Ossified ligament has roughly straight outline, although some irregularity may be seen on the outer surface
Pseudoarticulations (radiolucent, joint-like junctions) may interrupt the ligament

Internal Features:
Small: homogeneously radiopaque
As the ossification increases in length and girth, the outer cortex of the bone becomes apparent (radiopaque band at periphery)

Surrounding Features: N/A

![](L2 - Opacities in Dental Imaging_figures/img_96cf9dce48856930.webp)
![](L2 - Opacities in Dental Imaging_figures/img_6202c986c0356eeb.webp)
![](L2 - Opacities in Dental Imaging_figures/img_4db7fd68c454aba2.webp)</text>
    <formatted_text>#### Location

Linear ossification extends from region of mastoid process, crosses the posteroinferior aspect of the ramus towards the hyoid bone

#### Periphery/Shape

- Styloid process appears as long, tapering, thin radiopaque process of 0.5–2.5 cm in length
- Ossified ligament has roughly straight outline, although some irregularity may be seen on the outer surface
- Pseudoarticulations (radiolucent, joint-like junctions) may interrupt the ligament

#### Internal Features

- Small: homogeneously radiopaque
- As the ossification increases in length and girth, the outer cortex of the bone becomes apparent (radiopaque band at periphery)

#### Surrounding Features

N/A</formatted_text>
    <images>
      <img order="0" bbox="724,14,995,481" bbox_format="xyxy_norm_1000" bbox_origin="top_left" bbox_space="page" type="figure" path="L2 - Opacities in Dental Imaging_figures/img_96cf9dce48856930.webp">
        <description>A lateral radiograph of the neck region showing a long, tapering, radiopaque process extending downwards from the skull base towards the hyoid bone. Two white arrows point to this structure, highlighting its linear ossification.</description>
      </img>
      <img order="1" bbox="423,511,698,998" bbox_format="xyxy_norm_1000" bbox_origin="top_left" bbox_space="page" type="figure" path="L2 - Opacities in Dental Imaging_figures/img_6202c986c0356eeb.webp">
        <description>Radiograph: A lateral view of the cervical spine and skull base showing a long, tapering radiopaque process extending inferiorly from the region of the mastoid process. The image illustrates linear ossification of the stylohyoid ligament, appearing as a thin bony structure with irregular outer surfaces.</description>
      </img>
      <img order="2" bbox="711,535,994,960" bbox_format="xyxy_norm_1000" bbox_origin="top_left" bbox_space="page" type="figure" path="L2 - Opacities in Dental Imaging_figures/img_4db7fd68c454aba2.webp">
        <description>Radiograph: A lateral panoramic dental X-ray showing the mandible, cervical spine, and soft tissues of the neck. Two white arrows point to a linear radiopaque structure extending downwards from the region of the mastoid process towards the hyoid bone, illustrating the ossified stylohyoid ligament described in the text.</description>
      </img>
    </images>
  </page>
  <page number="51">
    <text>4.2 Osteoma Cutis

Disease Mechanism:
A rare soft tissue calcification in the skin or subcutaneous tissues that manifests as focal development of bone within the dermis physically removed from any original osseous tissue

Divided into:
Primary (15%): occuring in normal tissue without any pre-existing condition
Secondary (85%): developing in damaged or disrupted skin (e.g. acne)

Occasionally found in diffuse scleroderma
Replaces the altered collagen in the dermis and subcutaneous septa

![](L2 - Opacities in Dental Imaging_figures/img_7999e943b89a278a.webp)</text>
    <formatted_text>#### Disease Mechanism

A rare soft tissue calcification in the skin or subcutaneous tissues that manifests as focal development of bone within the dermis physically removed from any original osseous tissue.

Divided into:

- Primary (15%): occurring in normal tissue without any pre-existing condition
- Secondary (85%): developing in damaged or disrupted skin (e.g. acne)

Occasionally found in diffuse scleroderma — replaces the altered collagen in the dermis and subcutaneous septa</formatted_text>
    <images>
      <img order="0" bbox="581,371,975,894" bbox_format="xyxy_norm_1000" bbox_origin="top_left" bbox_space="page" type="figure" path="L2 - Opacities in Dental Imaging_figures/img_7999e943b89a278a.webp">
        <description>Radiograph: A dental X-ray showing teeth with restorations and root canal fillings, accompanied by yellow arrows pointing to multiple small, circular radiopaque structures in the soft tissue area below the roots.</description>
      </img>
    </images>
  </page>
  <page number="52">
    <text># 4.2 Osteoma Cutis

*   **Clinical Features:**
    *   Can occur anywhere
        *   EO: face most common
        *   IO: tongue most common (osteoma mucosae or osseous choristoma)
    *   Does not cause any visible change in the overlying skin
        *   Occasional colour change to yellowish-white
    *   If large, individual osteoma may be palpated
    *   If needle inserted, stone-like resistance is met
    *   **Multiple miliary osteoma cutis**: numerous (dozens to hundreds) of lesions
        *   Female: face; Male: scalp or chest
*   Management:
    *   No treatment required
    *   Primary osteoma cutis often removed for cosmetic reasons
        *   Resurfacing of the skin in multiple miliary osteoma cutis with Er:YAG laser + tretinoin cream, curettage and CO$_2$ continuous wave laser, or needle microincision-extirpation technique</text>
    <formatted_text>#### Clinical Features

- Can occur anywhere
  - EO: face most common
  - IO: tongue most common (osteoma mucosae or osseous choristoma)
- Does not cause any visible change in the overlying skin
  - Occasional colour change to yellowish-white
- If large, individual osteoma may be palpated
- If needle inserted, stone-like resistance is met
- **Multiple miliary osteoma cutis:** numerous (dozens to hundreds) of lesions
  - Female: face; Male: scalp or chest

#### Management

- No treatment required
- Primary osteoma cutis often removed for cosmetic reasons
  - Resurfacing of the skin in multiple miliary osteoma cutis with Er:YAG laser + tretinoin cream, curettage and CO₂ continuous wave laser, or needle microincision-extirpation technique</formatted_text>
  </page>
  <page number="53">
    <text>4.2 Osteoma Cutis

Location:
* Most commonly cheek and lip regions
* May be superimposed over tooth root or alveolar process
→ appearance of area of dense bone

Periphery/Shape:
* Smoothly outlined, radiopaque, washer-shaped
* Single or multiple
* Usually very small (range: 0.1-5cm)

Internal Features:
* Homogeneously radiopaque with radiolucent centre (represents fatty marrow) → donut appearance
* Trabecular occasionally develop in marrow cavity of larger osteomas
* Snowflake-like radiopaque corresponding to clinical location of scar tissue in calcified cystic acne

Surrounding Features: N/A

![](L2 - Opacities in Dental Imaging_figures/img_6e3b200a28df076c.webp)
![](L2 - Opacities in Dental Imaging_figures/img_ac9376941888dd23.webp)</text>
    <formatted_text>#### Location

- Most commonly cheek and lip regions
- May be superimposed over tooth root or alveolar process → appearance of area of dense bone

#### Periphery/Shape

- Smoothly outlined, radiopaque, washer-shaped
- Single or multiple
- Usually very small (range: 0.1–5 cm)

#### Internal Features

- Homogeneously radiopaque with radiolucent centre (represents fatty marrow) → donut appearance
- Trabeculae occasionally develop in marrow cavity of larger osteomas
- Snowflake-like radiopacity corresponding to clinical location of scar tissue in calcified cystic acne

#### Surrounding Features

N/A</formatted_text>
    <images>
      <img order="0" bbox="621,1,999,547" bbox_format="xyxy_norm_1000" bbox_origin="top_left" bbox_space="page" type="figure" path="L2 - Opacities in Dental Imaging_figures/img_6e3b200a28df076c.webp">
        <description>A composite medical imaging figure containing four panels (A-D) showing axial, sagittal, and 3D reconstructed views of a skull. Grey arrows in each panel point to small, discrete, hyperdense (white) nodules located within the soft tissues of the face, specifically overlying the cheek region.</description>
      </img>
      <img order="1" bbox="643,555,990,998" bbox_format="xyxy_norm_1000" bbox_origin="top_left" bbox_space="page" type="figure" path="L2 - Opacities in Dental Imaging_figures/img_ac9376941888dd23.webp">
        <description>Radiograph showing a cluster of small, round, radiopaque densities in the soft tissue adjacent to a tooth root.</description>
      </img>
    </images>
  </page>
  <page number="54">
    <text>**4.3 Myositis Ossificans**

*   Fibrous tissue and heterotopic bone form within the interstitial tissue of muscle and associated tendons/ligaments.
    *   Leads to secondary destruction and atrophy of muscle (due to interdigitation of the fibrous tissue and bone which separates the muscle fibres)
*   Two principle forms:
    *   Localised
    *   Progressive

![](L2 - Opacities in Dental Imaging_figures/img_80607c71bafdf47f.webp)</text>
    <formatted_text>- Fibrous tissue and heterotopic bone form within the interstitial tissue of muscle and associated tendons/ligaments.
  - Leads to secondary destruction and atrophy of muscle (due to interdigitation of the fibrous tissue and bone which separates the muscle fibres)
- Two principle forms:
  - Localised
  - Progressive</formatted_text>
    <images>
      <img order="0" bbox="602,144,975,934" bbox_format="xyxy_norm_1000" bbox_origin="top_left" bbox_space="page" type="figure" path="L2 - Opacities in Dental Imaging_figures/img_80607c71bafdf47f.webp">
        <description>Radiograph: A lateral skull X-ray showing the temporomandibular joint (TMJ) and mandible. A black arrow points to a radiopaque area within the soft tissue anterior to the condyle, illustrating heterotopic bone formation consistent with myositis ossificans.</description>
      </img>
    </images>
  </page>
  <page number="55">
    <text># 4.3 Localised (Traumatic) Myositis Ossificans

*   **Synonyms:** post-traumatic myositis ossificans, solitary myositis
*   **Epidemiology:**
    *   Can develop at any age and gender (more common in young men who engage in vigorous activity)
*   **Aetiology:** acute/chronic trauma, heavy muscular strain caused by certain occupations and sports, muscle injury from multiple injections (e. IANB)
*   **Disease Mechanism:**
    *   Skeletal muscle has limited capacity for regeneration following significant physical trauma
        *   $\rightarrow$ haemorrhage into muscle, tendons, or fascia
        *   $\rightarrow$ exuberant proliferation of vascular granulation tissue subsequently undergoes metaplasia to cartilage and bone during healing
    *   NB: no inflammation is involved despite the term myositis
    *   NB: the fibrous tissue and bone form within the interstitial tissue of muscle; no actual ossification of the muscle fibres occurs</text>
    <formatted_text>- **Synonyms:** post-traumatic myositis ossificans, solitary myositis
- **Epidemiology:**
  - Can develop at any age and gender (more common in young men who engage in vigorous activity)
- **Aetiology:** acute/chronic trauma, heavy muscular strain caused by certain occupations and sports, muscle injury from multiple injections (e.g. IANB)

#### Disease Mechanism

- Skeletal muscle has limited capacity for regeneration following significant physical trauma
  - → haemorrhage into muscle, tendons, or fascia
  - → exuberant proliferation of vascular granulation tissue subsequently undergoes metaplasia to cartilage and bone during healing
- NB: no inflammation is involved despite the term myositis
- NB: the fibrous tissue and bone form within the interstitial tissue of muscle; no actual ossification of the muscle fibres occurs</formatted_text>
  </page>
  <page number="56">
    <text>&lt;h1&gt;4.3 Localised (Traumatic) Myositis Ossificans&lt;/h1&gt;

&lt;h2&gt;&lt;span style=&quot;color: #40E0D0;&quot;&gt;Clinical Features:&lt;/span&gt;&lt;/h2&gt;
&lt;ul&gt;
  &lt;li&gt;Site of trauma remains swollen, tender, and painful for longer than expected&lt;/li&gt;
  &lt;li&gt;Overlying skin red and inflamed&lt;/li&gt;
  &lt;li&gt;Opening jaws may be difficult&lt;/li&gt;
  &lt;li&gt;After 2-3 weeks, the area of ossification becomes apparent with palpation of a firm intramuscular mass&lt;/li&gt;
  &lt;li&gt;May enlarge slowly but eventually stops growing&lt;/li&gt;
  &lt;li&gt;May appear fixed or be freely moveable&lt;/li&gt;
&lt;/ul&gt;

&lt;h2&gt;&lt;span style=&quot;color: #40E0D0;&quot;&gt;Management:&lt;/span&gt;&lt;/h2&gt;
&lt;ul&gt;
  &lt;li&gt;Rest and limitation of use to reduce extent of calcific deposit&lt;/li&gt;
  &lt;li&gt;Medical management with bone morphogenetic protein type I receptor inhibition to reduce heterotopic ossification&lt;/li&gt;
  &lt;li&gt;Surgical excision for lesions that cause a functional restriction or neurologic impairment
    &lt;ul&gt;
      &lt;li&gt;With intensive physiotherapy to minimise postsurgical scarring&lt;/li&gt;
      &lt;li&gt;Incomplete excision or excision at immature stage can result in recurrence&lt;/li&gt;
    &lt;/ul&gt;
  &lt;/li&gt;
&lt;/ul&gt;</text>
    <formatted_text>#### Clinical Features

- Site of trauma remains swollen, tender, and painful for longer than expected
- Overlying skin red and inflamed
- Opening jaws may be difficult
- After 2–3 weeks, the area of ossification becomes apparent with palpation of a firm intramuscular mass
- May enlarge slowly but eventually stops growing
- May appear fixed or be freely moveable

#### Management

- Rest and limitation of use to reduce extent of calcific deposit
- Medical management with bone morphogenetic protein type I receptor inhibition to reduce heterotopic ossification
- Surgical excision for lesions that cause a functional restriction or neurologic impairment
  - With intensive physiotherapy to minimise postsurgical scarring
  - Incomplete excision or excision at immature stage can result in recurrence</formatted_text>
  </page>
  <page number="57">
    <text>Location:
Most common in head and neck: masseter and SCM

Periphery/Shape:
Periphery more radiopaque than internal structure
Variation in shape: irregular oval to linear streaks (pseudotrabeculae) running in same direction as muscle fibres – characteristic for myositis ossificans
Heterotopic bone may lie along long axis of muscle
Generally &lt;6cm in greatest dimension

Internal Features:
Varies with time
(3-4 weeks) faintly homogeneous radiopaque
(2 months) further organisation into a delicate, lacy or feathery radiopaque internal structure (indicative of bone formation but without normal trabecular pattern)
(6-12 months) fully matured where entity becomes denser, more homogeneous and better defined
(after this) lesion may shrink

Surrounding Features: N/A

![](L2 - Opacities in Dental Imaging_figures/img_b466a22a01250161.webp)
![](L2 - Opacities in Dental Imaging_figures/img_d589908b786d334d.webp)</text>
    <formatted_text>#### Location

Most common in head and neck: masseter and SCM

#### Periphery/Shape

- Periphery more radiopaque than internal structure
- Variation in shape: irregular oval to linear streaks (pseudotrabeculae) running in same direction as muscle fibres — characteristic for myositis ossificans
- Heterotopic bone may lie along long axis of muscle
- Generally &lt;6 cm in greatest dimension

#### Internal Features

Varies with time:

- (3–4 weeks) faintly homogeneous radiopaque
- (2 months) further organisation into a delicate, lacy or feathery radiopaque internal structure (indicative of bone formation but without normal trabecular pattern)
- (6–12 months) fully matured where entity becomes denser, more homogeneous and better defined
- (after this) lesion may shrink

#### Surrounding Features

N/A</formatted_text>
    <images>
      <img order="0" bbox="611,13,926,480" bbox_format="xyxy_norm_1000" bbox_origin="top_left" bbox_space="page" type="figure" path="L2 - Opacities in Dental Imaging_figures/img_b466a22a01250161.webp">
        <description>Axial computed tomography (CT) scan of the head showing a hyperdense, irregular lesion within the soft tissues of the left cheek. A white arrow points to this area of calcification/ossification, which is consistent with the radiographic appearance of myositis ossificans described in the text.</description>
      </img>
      <img order="1" bbox="30,551,460,870" bbox_format="xyxy_norm_1000" bbox_origin="top_left" bbox_space="page" type="figure" path="L2 - Opacities in Dental Imaging_figures/img_d589908b786d334d.webp">
        <description>Radiograph: A coronal CT scan of the head and neck region showing linear, radiopaque streaks within the soft tissue on the left side (indicated by white arrows), consistent with heterotopic bone formation along muscle fibers.</description>
      </img>
    </images>
  </page>
  <page number="58">
    <text>4.3 Localised Myositis Ossificans – DDx

| DDx | |
| :--- | :--- |
| **Ossification of Stylohyoid ligament** | Form and location of myositis ossificans often enough to make DDx |
| **Other soft tissue ossifications** | |
| **Osteogenic neoplasms** | e.g. osteogenic sarcoma – can form a linear bone pattern, however, lesion is contiguous with adjacent bone and signs of bone destruction often present |

![](L2 - Opacities in Dental Imaging_figures/img_e6aea291158f92c5.webp)</text>
    <formatted_text>#### DDx

- **Ossification of stylohyoid ligament:** form and location of myositis ossificans often enough to make DDx
- **Other soft tissue ossifications**
- **Osteogenic neoplasms:** e.g. osteogenic sarcoma — can form a linear bone pattern, however, lesion is contiguous with adjacent bone and signs of bone destruction often present</formatted_text>
    <audio_inserts count="1">
      <insert timestamp="00:49:13" confidence="6" anchor="- **Osteogenic neoplasms:** e.g. osteogenic sarcoma — can form a linear bone pat">
- ==Further imaging and investigations may be needed to exclude bone-forming neoplasms.==</insert>
    </audio_inserts>
    <images>
      <img order="0" bbox="66,333,931,709" bbox_format="xyxy_norm_1000" bbox_origin="top_left" bbox_space="page" type="table" path="L2 - Opacities in Dental Imaging_figures/img_e6aea291158f92c5.webp">
        <description>A two-column table titled 'DDx' listing differential diagnoses for localised myositis ossificans. The left column lists conditions including 'Ossification of Stylohyoid ligament', 'Other soft tissue ossifications', and 'Osteogenic neoplasms', while the right column provides corresponding notes, such as distinguishing osteogenic sarcoma by its linear bone pattern and contiguity with adjacent bone.</description>
      </img>
    </images>
  </page>
  <page number="59">
    <text># 4.3 Progressive Myositis Ossificans

*   Synonym: fibrodysplasia ossificans progressive
*   Disease Mechanism:
    *   Rare hereditary autosomal dominant disease
    *   Symptoms from early infancy
*   Epidemiology:
    *   M&gt;F
*   Clinical Features:
    *   Begins in striated muscles of neck and upper back, then extend to extremities.
    *   Initially presents as soft tissue swelling with pain, with increasing stiffness and limitation of movement as ossification occurs, eventually resulting in the ‘petrified man’ condition.
    *   Life expectancy: 3rd-4th decade
*   Management:
    *   No effective treatment exists
    *   Excision of nodules that are traumatised and ulcerate frequently
    *   Supportive therapy may be required in later stages of disease when interference with respiration or respiratory infection occurs</text>
    <formatted_text>- Synonym: fibrodysplasia ossificans progressiva

#### Disease Mechanism

- Rare hereditary autosomal dominant disease
- Symptoms from early infancy

#### Epidemiology

- M &gt; F

#### Clinical Features

- Begins in striated muscles of neck and upper back, then extend to extremities
- Initially presents as soft tissue swelling with pain, with increasing stiffness and limitation of movement as ossification occurs, eventually resulting in the 'petrified man' condition
- Life expectancy: 3rd–4th decade

#### Management

- No effective treatment exists
- Excision of nodules that are traumatised and ulcerate frequently
- Supportive therapy may be required in later stages of disease when interference with respiration or respiratory infection occurs</formatted_text>
    <audio_inserts count="1">
      <insert timestamp="00:50:21" confidence="13" anchor="- Initially presents as soft tissue swelling with pain, with increasing stiffnes">

&gt; [!note] Lecturer — Progressive Disease Outcome
&gt; Premature death generally occurs in the third or fourth decade.
&gt;
&gt; - Causes include ossification of the respiratory muscles.
&gt; - Involvement of the muscles of mastication may cause inadequate nutrition.
</insert>
    </audio_inserts>
  </page>
  <page number="60">
    <text># 4.3 Progressive Myositis Ossificans

*   Imaging features similar to localised form
*   Heterotopic bone more commonly oriented along long axis of involved muscle
*   Osseous malformation of the regions of muscle attachment (e.g. Md condyles) may be seen

![](L2 - Opacities in Dental Imaging_figures/img_b3dc195d8681a8f0.webp)
![](L2 - Opacities in Dental Imaging_figures/img_6bb0665e2d2d9208.webp)</text>
    <formatted_text>- Imaging features similar to localised form
- Heterotopic bone more commonly oriented along long axis of involved muscle
- Osseous malformation of the regions of muscle attachment (e.g. Md condyles) may be seen</formatted_text>
    <images>
      <img order="0" bbox="183,597,441,960" bbox_format="xyxy_norm_1000" bbox_origin="top_left" bbox_space="page" type="figure" path="L2 - Opacities in Dental Imaging_figures/img_b3dc195d8681a8f0.webp">
        <description>Radiograph: A frontal chest X-ray demonstrating extensive, irregular heterotopic ossification. The dense bony formations are oriented along the long axis of the shoulder girdle and upper thoracic musculature, bridging across joints and restricting movement.</description>
      </img>
      <img order="1" bbox="682,328,974,947" bbox_format="xyxy_norm_1000" bbox_origin="top_left" bbox_space="page" type="figure" path="L2 - Opacities in Dental Imaging_figures/img_6bb0665e2d2d9208.webp">
        <description>A lateral cephalometric radiograph showing extensive, irregular heterotopic ossification in the soft tissues of the face and neck region. The image illustrates the characteristic bone formation associated with Progressive Myositis Ossificans, particularly around the mandibular condyle area.</description>
      </img>
    </images>
  </page>
  <page number="61">
    <text># References

* Koong, B. (2017). *Atlas of Oral and Maxillofacial Radiology*. Chichester, UK: John Wiley and Sons.
* White, and Pharoah. (2014). *Oral radiology : Principles and interpretation* (7th ed.). St. Louis: Elsevier/Mosby.</text>
    <formatted_text>- *Koong, B. (2017). Atlas of Oral and Maxillofacial Radiology. Chichester, UK: John Wiley and Sons.*
- *White, and Pharoah. (2014). Oral radiology : Principles and interpretation (7th ed.). St. Louis: Elsevier/Mosby.*</formatted_text>
  </page>
  <page number="62" origin="cases">
    <text>## Case: Radiopaque opacities within a cystic cavity

### Question

**Scenario:** A patient presents with a chronically infected residual cyst.

**What's shown:** A cropped panoramic radiograph and a coronal slice of a multi-slice CT scan of the same patient.

**Consider:** What do the internal opacities within the cystic cavity represent, and what is the underlying mechanism of their formation?


### Answer

**Observations:**
- Opacities are visible internally within the cystic cavity on both the panoramic radiograph and the CT scan.

**Reasoning:** These opacities represent dystrophic calcification, which forms in degenerating, diseased, or necrotic tissue (such as a chronically infected cyst) while serum calcium and phosphate levels remain normal.

**Takeaway:** Dystrophic calcifications can occur within the cavities of chronically infected cysts due to tissue degeneration and necrosis.

## Case: Soft tissue overgrowth in an edentulous ridge

### Question

**Scenario:** An edentulous patient has a history of trauma to the alveolar ridge over the years.

**What's shown:** A radiograph showing the outline of a soft tissue overgrowth with internal opacities.

**Consider:** What is the diagnosis for the soft tissue overgrowth, and what do the internal opacities indicate?


### Answer

**Observations:**
- The outline of a soft tissue overgrowth is visible.
- Internal opacities are present within the soft tissue.

**Reasoning:** The soft tissue overgrowth is fibrous hyperplasia resulting from chronic trauma to the alveolar ridge. The internal opacities represent dystrophic calcification within this hyperplastic tissue.

**Takeaway:** Fibrous hyperplasia caused by chronic trauma can undergo dystrophic calcification, presenting as radiopacities within the soft tissue outline.

## Case: Linear chain of irregular opacities near the mandibular angle

### Question

**Scenario:** A panoramic radiograph is evaluated for soft tissue calcifications in the submandibular and cervical chain region.

**What's shown:** A linear chain of opacities located at or just below the angle of the mandible.

**Consider:** What is the most likely identity of these calcifications, and what are their characteristic morphological features?


### Answer

**Observations:**
- The opacities form a linear chain reflecting the cervical chain of nodes.
- They are well-defined, irregular, and described as cauliflower-like.
- Internally, they may have a laminated appearance resembling an onion cross-section.

**Reasoning:** The location and morphology are characteristic of calcified lymph nodes, which typically result from chronic inflammation (e.g., granulomatous diseases like tuberculosis) or previous oral cavity inflammation. The irregular, cauliflower-like shape distinguishes them from smoother sialoliths or phleboliths.

**Takeaway:** Calcified lymph nodes often present as irregular, cauliflower-like, or laminated opacities in the cervical chain and submandibular regions.

## Case: Cluster of small opacities superimposed over the mid-ramus

### Question

**Scenario:** A panoramic radiograph and cross-sectional imaging (CBCT/MSCT) are reviewed for a patient.

**What's shown:** A cluster of multiple small opacities superimposed over the mid-ramus level on the panoramic view, and located medial to the ramus next to the pharyngeal airspace on CT.

**Consider:** What is the most likely diagnosis for these calcifications, and what is their typical composition and origin?


### Answer

**Observations:**
- Multiple small opacities with a density similar to cortical bone.
- Located medial to the ramus and adjacent to the lateral wall of the pharyngeal airspace.

**Reasoning:** This presentation is classic for a tonsillolith (post-inflammatory tonsillar calcification), typically affecting the palatine tonsil. They form when organic debris (dead bacteria, pus, epithelial cells) lodges in enlarged tonsillar crypts due to repeated tonsillitis and serves as a nidus for calcification.

**Takeaway:** Tonsilloliths present as clusters of small, cortically dense opacities medial to the ramus and are a common incidental finding on panoramic radiographs.
</text>
    <formatted_text>## Case: Radiopaque opacities within a cystic cavity

### Question

**Scenario:** A patient presents with a chronically infected residual cyst.

**What's shown:** A cropped panoramic radiograph and a coronal slice of a multi-slice CT scan of the same patient.

**Consider:** What do the internal opacities within the cystic cavity represent, and what is the underlying mechanism of their formation?


![](L2 - Opacities in Dental Imaging_cases_attachments/img_93948e12d273709c.webp)
![](L2 - Opacities in Dental Imaging_cases_attachments/img_244cbfe624284b1f.webp)
### Answer

**Observations:**
- Opacities are visible internally within the cystic cavity on both the panoramic radiograph and the CT scan.

**Reasoning:** These opacities represent dystrophic calcification, which forms in degenerating, diseased, or necrotic tissue (such as a chronically infected cyst) while serum calcium and phosphate levels remain normal.

**Takeaway:** Dystrophic calcifications can occur within the cavities of chronically infected cysts due to tissue degeneration and necrosis.

## Case: Soft tissue overgrowth in an edentulous ridge

### Question

**Scenario:** An edentulous patient has a history of trauma to the alveolar ridge over the years.

**What's shown:** A radiograph showing the outline of a soft tissue overgrowth with internal opacities.

**Consider:** What is the diagnosis for the soft tissue overgrowth, and what do the internal opacities indicate?


![](L2 - Opacities in Dental Imaging_cases_attachments/img_244cbfe624284b1f.webp)
### Answer

**Observations:**
- The outline of a soft tissue overgrowth is visible.
- Internal opacities are present within the soft tissue.

**Reasoning:** The soft tissue overgrowth is fibrous hyperplasia resulting from chronic trauma to the alveolar ridge. The internal opacities represent dystrophic calcification within this hyperplastic tissue.

**Takeaway:** Fibrous hyperplasia caused by chronic trauma can undergo dystrophic calcification, presenting as radiopacities within the soft tissue outline.

## Case: Linear chain of irregular opacities near the mandibular angle

### Question

**Scenario:** A panoramic radiograph is evaluated for soft tissue calcifications in the submandibular and cervical chain region.

**What's shown:** A linear chain of opacities located at or just below the angle of the mandible.

**Consider:** What is the most likely identity of these calcifications, and what are their characteristic morphological features?


![](L2 - Opacities in Dental Imaging_cases_attachments/img_8ec8853f70cd8ca5.webp)
![](L2 - Opacities in Dental Imaging_cases_attachments/img_52865e6921604e81.webp)
![](L2 - Opacities in Dental Imaging_cases_attachments/img_5aba4653d9e92d9c.webp)
### Answer

**Observations:**
- The opacities form a linear chain reflecting the cervical chain of nodes.
- They are well-defined, irregular, and described as cauliflower-like.
- Internally, they may have a laminated appearance resembling an onion cross-section.

**Reasoning:** The location and morphology are characteristic of calcified lymph nodes, which typically result from chronic inflammation (e.g., granulomatous diseases like tuberculosis) or previous oral cavity inflammation. The irregular, cauliflower-like shape distinguishes them from smoother sialoliths or phleboliths.

**Takeaway:** Calcified lymph nodes often present as irregular, cauliflower-like, or laminated opacities in the cervical chain and submandibular regions.

## Case: Cluster of small opacities superimposed over the mid-ramus

### Question

**Scenario:** A panoramic radiograph and cross-sectional imaging (CBCT/MSCT) are reviewed for a patient.

**What's shown:** A cluster of multiple small opacities superimposed over the mid-ramus level on the panoramic view, and located medial to the ramus next to the pharyngeal airspace on CT.

**Consider:** What is the most likely diagnosis for these calcifications, and what is their typical composition and origin?


![](L2 - Opacities in Dental Imaging_cases_attachments/img_9ea0aac4891ad2b3.webp)
![](L2 - Opacities in Dental Imaging_cases_attachments/slide_p15_b75d75ca8a1ec484.webp)
### Answer

**Observations:**
- Multiple small opacities with a density similar to cortical bone.
- Located medial to the ramus and adjacent to the lateral wall of the pharyngeal airspace.

**Reasoning:** This presentation is classic for a tonsillolith (post-inflammatory tonsillar calcification), typically affecting the palatine tonsil. They form when organic debris (dead bacteria, pus, epithelial cells) lodges in enlarged tonsillar crypts due to repeated tonsillitis and serves as a nidus for calcification.

**Takeaway:** Tonsilloliths present as clusters of small, cortically dense opacities medial to the ramus and are a common incidental finding on panoramic radiographs.
</formatted_text>
    <heading_path>Case: Radiopaque opacities within a cystic cavity</heading_path>
    <images>
      <img order="0" type="figure" path="L2 - Opacities in Dental Imaging_figures/img_93948e12d273709c.webp" media="frame" source="slide" page="7" timestamp="00:02:39">
        <description>B The figure displays two medical imaging scans side-by-side, labeled 'A' and 'B', illustrating the radiographic appearance of dystrophic calcification. Panel A is a lateral projection (likely a lateral skull or soft tissue neck view) showing irregular radiopaque particles indicated by white arrows within the soft tissue. Panel B is a coronal CT scan slice, also marked with a white arrow pointing to a cluster of dense, granular calcifications in the lower region.</description>
      </img>
      <img order="1" type="figure" path="L2 - Opacities in Dental Imaging_figures/img_244cbfe624284b1f.webp" media="frame" source="slide" page="7" timestamp="00:02:39">
        <description>A radiograph showing a distinct, irregular radiopaque mass (indicated by an arrow) located within soft tissue. This illustrates the imaging features of dystrophic calcification, specifically the presence of calcium salt deposits that appear as opaque particles.</description>
      </img>
      <img order="2" type="figure" path="L2 - Opacities in Dental Imaging_figures/img_244cbfe624284b1f.webp" media="frame" source="slide" page="7" timestamp="00:02:39">
        <description>A radiograph showing a distinct, irregular radiopaque mass (indicated by an arrow) located within soft tissue. This illustrates the imaging features of dystrophic calcification, specifically the presence of calcium salt deposits that appear as opaque particles.</description>
      </img>
      <img order="3" type="figure" path="L2 - Opacities in Dental Imaging_figures/img_8ec8853f70cd8ca5.webp" media="frame" source="slide" page="8" timestamp="00:04:06">
        <description>Radiograph: A lateral view of the mandible and teeth showing a cluster of calcified lymph nodes in the submandibular region, consistent with dystrophic calcification.</description>
      </img>
      <img order="4" type="figure" path="L2 - Opacities in Dental Imaging_figures/img_52865e6921604e81.webp" media="frame" source="slide" page="10" timestamp="00:05:02">
        <description>A A lateral radiograph of the neck and submandibular region showing multiple dense, irregular calcified masses. The larger, lobulated cluster in the lower right resembles a cauliflower shape, while smaller, chained nodes are indicated by white arrows.</description>
      </img>
      <img order="5" type="photo" path="L2 - Opacities in Dental Imaging_figures/img_5aba4653d9e92d9c.webp" media="frame" source="slide" page="10" timestamp="00:05:02">
        <description>B Radiograph: A lateral view of the mandible and cervical spine showing multiple irregular, radiopaque masses in the submandibular region, consistent with calcified lymph nodes.</description>
      </img>
      <img order="6" type="figure" path="L2 - Opacities in Dental Imaging_figures/img_9ea0aac4891ad2b3.webp" media="frame" source="slide" page="14" timestamp="00:08:07">
        <description>A composite medical image featuring a panoramic radiograph (top) and an axial CT scan (bottom). The top panel shows a cluster of small, irregular radiopacities superimposed over the mid-ramus region, indicated by a black arrow. The bottom panel displays an axial CT slice where a white arrow points to similar calcifications located medial to the mandibular ramus, adjacent to the lateral wall of the pharyngeal air space.</description>
      </img>
      <img order="7" type="figure" path="L2 - Opacities in Dental Imaging_figures/slide_p15_b75d75ca8a1ec484.webp" media="frame" source="slide" page="15" timestamp="00:09:01">
        <description>1.2 Post-inflammatory tonsillar calcifications | | | | :--- | :--- | | **Lymph node calcifications** | • Usually larger and occur where LNs are expected to exist | | **Sialolith** | • Usually more ovo</description>
      </img>
    </images>
  </page>
  <page number="63" origin="cases">
    <text>## Case: Heterogeneous opacity at the carotid bifurcation

### Question

**Scenario:** A multi-slice CT and panoramic radiograph are evaluated at the level of the C3 and C4 vertebrae.

**What's shown:** A well-defined, irregular, C-shaped or circular opacity with radiolucent voids located at the carotid bifurcation.

**Consider:** What vascular pathology does this calcification represent, and what is its clinical significance?


### Answer

**Observations:**
- Heterogeneous opacity with radiolucent voids.
- C-shaped or circular morphology lining a tubular structure.
- Located at the carotid bifurcation (C3-C4 level).

**Reasoning:** These findings represent a calcified atherosclerotic plaque. The calcification occurs in the tunica intima of the vessel due to chronic endothelial injury and lipid accumulation. Its presence on a panoramic radiograph can indicate significant carotid artery stenosis, warranting referral for cardiovascular risk evaluation.

**Takeaway:** Calcified atherosclerotic plaques at the carotid bifurcation appear as heterogeneous, C-shaped opacities and may indicate significant carotid artery stenosis.

## Case: Bilateral tortuous radiopaque lines along the jaw

### Question

**Scenario:** A panoramic radiograph is examined for vascular calcifications.

**What's shown:** A parallel pair of thin radiopaque lines with a tortuous path, visible bilaterally along the mandible.

**Consider:** What specific artery is outlined by these calcifications, and what is the underlying pathological process?


### Answer

**Observations:**
- Parallel pair of thin radiopaque lines (tram-track or pipe-stem appearance).
- Tortuous path, present bilaterally.

**Reasoning:** This represents Mönckeberg's medial calcific sclerosis, which affects the tunica media of the arteries (most commonly the facial artery in the head and neck). Unlike atherosclerosis, it causes thickening and loss of elasticity without narrowing the lumen, hence the visible central lucency and bilateral presentation.

**Takeaway:** Mönckeberg's arteriosclerosis outlines the facial artery as parallel, tortuous radiopaque lines without causing luminal stenosis.

## Case: Laminated structure with a central nidus

### Question

**Scenario:** A micro-CT scan of a salivary gland stone is analyzed.

**What's shown:** A calcified structure with a central core surrounded by concentric layers.

**Consider:** What does the central core represent, and how does the surrounding laminated structure form?


### Answer

**Observations:**
- A central nidus of organic material.
- Surrounding lamellated layers of organic and inorganic material.

**Reasoning:** This is a ductal sialolith. It forms when alterations in salivary flow or composition lead to a nidus of organic material, which then stimulates the precipitation of concentric layers of calcium and phosphate salts, creating a laminated appearance.

**Takeaway:** Ductal sialoliths form around an organic nidus that triggers the layered precipitation of calcium and phosphate salts.

## Case: Elongated opacities conforming to a ductal path

### Question

**Scenario:** Panoramic and other radiographic projections of the floor of the mouth are reviewed.

**What's shown:** Smooth, elongated, and cylindrical radiopacities located within the distal and proximal portions of a duct that bends around a muscle.

**Consider:** What is the diagnosis, and why do the calcifications take on this specific shape?


### Answer

**Observations:**
- Smooth, elongated, cylindrical opacities.
- Located within the distal and proximal portions of Wharton's duct.

**Reasoning:** These are sialoliths within Wharton's duct. The stones conform to the tubular structure of the duct, resulting in their smooth, elongated, and cylindrical shape, especially as the duct bends around the mylohyoid muscle.

**Takeaway:** Sialoliths within a salivary duct often take on a smooth, elongated, cylindrical shape as they conform to the tubular structure of the duct.
</text>
    <formatted_text>## Case: Heterogeneous opacity at the carotid bifurcation

### Question

**Scenario:** A multi-slice CT and panoramic radiograph are evaluated at the level of the C3 and C4 vertebrae.

**What's shown:** A well-defined, irregular, C-shaped or circular opacity with radiolucent voids located at the carotid bifurcation.

**Consider:** What vascular pathology does this calcification represent, and what is its clinical significance?


![](L2 - Opacities in Dental Imaging_cases_attachments/img_d6b9b84014cd4b57.webp)
### Answer

**Observations:**
- Heterogeneous opacity with radiolucent voids.
- C-shaped or circular morphology lining a tubular structure.
- Located at the carotid bifurcation (C3-C4 level).

**Reasoning:** These findings represent a calcified atherosclerotic plaque. The calcification occurs in the tunica intima of the vessel due to chronic endothelial injury and lipid accumulation. Its presence on a panoramic radiograph can indicate significant carotid artery stenosis, warranting referral for cardiovascular risk evaluation.

**Takeaway:** Calcified atherosclerotic plaques at the carotid bifurcation appear as heterogeneous, C-shaped opacities and may indicate significant carotid artery stenosis.

## Case: Bilateral tortuous radiopaque lines along the jaw

### Question

**Scenario:** A panoramic radiograph is examined for vascular calcifications.

**What's shown:** A parallel pair of thin radiopaque lines with a tortuous path, visible bilaterally along the mandible.

**Consider:** What specific artery is outlined by these calcifications, and what is the underlying pathological process?


![](L2 - Opacities in Dental Imaging_cases_attachments/img_5beca688ac421e5f.webp)
![](L2 - Opacities in Dental Imaging_cases_attachments/img_c82ad8bfb6f49b33.webp)
### Answer

**Observations:**
- Parallel pair of thin radiopaque lines (tram-track or pipe-stem appearance).
- Tortuous path, present bilaterally.

**Reasoning:** This represents Mönckeberg's medial calcific sclerosis, which affects the tunica media of the arteries (most commonly the facial artery in the head and neck). Unlike atherosclerosis, it causes thickening and loss of elasticity without narrowing the lumen, hence the visible central lucency and bilateral presentation.

**Takeaway:** Mönckeberg's arteriosclerosis outlines the facial artery as parallel, tortuous radiopaque lines without causing luminal stenosis.

## Case: Laminated structure with a central nidus

### Question

**Scenario:** A micro-CT scan of a salivary gland stone is analyzed.

**What's shown:** A calcified structure with a central core surrounded by concentric layers.

**Consider:** What does the central core represent, and how does the surrounding laminated structure form?


![](L2 - Opacities in Dental Imaging_cases_attachments/img_9954f20f9aa1c1fd.webp)
### Answer

**Observations:**
- A central nidus of organic material.
- Surrounding lamellated layers of organic and inorganic material.

**Reasoning:** This is a ductal sialolith. It forms when alterations in salivary flow or composition lead to a nidus of organic material, which then stimulates the precipitation of concentric layers of calcium and phosphate salts, creating a laminated appearance.

**Takeaway:** Ductal sialoliths form around an organic nidus that triggers the layered precipitation of calcium and phosphate salts.

## Case: Elongated opacities conforming to a ductal path

### Question

**Scenario:** Panoramic and other radiographic projections of the floor of the mouth are reviewed.

**What's shown:** Smooth, elongated, and cylindrical radiopacities located within the distal and proximal portions of a duct that bends around a muscle.

**Consider:** What is the diagnosis, and why do the calcifications take on this specific shape?


![](L2 - Opacities in Dental Imaging_cases_attachments/img_e8b1d2ca936162cb.webp)
### Answer

**Observations:**
- Smooth, elongated, cylindrical opacities.
- Located within the distal and proximal portions of Wharton's duct.

**Reasoning:** These are sialoliths within Wharton's duct. The stones conform to the tubular structure of the duct, resulting in their smooth, elongated, and cylindrical shape, especially as the duct bends around the mylohyoid muscle.

**Takeaway:** Sialoliths within a salivary duct often take on a smooth, elongated, cylindrical shape as they conform to the tubular structure of the duct.
</formatted_text>
    <heading_path>Case: Heterogeneous opacity at the carotid bifurcation</heading_path>
    <images>
      <img order="0" type="figure" path="L2 - Opacities in Dental Imaging_figures/img_d6b9b84014cd4b57.webp" media="frame" source="slide" page="18" timestamp="00:11:58">
        <description>A composite medical image featuring a lateral radiograph (top) and a sagittal CT scan (bottom), both illustrating the cervical spine and neck region. White arrows in each panel point to irregular, high-density calcifications located anterior to the vertebral bodies, consistent with the description of calcified atherosclerotic plaques.</description>
      </img>
      <img order="1" type="figure" path="L2 - Opacities in Dental Imaging_figures/img_5beca688ac421e5f.webp" media="frame" source="slide" page="21" timestamp="00:14:10">
        <description>VXP Radiograph: A lateral view of a mandible and maxilla showing multiple teeth with radiopaque restorations. The image illustrates the 'tram-track' or parallel thin, radiopaque lines characteristic of arterial calcification (arteriosclerosis) running through the soft tissue.</description>
      </img>
      <img order="2" type="figure" path="L2 - Opacities in Dental Imaging_figures/img_c82ad8bfb6f49b33.webp" media="frame" source="slide" page="22" timestamp="00:15:30">
        <description>A panoramic radiograph of the maxillofacial region showing the mandible, maxilla, and dentition. The image displays multiple teeth with radiopaque restorations (crowns or fillings) in the posterior right mandibular region, along with other dental structures and bone anatomy.</description>
      </img>
      <img order="3" type="figure" path="L2 - Opacities in Dental Imaging_figures/img_9954f20f9aa1c1fd.webp" media="frame" source="slide" page="24" timestamp="00:16:05">
        <description>Kraaij, S. et al. 2014 A grayscale cross-sectional micrograph, likely from a CT scan or histological section, showing a sialolith with distinct concentric laminations. The image illustrates the internal structure of a salivary gland stone, featuring a dark central nidus surrounded by multiple lighter rings of precipitated salts.</description>
      </img>
      <img order="4" type="figure" path="L2 - Opacities in Dental Imaging_figures/img_e8b1d2ca936162cb.webp" media="frame" source="slide" page="26" timestamp="00:19:14">
        <description>Radiograph: A side-by-side comparison of two dental X-ray views (likely a lateral oblique and a panoramic crop) demonstrating the visualization of sialoliths. The images show radiopaque calcifications in the soft tissue region below the mandible, corresponding to salivary stones.</description>
      </img>
    </images>
  </page>
  <page number="64" origin="cases">
    <text>## Case: Irregular opacity within a salivary gland hilum

### Question

**Scenario:** A radiograph of the submandibular region is evaluated.

**What's shown:** A slightly irregular-shaped radiopacity located within the hilum of the submandibular salivary gland.

**Consider:** Why does this calcification have a more irregular shape compared to those found within the duct?


### Answer

**Observations:**
- Irregular-shaped radiopacity.
- Located within the hilum of the submandibular salivary gland.

**Reasoning:** This is a sialolith located in the hilum, where the ducts collect and exit the gland. Because there is more space to calcify in the hilum compared to the narrow tubular duct, the stone can grow into a larger, more irregular shape.

**Takeaway:** Sialoliths located in the hilum of a salivary gland tend to be larger and more irregularly shaped due to the available space for calcification.

## Case: Collection of multiple small opacities in the parotid region

### Question

**Scenario:** A radiograph of the parotid region is reviewed.

**What's shown:** A collection of very small, multiple radiopacities spread throughout the gland.

**Consider:** What is the diagnosis, and what is the typical underlying etiology for this pattern of calcification?


### Answer

**Observations:**
- Multiple, very small opacities.
- Spread throughout the parotid gland parenchyma.

**Reasoning:** These are parenchymal calcifications of the parotid gland. Unlike ductal stones, parenchymal calcifications are generally multiple and small, often occurring secondary to chronic inflammation (sialadenitis) such as in Sjögren's syndrome.

**Takeaway:** Parenchymal calcifications in the parotid gland present as multiple small opacities and are typically secondary to chronic sialadenitis.

## Case: Two radiopaque regions separated by a radiolucent gap

### Question

**Scenario:** A radiograph of a suspected salivary gland stone is evaluated.

**What's shown:** Two distinct radiopaque regions with a non-calcified, radiolucent middle section.

**Consider:** What explains the radiolucent gap between the two calcified regions?


### Answer

**Observations:**
- Two radiopaque regions.
- A radiolucent middle section between them.

**Reasoning:** The middle section represents a mucus plug where the duct is blocked but the material has not yet calcified due to low mineral content. It is a single continuous blockage rather than two separate stones.

**Takeaway:** A radiolucent gap between radiopaque sialoliths often represents a non-calcified mucus plug blocking the duct.

## Case: Asymmetric soft tissue density in the submandibular region

### Question

**Scenario:** A multi-slice CT soft tissue window is evaluated for a patient with a known opaque sialolith.

**What's shown:** Normal soft tissue grey density on the left side, but dark black fat density on the right side where the submandibular gland is expected.

**Consider:** What pathological process has occurred in the right submandibular gland?


### Answer

**Observations:**
- Normal grey soft tissue density on the left.
- Dark black fat density on the right.

**Reasoning:** The right submandibular gland has undergone fat-replaced atrophy. Chronic blockage of the duct by the sialolith leads to backed-up secretions, a negative feedback loop that stops saliva production, and eventual replacement of the glandular tissue with fat.

**Takeaway:** Chronic ductal obstruction by a sialolith can lead to fat-replaced atrophy of the affected salivary gland.
</text>
    <formatted_text>## Case: Irregular opacity within a salivary gland hilum

### Question

**Scenario:** A radiograph of the submandibular region is evaluated.

**What's shown:** A slightly irregular-shaped radiopacity located within the hilum of the submandibular salivary gland.

**Consider:** Why does this calcification have a more irregular shape compared to those found within the duct?


![](L2 - Opacities in Dental Imaging_cases_attachments/img_e8b1d2ca936162cb.webp)
### Answer

**Observations:**
- Irregular-shaped radiopacity.
- Located within the hilum of the submandibular salivary gland.

**Reasoning:** This is a sialolith located in the hilum, where the ducts collect and exit the gland. Because there is more space to calcify in the hilum compared to the narrow tubular duct, the stone can grow into a larger, more irregular shape.

**Takeaway:** Sialoliths located in the hilum of a salivary gland tend to be larger and more irregularly shaped due to the available space for calcification.

## Case: Collection of multiple small opacities in the parotid region

### Question

**Scenario:** A radiograph of the parotid region is reviewed.

**What's shown:** A collection of very small, multiple radiopacities spread throughout the gland.

**Consider:** What is the diagnosis, and what is the typical underlying etiology for this pattern of calcification?


![](L2 - Opacities in Dental Imaging_cases_attachments/img_242be716526f15d3.webp)
### Answer

**Observations:**
- Multiple, very small opacities.
- Spread throughout the parotid gland parenchyma.

**Reasoning:** These are parenchymal calcifications of the parotid gland. Unlike ductal stones, parenchymal calcifications are generally multiple and small, often occurring secondary to chronic inflammation (sialadenitis) such as in Sjögren's syndrome.

**Takeaway:** Parenchymal calcifications in the parotid gland present as multiple small opacities and are typically secondary to chronic sialadenitis.

## Case: Two radiopaque regions separated by a radiolucent gap

### Question

**Scenario:** A radiograph of a suspected salivary gland stone is evaluated.

**What's shown:** Two distinct radiopaque regions with a non-calcified, radiolucent middle section.

**Consider:** What explains the radiolucent gap between the two calcified regions?


![](L2 - Opacities in Dental Imaging_cases_attachments/img_7722c0fdfffa16fa.webp)
![](L2 - Opacities in Dental Imaging_cases_attachments/img_242be716526f15d3.webp)
### Answer

**Observations:**
- Two radiopaque regions.
- A radiolucent middle section between them.

**Reasoning:** The middle section represents a mucus plug where the duct is blocked but the material has not yet calcified due to low mineral content. It is a single continuous blockage rather than two separate stones.

**Takeaway:** A radiolucent gap between radiopaque sialoliths often represents a non-calcified mucus plug blocking the duct.

## Case: Asymmetric soft tissue density in the submandibular region

### Question

**Scenario:** A multi-slice CT soft tissue window is evaluated for a patient with a known opaque sialolith.

**What's shown:** Normal soft tissue grey density on the left side, but dark black fat density on the right side where the submandibular gland is expected.

**Consider:** What pathological process has occurred in the right submandibular gland?


![](L2 - Opacities in Dental Imaging_cases_attachments/img_7722c0fdfffa16fa.webp)
### Answer

**Observations:**
- Normal grey soft tissue density on the left.
- Dark black fat density on the right.

**Reasoning:** The right submandibular gland has undergone fat-replaced atrophy. Chronic blockage of the duct by the sialolith leads to backed-up secretions, a negative feedback loop that stops saliva production, and eventual replacement of the glandular tissue with fat.

**Takeaway:** Chronic ductal obstruction by a sialolith can lead to fat-replaced atrophy of the affected salivary gland.
</formatted_text>
    <heading_path>Case: Irregular opacity within a salivary gland hilum</heading_path>
    <images>
      <img order="0" type="figure" path="L2 - Opacities in Dental Imaging_figures/img_e8b1d2ca936162cb.webp" media="frame" source="slide" page="26" timestamp="00:19:14">
        <description>Radiograph: A side-by-side comparison of two dental X-ray views (likely a lateral oblique and a panoramic crop) demonstrating the visualization of sialoliths. The images show radiopaque calcifications in the soft tissue region below the mandible, corresponding to salivary stones.</description>
      </img>
      <img order="1" type="figure" path="L2 - Opacities in Dental Imaging_figures/img_242be716526f15d3.webp" media="frame" source="slide" page="27" timestamp="00:21:09">
        <description>Fat density right submandibular gland This is an axial CT scan image (labeled 'b') of the neck region, demonstrating a cross-sectional view of the submandibular area. The image highlights specific anatomical features with red leader lines and text labels.</description>
      </img>
      <img order="2" type="figure" path="L2 - Opacities in Dental Imaging_figures/img_7722c0fdfffa16fa.webp" media="frame" source="slide" page="27" timestamp="00:21:09">
        <description>Two radiographic images (likely lateral oblique and occlusal views) demonstrating sialoliths. The left image shows a calcified stone in the floor of the mouth region, while the right image displays two distinct radiopaque calculi indicated by white arrows.</description>
      </img>
      <img order="3" type="figure" path="L2 - Opacities in Dental Imaging_figures/img_242be716526f15d3.webp" media="frame" source="slide" page="27" timestamp="00:21:09">
        <description>Fat density right submandibular gland This is an axial CT scan image (labeled 'b') of the neck region, demonstrating a cross-sectional view of the submandibular area. The image highlights specific anatomical features with red leader lines and text labels.</description>
      </img>
      <img order="4" type="figure" path="L2 - Opacities in Dental Imaging_figures/img_7722c0fdfffa16fa.webp" media="frame" source="slide" page="27" timestamp="00:21:09">
        <description>Two radiographic images (likely lateral oblique and occlusal views) demonstrating sialoliths. The left image shows a calcified stone in the floor of the mouth region, while the right image displays two distinct radiopaque calculi indicated by white arrows.</description>
      </img>
    </images>
  </page>
  <page number="65" origin="cases">
    <text>## Case: Hyperechoic structure with posterior shadowing

### Question

**Scenario:** An ultrasound of the submandibular gland is performed for suspected salivary gland pathology.

**What's shown:** A well-defined, white (hyperechoic) structure with a dark area directly behind it.

**Consider:** What does the hyperechoic structure represent, and what causes the dark area behind it?


### Answer

**Observations:**
- Hyperechoic (white), well-defined structure.
- Acoustic posterior shadowing (dark area behind the structure).

**Reasoning:** The hyperechoic structure is a sialolith (calculus). Because ultrasound uses sound waves, the hard surface of the stone reflects the waves (appearing white), preventing them from penetrating deeper and creating an acoustic posterior shadow where no information is recorded.

**Takeaway:** On ultrasound, sialoliths appear as hyperechoic structures with acoustic posterior shadowing due to the reflection of sound waves.

## Case: Flow void in the proximal parotid duct

### Question

**Scenario:** A multi-slice CT sialogram with contrast is reviewed for a patient with recurrent left parotid swelling during mealtimes.

**What's shown:** A flow void where there is no contrast in the proximal duct of the parotid gland.

**Consider:** What is the cause of the flow void, and why is it not visible on conventional non-contrast imaging?


### Answer

**Observations:**
- Flow void lacking contrast in the proximal parotid duct.

**Reasoning:** The flow void represents a mucus plug or a non-calcified sialolith. Because it lacks calcification (low mineral content), it is radiolucent and cannot be detected on conventional 2D imaging or non-contrast CT; contrast injection is required to outline the ductal system and reveal the filling defect.

**Takeaway:** Non-calcified sialoliths or mucus plugs appear as flow voids on contrast sialograms and are invisible on non-contrast imaging.

## Case: Acute ductal bend causing recurrent swelling

### Question

**Scenario:** A multi-slice CT sialogram with surface-rendered images is evaluated for a patient with recurrent right submandibular swelling during mealtimes.

**What's shown:** Contrast outlining the ductal system, revealing no stones but a sharp angulation in the proximal duct.

**Consider:** What is the anatomical cause of the patient's symptoms?


### Answer

**Observations:**
- No sialoliths blocking the duct.
- An acute bend in the proximal duct.

**Reasoning:** The acute bend in the proximal duct affects the flow of saliva, causing backup and recurrent swelling during mealtimes when salivary flow is stimulated. This structural anomaly, rather than a stone, is the cause of the symptoms.

**Takeaway:** Recurrent salivary swelling can be caused by structural ductal anomalies, such as an acute bend, which impairs saliva flow even in the absence of sialoliths.

## Case: Targetoid opacity in the retroantral region

### Question

**Scenario:** A CBCT scan of the pterygopalatine/retroantral region is evaluated.

**What's shown:** A round or oval radiopacity with a classic targetoid or bull's-eye appearance.

**Consider:** What is the diagnosis, and what underlying vascular condition does this finding imply?


### Answer

**Observations:**
- Round/oval radiopacity.
- Targetoid or bull's-eye internal appearance.

**Reasoning:** This is a phlebolith, which is a calcified thrombus within a vein or vascular malformation. In the head and neck, the presence of phleboliths almost always indicates an underlying hemangioma or vascular malformation, which requires careful management to avoid lethal exsanguination during surgical procedures.

**Takeaway:** Phleboliths exhibit a targetoid bull's-eye appearance and strongly indicate the presence of an underlying vascular malformation or hemangioma.
</text>
    <formatted_text>## Case: Hyperechoic structure with posterior shadowing

### Question

**Scenario:** An ultrasound of the submandibular gland is performed for suspected salivary gland pathology.

**What's shown:** A well-defined, white (hyperechoic) structure with a dark area directly behind it.

**Consider:** What does the hyperechoic structure represent, and what causes the dark area behind it?


![](L2 - Opacities in Dental Imaging_cases_attachments/img_7a311801401248a1.webp)
### Answer

**Observations:**
- Hyperechoic (white), well-defined structure.
- Acoustic posterior shadowing (dark area behind the structure).

**Reasoning:** The hyperechoic structure is a sialolith (calculus). Because ultrasound uses sound waves, the hard surface of the stone reflects the waves (appearing white), preventing them from penetrating deeper and creating an acoustic posterior shadow where no information is recorded.

**Takeaway:** On ultrasound, sialoliths appear as hyperechoic structures with acoustic posterior shadowing due to the reflection of sound waves.

## Case: Flow void in the proximal parotid duct

### Question

**Scenario:** A multi-slice CT sialogram with contrast is reviewed for a patient with recurrent left parotid swelling during mealtimes.

**What's shown:** A flow void where there is no contrast in the proximal duct of the parotid gland.

**Consider:** What is the cause of the flow void, and why is it not visible on conventional non-contrast imaging?


![](L2 - Opacities in Dental Imaging_cases_attachments/img_5471105ef0359994.webp)
### Answer

**Observations:**
- Flow void lacking contrast in the proximal parotid duct.

**Reasoning:** The flow void represents a mucus plug or a non-calcified sialolith. Because it lacks calcification (low mineral content), it is radiolucent and cannot be detected on conventional 2D imaging or non-contrast CT; contrast injection is required to outline the ductal system and reveal the filling defect.

**Takeaway:** Non-calcified sialoliths or mucus plugs appear as flow voids on contrast sialograms and are invisible on non-contrast imaging.

## Case: Acute ductal bend causing recurrent swelling

### Question

**Scenario:** A multi-slice CT sialogram with surface-rendered images is evaluated for a patient with recurrent right submandibular swelling during mealtimes.

**What's shown:** Contrast outlining the ductal system, revealing no stones but a sharp angulation in the proximal duct.

**Consider:** What is the anatomical cause of the patient's symptoms?


![](L2 - Opacities in Dental Imaging_cases_attachments/img_da24d35ce6df6e0f.webp)
### Answer

**Observations:**
- No sialoliths blocking the duct.
- An acute bend in the proximal duct.

**Reasoning:** The acute bend in the proximal duct affects the flow of saliva, causing backup and recurrent swelling during mealtimes when salivary flow is stimulated. This structural anomaly, rather than a stone, is the cause of the symptoms.

**Takeaway:** Recurrent salivary swelling can be caused by structural ductal anomalies, such as an acute bend, which impairs saliva flow even in the absence of sialoliths.

## Case: Targetoid opacity in the retroantral region

### Question

**Scenario:** A CBCT scan of the pterygopalatine/retroantral region is evaluated.

**What's shown:** A round or oval radiopacity with a classic targetoid or bull's-eye appearance.

**Consider:** What is the diagnosis, and what underlying vascular condition does this finding imply?


![](L2 - Opacities in Dental Imaging_cases_attachments/img_986b19c30ec49be8.webp)
### Answer

**Observations:**
- Round/oval radiopacity.
- Targetoid or bull's-eye internal appearance.

**Reasoning:** This is a phlebolith, which is a calcified thrombus within a vein or vascular malformation. In the head and neck, the presence of phleboliths almost always indicates an underlying hemangioma or vascular malformation, which requires careful management to avoid lethal exsanguination during surgical procedures.

**Takeaway:** Phleboliths exhibit a targetoid bull's-eye appearance and strongly indicate the presence of an underlying vascular malformation or hemangioma.
</formatted_text>
    <heading_path>Case: Hyperechoic structure with posterior shadowing</heading_path>
    <images>
      <img order="0" type="figure" path="L2 - Opacities in Dental Imaging_figures/img_7a311801401248a1.webp" media="frame" source="slide" page="30" timestamp="00:25:49">
        <description>A labelled ultrasound image showing the sublingual gland and surrounding muscles, with a hyperechoic calculus casting an acoustic posterior shadow.</description>
      </img>
      <img order="1" type="figure" path="L2 - Opacities in Dental Imaging_figures/img_5471105ef0359994.webp" media="frame" source="slide" page="31" timestamp="00:27:00">
        <description>Figure 16.24 Mucus plug/non-calcified ductal sialolith related to the left parotid gland (recurrent swelling related to meals): axial maximum intensity projection MDCT sialogram image. Radiograph: Axial maximum intensity projection MDCT sialogram image of the left parotid gland. The image displays a branching, bright white contrast-filled ductal system with a focal interruption (flow void) in the proximal duct, indicated by a red line.</description>
      </img>
      <img order="2" type="figure" path="L2 - Opacities in Dental Imaging_figures/img_da24d35ce6df6e0f.webp" media="frame" source="slide" page="32" timestamp="00:27:15">
        <description>Acute bend in the proximal duct. No sialoliths This composite medical image displays three panels labeled (a), (b), and (c), showing axial and surface-rendered MDCT sialogram views of the submandibular region. Red leader lines from all three panels converge on a caption below, indicating an acute bend in the proximal duct where no sialoliths are present.</description>
      </img>
      <img order="3" type="figure" path="L2 - Opacities in Dental Imaging_figures/img_986b19c30ec49be8.webp" media="frame" source="slide" page="35" timestamp="00:29:54">
        <description>Two radiographic images (an upper lateral view and a lower periapical/occlusal-style view) showing multiple round, radiopaque calcifications within the soft tissues of the mandibular region. The white arrows in the lower image point to these structures, which exhibit a characteristic laminated or targetoid appearance.</description>
      </img>
    </images>
  </page>
  <page number="66" origin="cases">
    <text>## Case: Radiopacity with a central lucency near the hyoid bone

### Question

**Scenario:** A cropped panoramic radiograph is evaluated inferior to the greater cornu of the hyoid bone and adjacent to C4.

**What's shown:** A relatively homogeneous radiopacity that presents with an outer cortex and a central lucent appearance.

**Consider:** What anatomical structures are calcifying, and is this a pathological process?


### Answer

**Observations:**
- Radiopacity with an outer cortex and central lucency.
- Located inferior to the hyoid bone and adjacent to C4.

**Reasoning:** This represents physiological endochondral ossification of the laryngeal cartilages, specifically the triticeous cartilage and the superior cornu of the thyroid cartilage. It is a normal, age-related process that requires no management.

**Takeaway:** Calcification of the laryngeal cartilages (triticeous and thyroid) is a normal physiological process that can present with an outer cortex and central lucency on panoramic radiographs.

## Case: Linear ossified structure with joint-like interruptions

### Question

**Scenario:** A panoramic radiograph is evaluated in the region of the styloid process and hyoid bone.

**What's shown:** A linear ossified structure extending from the styloid process towards the hyoid bone, featuring irregular interruptions that resemble joints.

**Consider:** What is the diagnosis, and what do the joint-like interruptions represent?


### Answer

**Observations:**
- Linear ossified structure crossing the posterior inferior border of the ramus.
- Irregular interruptions resembling joints (pseudoarthroses).

**Reasoning:** This represents ossification of the stylohyoid ligament. The joint-like interruptions are pseudoarthroses, which are fake joint structures that can interrupt the ligament as it ossifies. Unless symptomatic (Eagle syndrome), it is an incidental finding.

**Takeaway:** Ossification of the stylohyoid ligament can present with pseudoarthroses, appearing as joint-like interruptions along the ossified linear structure.

## Case: Water-shaped opacity superimposed over a tooth

### Question

**Scenario:** A PA radiograph of the facial region is reviewed.

**What's shown:** A roughly circular radiopacity with a central lucency, sometimes showing a trabecular or snowflake-like pattern, superimposed over a tooth or alveolar process.

**Consider:** What is the diagnosis, and what is the typical clinical presentation of this condition?


### Answer

**Observations:**
- Water-shaped or donut-like radiopacity (circular with central lucency).
- Trabecular or snowflake-like internal pattern.
- Superimposed over dental structures.

**Reasoning:** This is osteoma cutis, a focal development of bone in the dermis or subcutaneous tissues. It is often asymptomatic and discovered incidentally on radiographs when superimposed over teeth. Treatment is usually only required for cosmetic reasons.

**Takeaway:** Osteoma cutis presents as a water-shaped, radiopaque lesion with a central lucency in the soft tissues and is typically asymptomatic.

## Case: Linear ossifications along the temporalis muscle

### Question

**Scenario:** Radiographs of a patient with a known hereditary condition causing progressive muscle stiffness are evaluated.

**What's shown:** Radiopaque linear lines oriented along the long axis of the temporalis muscle, along with osseous malformation around the mandibular condyle.

**Consider:** What is the diagnosis, and how does the ossification pattern relate to the underlying anatomy?


### Answer

**Observations:**
- Radiopaque linear lines along the long axis of the temporalis muscle.
- Osseous malformation around the mandibular condyle (muscle attachment region).

**Reasoning:** This represents progressive myositis ossificans, a rare hereditary condition where heterotopic bone forms in the interstitial tissues of muscles, tendons, and ligaments. The ossification characteristically aligns along the long axis of the involved muscles and can affect tendon attachments near joints.

**Takeaway:** Progressive myositis ossificans causes heterotopic bone formation that aligns along the long axis of muscles and can involve tendon attachments.</text>
    <formatted_text>## Case: Radiopacity with a central lucency near the hyoid bone

### Question

**Scenario:** A cropped panoramic radiograph is evaluated inferior to the greater cornu of the hyoid bone and adjacent to C4.

**What's shown:** A relatively homogeneous radiopacity that presents with an outer cortex and a central lucent appearance.

**Consider:** What anatomical structures are calcifying, and is this a pathological process?


![](L2 - Opacities in Dental Imaging_cases_attachments/img_bd2da01293d0e1fc.webp)
![](L2 - Opacities in Dental Imaging_cases_attachments/img_7e396a80df12ea5d.webp)
### Answer

**Observations:**
- Radiopacity with an outer cortex and central lucency.
- Located inferior to the hyoid bone and adjacent to C4.

**Reasoning:** This represents physiological endochondral ossification of the laryngeal cartilages, specifically the triticeous cartilage and the superior cornu of the thyroid cartilage. It is a normal, age-related process that requires no management.

**Takeaway:** Calcification of the laryngeal cartilages (triticeous and thyroid) is a normal physiological process that can present with an outer cortex and central lucency on panoramic radiographs.

## Case: Linear ossified structure with joint-like interruptions

### Question

**Scenario:** A panoramic radiograph is evaluated in the region of the styloid process and hyoid bone.

**What's shown:** A linear ossified structure extending from the styloid process towards the hyoid bone, featuring irregular interruptions that resemble joints.

**Consider:** What is the diagnosis, and what do the joint-like interruptions represent?


![](L2 - Opacities in Dental Imaging_cases_attachments/img_96cf9dce48856930.webp)
![](L2 - Opacities in Dental Imaging_cases_attachments/img_6202c986c0356eeb.webp)
![](L2 - Opacities in Dental Imaging_cases_attachments/img_4db7fd68c454aba2.webp)
### Answer

**Observations:**
- Linear ossified structure crossing the posterior inferior border of the ramus.
- Irregular interruptions resembling joints (pseudoarthroses).

**Reasoning:** This represents ossification of the stylohyoid ligament. The joint-like interruptions are pseudoarthroses, which are fake joint structures that can interrupt the ligament as it ossifies. Unless symptomatic (Eagle syndrome), it is an incidental finding.

**Takeaway:** Ossification of the stylohyoid ligament can present with pseudoarthroses, appearing as joint-like interruptions along the ossified linear structure.

## Case: Water-shaped opacity superimposed over a tooth

### Question

**Scenario:** A PA radiograph of the facial region is reviewed.

**What's shown:** A roughly circular radiopacity with a central lucency, sometimes showing a trabecular or snowflake-like pattern, superimposed over a tooth or alveolar process.

**Consider:** What is the diagnosis, and what is the typical clinical presentation of this condition?


![](L2 - Opacities in Dental Imaging_cases_attachments/img_7999e943b89a278a.webp)
![](L2 - Opacities in Dental Imaging_cases_attachments/img_6e3b200a28df076c.webp)
![](L2 - Opacities in Dental Imaging_cases_attachments/img_ac9376941888dd23.webp)
### Answer

**Observations:**
- Water-shaped or donut-like radiopacity (circular with central lucency).
- Trabecular or snowflake-like internal pattern.
- Superimposed over dental structures.

**Reasoning:** This is osteoma cutis, a focal development of bone in the dermis or subcutaneous tissues. It is often asymptomatic and discovered incidentally on radiographs when superimposed over teeth. Treatment is usually only required for cosmetic reasons.

**Takeaway:** Osteoma cutis presents as a water-shaped, radiopaque lesion with a central lucency in the soft tissues and is typically asymptomatic.

## Case: Linear ossifications along the temporalis muscle

### Question

**Scenario:** Radiographs of a patient with a known hereditary condition causing progressive muscle stiffness are evaluated.

**What's shown:** Radiopaque linear lines oriented along the long axis of the temporalis muscle, along with osseous malformation around the mandibular condyle.

**Consider:** What is the diagnosis, and how does the ossification pattern relate to the underlying anatomy?


![](L2 - Opacities in Dental Imaging_cases_attachments/img_6bb0665e2d2d9208.webp)
![](L2 - Opacities in Dental Imaging_cases_attachments/img_b3dc195d8681a8f0.webp)
### Answer

**Observations:**
- Radiopaque linear lines along the long axis of the temporalis muscle.
- Osseous malformation around the mandibular condyle (muscle attachment region).

**Reasoning:** This represents progressive myositis ossificans, a rare hereditary condition where heterotopic bone forms in the interstitial tissues of muscles, tendons, and ligaments. The ossification characteristically aligns along the long axis of the involved muscles and can affect tendon attachments near joints.

**Takeaway:** Progressive myositis ossificans causes heterotopic bone formation that aligns along the long axis of muscles and can involve tendon attachments.</formatted_text>
    <heading_path>Case: Radiopacity with a central lucency near the hyoid bone</heading_path>
    <images>
      <img order="0" type="diagram" path="L2 - Opacities in Dental Imaging_figures/img_bd2da01293d0e1fc.webp" media="frame" source="slide" page="38" timestamp="00:31:20">
        <description>Hyoid bone, lesser cornu Hyoid bone, greater cornu Lateral thyrohyoid ligament Cartilago triticea Aperture for internal laryngeal nerve and superior laryngeal artery Thyroid cartilage, superior cornu Superior thyroid tubercle Oblique line Inferior thyroid tubercle Lateral cricothyroid ligament Hyoid bone, body Median thyrohyoid ligament Thyrohyoid membrane Thyroid notch Laryngeal prominence Laminae of thyroid cartilage Median cricothyroid ligament Anterior arch of cricoid Labelled diagram: An anterior view of the laryngeal skeleton illustrating the hyoid bone, thyroid cartilage, and cricoid arch along with their connecting ligaments. Specific anatomical structures are identified on both sides, including the body and cornua of the hyoid bone, the laminae and tubercles of the thyroid cartilage, and the triticeous cartilage.</description>
      </img>
      <img order="1" type="figure" path="L2 - Opacities in Dental Imaging_figures/img_7e396a80df12ea5d.webp" media="frame" source="slide" page="38" timestamp="00:31:20">
        <description>A lateral radiograph of the head and neck, showing the cervical spine, mandible, teeth, and soft tissues of the pharyngeal region. A small, oval-shaped calcification is visible anterior to the upper cervical vertebrae (approximately C3-C4 level), consistent with a triticeous cartilage.</description>
      </img>
      <img order="2" type="figure" path="L2 - Opacities in Dental Imaging_figures/img_96cf9dce48856930.webp" media="frame" source="slide" page="50" timestamp="00:41:32">
        <description>A lateral radiograph of the neck region showing a long, tapering, radiopaque process extending downwards from the skull base towards the hyoid bone. Two white arrows point to this structure, highlighting its linear ossification.</description>
      </img>
      <img order="3" type="figure" path="L2 - Opacities in Dental Imaging_figures/img_6202c986c0356eeb.webp" media="frame" source="slide" page="50" timestamp="00:41:32">
        <description>Radiograph: A lateral view of the cervical spine and skull base showing a long, tapering radiopaque process extending inferiorly from the region of the mastoid process. The image illustrates linear ossification of the stylohyoid ligament, appearing as a thin bony structure with irregular outer surfaces.</description>
      </img>
      <img order="4" type="figure" path="L2 - Opacities in Dental Imaging_figures/img_4db7fd68c454aba2.webp" media="frame" source="slide" page="50" timestamp="00:41:32">
        <description>Radiograph: A lateral panoramic dental X-ray showing the mandible, cervical spine, and soft tissues of the neck. Two white arrows point to a linear radiopaque structure extending downwards from the region of the mastoid process towards the hyoid bone, illustrating the ossified stylohyoid ligament described in the text.</description>
      </img>
      <img order="5" type="figure" path="L2 - Opacities in Dental Imaging_figures/img_7999e943b89a278a.webp" media="frame" source="slide" page="51" timestamp="00:42:41">
        <description>Radiograph: A dental X-ray showing teeth with restorations and root canal fillings, accompanied by yellow arrows pointing to multiple small, circular radiopaque structures in the soft tissue area below the roots.</description>
      </img>
      <img order="6" type="figure" path="L2 - Opacities in Dental Imaging_figures/img_6e3b200a28df076c.webp" media="frame" source="slide" page="53" timestamp="00:44:10">
        <description>A composite medical imaging figure containing four panels (A-D) showing axial, sagittal, and 3D reconstructed views of a skull. Grey arrows in each panel point to small, discrete, hyperdense (white) nodules located within the soft tissues of the face, specifically overlying the cheek region.</description>
      </img>
      <img order="7" type="figure" path="L2 - Opacities in Dental Imaging_figures/img_ac9376941888dd23.webp" media="frame" source="slide" page="53" timestamp="00:44:10">
        <description>Radiograph showing a cluster of small, round, radiopaque densities in the soft tissue adjacent to a tooth root.</description>
      </img>
      <img order="8" type="figure" path="L2 - Opacities in Dental Imaging_figures/img_6bb0665e2d2d9208.webp" media="frame" source="slide" page="60" timestamp="00:50:56">
        <description>A lateral cephalometric radiograph showing extensive, irregular heterotopic ossification in the soft tissues of the face and neck region. The image illustrates the characteristic bone formation associated with Progressive Myositis Ossificans, particularly around the mandibular condyle area.</description>
      </img>
      <img order="9" type="figure" path="L2 - Opacities in Dental Imaging_figures/img_b3dc195d8681a8f0.webp" media="frame" source="slide" page="60" timestamp="00:50:56">
        <description>Radiograph: A frontal chest X-ray demonstrating extensive, irregular heterotopic ossification. The dense bony formations are oriented along the long axis of the shoulder girdle and upper thoracic musculature, bridging across joints and restricting movement.</description>
      </img>
    </images>
  </page>
  <footnotes>[^1]: Original PDF page 1: [[L2 - Opacities in Dental Imaging.pdf#page=1|L2 - Opacities in Dental Imaging, p.1]]
[^2]: Original PDF page 2: [[L2 - Opacities in Dental Imaging.pdf#page=2|L2 - Opacities in Dental Imaging, p.2]]
[^3]: Original PDF page 3: [[L2 - Opacities in Dental Imaging.pdf#page=3|L2 - Opacities in Dental Imaging, p.3]]
[^4]: Original PDF page 4: [[L2 - Opacities in Dental Imaging.pdf#page=4|L2 - Opacities in Dental Imaging, p.4]]
[^5]: Original PDF page 5: [[L2 - Opacities in Dental Imaging.pdf#page=5|L2 - Opacities in Dental Imaging, p.5]]
[^6]: Original PDF page 6: [[L2 - Opacities in Dental Imaging.pdf#page=6|L2 - Opacities in Dental Imaging, p.6]]
[^7]: Original PDF page 7: [[L2 - Opacities in Dental Imaging.pdf#page=7|L2 - Opacities in Dental Imaging, p.7]]
[^8]: Original PDF page 8: [[L2 - Opacities in Dental Imaging.pdf#page=8|L2 - Opacities in Dental Imaging, p.8]]
[^9]: Original PDF page 9: [[L2 - Opacities in Dental Imaging.pdf#page=9|L2 - Opacities in Dental Imaging, p.9]]
[^10]: Original PDF page 10: [[L2 - Opacities in Dental Imaging.pdf#page=10|L2 - Opacities in Dental Imaging, p.10]]
[^11]: Original PDF page 11: [[L2 - Opacities in Dental Imaging.pdf#page=11|L2 - Opacities in Dental Imaging, p.11]]
[^12]: Original PDF page 12: [[L2 - Opacities in Dental Imaging.pdf#page=12|L2 - Opacities in Dental Imaging, p.12]]
[^13]: Original PDF page 13: [[L2 - Opacities in Dental Imaging.pdf#page=13|L2 - Opacities in Dental Imaging, p.13]]
[^14]: Original PDF page 14: [[L2 - Opacities in Dental Imaging.pdf#page=14|L2 - Opacities in Dental Imaging, p.14]]
[^15]: Original PDF page 15: [[L2 - Opacities in Dental Imaging.pdf#page=15|L2 - Opacities in Dental Imaging, p.15]]
[^16]: Original PDF page 16: [[L2 - Opacities in Dental Imaging.pdf#page=16|L2 - Opacities in Dental Imaging, p.16]]
[^17]: Original PDF page 17: [[L2 - Opacities in Dental Imaging.pdf#page=17|L2 - Opacities in Dental Imaging, p.17]]
[^18]: Original PDF page 18: [[L2 - Opacities in Dental Imaging.pdf#page=18|L2 - Opacities in Dental Imaging, p.18]]
[^19]: Original PDF page 19: [[L2 - Opacities in Dental Imaging.pdf#page=19|L2 - Opacities in Dental Imaging, p.19]]
[^20]: Original PDF page 20: [[L2 - Opacities in Dental Imaging.pdf#page=20|L2 - Opacities in Dental Imaging, p.20]]
[^21]: Original PDF page 21: [[L2 - Opacities in Dental Imaging.pdf#page=21|L2 - Opacities in Dental Imaging, p.21]]
[^22]: Original PDF page 22: [[L2 - Opacities in Dental Imaging.pdf#page=22|L2 - Opacities in Dental Imaging, p.22]]
[^23]: Original PDF page 23: [[L2 - Opacities in Dental Imaging.pdf#page=23|L2 - Opacities in Dental Imaging, p.23]]
[^24]: Original PDF page 24: [[L2 - Opacities in Dental Imaging.pdf#page=24|L2 - Opacities in Dental Imaging, p.24]]
[^25]: Original PDF page 25: [[L2 - Opacities in Dental Imaging.pdf#page=25|L2 - Opacities in Dental Imaging, p.25]]
[^26]: Original PDF page 26: [[L2 - Opacities in Dental Imaging.pdf#page=26|L2 - Opacities in Dental Imaging, p.26]]
[^27]: Original PDF page 27: [[L2 - Opacities in Dental Imaging.pdf#page=27|L2 - Opacities in Dental Imaging, p.27]]
[^28]: Original PDF page 28: [[L2 - Opacities in Dental Imaging.pdf#page=28|L2 - Opacities in Dental Imaging, p.28]]
[^29]: Original PDF page 29: [[L2 - Opacities in Dental Imaging.pdf#page=29|L2 - Opacities in Dental Imaging, p.29]]
[^30]: Original PDF page 30: [[L2 - Opacities in Dental Imaging.pdf#page=30|L2 - Opacities in Dental Imaging, p.30]]
[^31]: Original PDF page 31: [[L2 - Opacities in Dental Imaging.pdf#page=31|L2 - Opacities in Dental Imaging, p.31]]
[^32]: Original PDF page 32: [[L2 - Opacities in Dental Imaging.pdf#page=32|L2 - Opacities in Dental Imaging, p.32]]
[^33]: Original PDF page 33: [[L2 - Opacities in Dental Imaging.pdf#page=33|L2 - Opacities in Dental Imaging, p.33]]
[^34]: Original PDF page 34: [[L2 - Opacities in Dental Imaging.pdf#page=34|L2 - Opacities in Dental Imaging, p.34]]
[^35]: Original PDF page 35: [[L2 - Opacities in Dental Imaging.pdf#page=35|L2 - Opacities in Dental Imaging, p.35]]
[^36]: Original PDF page 36: [[L2 - Opacities in Dental Imaging.pdf#page=36|L2 - Opacities in Dental Imaging, p.36]]
[^37]: Original PDF page 37: [[L2 - Opacities in Dental Imaging.pdf#page=37|L2 - Opacities in Dental Imaging, p.37]]
[^38]: Original PDF page 38: [[L2 - Opacities in Dental Imaging.pdf#page=38|L2 - Opacities in Dental Imaging, p.38]]
[^39]: Original PDF page 39: [[L2 - Opacities in Dental Imaging.pdf#page=39|L2 - Opacities in Dental Imaging, p.39]]
[^40]: Original PDF page 40: [[L2 - Opacities in Dental Imaging.pdf#page=40|L2 - Opacities in Dental Imaging, p.40]]
[^41]: Original PDF page 41: [[L2 - Opacities in Dental Imaging.pdf#page=41|L2 - Opacities in Dental Imaging, p.41]]
[^42]: Original PDF page 42: [[L2 - Opacities in Dental Imaging.pdf#page=42|L2 - Opacities in Dental Imaging, p.42]]
[^43]: Original PDF page 43: [[L2 - Opacities in Dental Imaging.pdf#page=43|L2 - Opacities in Dental Imaging, p.43]]
[^44]: Original PDF page 44: [[L2 - Opacities in Dental Imaging.pdf#page=44|L2 - Opacities in Dental Imaging, p.44]]
[^45]: Original PDF page 45: [[L2 - Opacities in Dental Imaging.pdf#page=45|L2 - Opacities in Dental Imaging, p.45]]
[^46]: Original PDF page 46: [[L2 - Opacities in Dental Imaging.pdf#page=46|L2 - Opacities in Dental Imaging, p.46]]
[^47]: Original PDF page 47: [[L2 - Opacities in Dental Imaging.pdf#page=47|L2 - Opacities in Dental Imaging, p.47]]
[^48]: Original PDF page 48: [[L2 - Opacities in Dental Imaging.pdf#page=48|L2 - Opacities in Dental Imaging, p.48]]
[^49]: Original PDF page 49: [[L2 - Opacities in Dental Imaging.pdf#page=49|L2 - Opacities in Dental Imaging, p.49]]
[^50]: Original PDF page 50: [[L2 - Opacities in Dental Imaging.pdf#page=50|L2 - Opacities in Dental Imaging, p.50]]
[^51]: Original PDF page 51: [[L2 - Opacities in Dental Imaging.pdf#page=51|L2 - Opacities in Dental Imaging, p.51]]
[^52]: Original PDF page 52: [[L2 - Opacities in Dental Imaging.pdf#page=52|L2 - Opacities in Dental Imaging, p.52]]
[^53]: Original PDF page 53: [[L2 - Opacities in Dental Imaging.pdf#page=53|L2 - Opacities in Dental Imaging, p.53]]
[^54]: Original PDF page 54: [[L2 - Opacities in Dental Imaging.pdf#page=54|L2 - Opacities in Dental Imaging, p.54]]
[^55]: Original PDF page 55: [[L2 - Opacities in Dental Imaging.pdf#page=55|L2 - Opacities in Dental Imaging, p.55]]
[^56]: Original PDF page 56: [[L2 - Opacities in Dental Imaging.pdf#page=56|L2 - Opacities in Dental Imaging, p.56]]
[^57]: Original PDF page 57: [[L2 - Opacities in Dental Imaging.pdf#page=57|L2 - Opacities in Dental Imaging, p.57]]
[^58]: Original PDF page 58: [[L2 - Opacities in Dental Imaging.pdf#page=58|L2 - Opacities in Dental Imaging, p.58]]
[^59]: Original PDF page 59: [[L2 - Opacities in Dental Imaging.pdf#page=59|L2 - Opacities in Dental Imaging, p.59]]
[^60]: Original PDF page 60: [[L2 - Opacities in Dental Imaging.pdf#page=60|L2 - Opacities in Dental Imaging, p.60]]
[^61]: Original PDF page 61: [[L2 - Opacities in Dental Imaging.pdf#page=61|L2 - Opacities in Dental Imaging, p.61]]</footnotes>
</document>
