Submitted:
13 July 2026
Posted:
23 July 2026
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Abstract
Keywords:
1. Introduction
- (i)
- Repeated unnecessary pulpectomy and tooth extraction after the exclusion of odontogenic origins;
- (ii)
- Transition to pharmacological management labeled as psychogenic or neuropathic pain;
- (iii)
- Long-term combined use of antidepressants, anxiolytics, and hypnotics;
- (iv)
- Symptom complexity arising from psychotropic medications and polypharmacy;
- (v)
- Persistent oversight of fascia as a major source of pain, leading to chronification.
2. Background
2.1. Definition of Fascia
2.2. Fascial Pain Syndrome (FPS)
2.3. Ultrasound-Guided Fascia Hydrorelease (US-FHR)
2.4. Anatomical Rationale for Fascia-Derived Non-Odontogenic Toothache
2.5. Anatomical Predilection Sites of Stacking Fascia (Memory Reset Hypothesis)
- #1 Curved regions of tissues—e.g., curvature of the vertebral artery, facial artery bending, and curvature of the masseter muscle fibers.
- #2 Crossing points of tissues—e.g., crossing of the masticatory and hyoid muscles.
- #3 Convergence zones of multiple tissues—e.g., temporomandibular joint capsule complex (convergence of capsule, ligaments, and muscle attachments) and temporalis insertion.
- #4 Peritubular regions of nerves and vessels—e.g., pterygopalatine fossa (maxillary nerve and artery passage) and carotid sheath.
- #5 Periarticular fat pads—e.g., fat pad between the masseter and lateral pterygoid (buccal fat pad).
- #6 Superficial course of neurovascular structures—e.g., superficial parotid region (the facial nerve and parotid duct run beneath the superficial fascia [the superficial musculoaponeurotic system, SMAS]) and superficial course of the facial artery.
- #7 Ligamentum flavum and epidural space—e.g., C0–1 posterior atlanto-occipital membrane and C1–C2 ligamentum flavum/dural region.
- #8 Predilection sites for accessory muscles—e.g., accessory masticatory muscles.
3. Methods: Protocol Development Framework
4. Diagnosis and Evaluation
4.1. Clinical Presentation
4.2. Pain Sources Classified by Tooth Location and Referred Pattern
- Maxillary molar region: Masseter (POINT 1), temporalis (POINT 2), medial pterygoid (POINTs 4–5), superficial parotid (POINT 7), and lateral pterygoid/pterygopalatine (POINT 3 integrated POINT).
- Maxillary premolar region: Masseter (POINT 1), medial pterygoid (POINTs 4–5), superficial parotid (POINT 7), and lateral pterygoid/pterygopalatine (POINT 3).
- Maxillary anterior teeth: Superficial parotid (POINT 7) and lateral pterygoid/pterygopalatine (POINT 3).
- Mandibular molar region: Masseter (POINT 1), medial pterygoid (POINTs 4–5), TMJ capsule (POINT 6), and perivascular fascia of the facial artery (POINT 10).
- Mandibular premolar region: Medial pterygoid (POINTs 4–5), digastric (POINT 8), and perivascular fascia of the facial artery (POINT 10).
- Mandibular anterior teeth: Digastric (POINT 8) and perivascular fascia of the facial artery (POINT 10).
- Toothache associated with periarticular symptoms: Lateral pterygoid (POINT 3), TMJ capsule (POINT 6), and medial pterygoid (POINTs 4–5).
- Refractory cases with referred pain from upper teeth to deep eye to temple: Upper posterior cervical (POINT 11, Advanced).
- Toothache with swallowing pain or lingual discomfort: Digastric (POINT 8).
- Toothache with headache or autonomic symptoms: Cervical sympathetic ganglion region (POINT 9).
5. Ultrasound-Guided Fascia Hydrorelease (US-FHR) Procedure
5.1. Principles
5.2. Safety Considerations
5.3. Anatomical Rationale for Needle Technique and Injection Volume [4]
- Allows the highest accuracy of injection into the space between epimysiums using a fine 27 G 38 mm needle.
- (2) The injection and dispersion origin are close to the puncture site, facilitating anatomical landmark identification during the procedure.
- (3) Avoids the upward spread along the needle path and the distribution accuracy loss that may occur with the in-plane approach.
- (4) Less invasive in clinical practice than the in-plane approach.
- (5) Modern ultrasound devices with simple needle visualization functions provide sufficient needle visibility even with the out-of-plane approach.
6. The Eleven-Point Protocol
6.1. Masticatory Muscle Region (POINTs 1–3)
- Anatomy: From the zygomatic arch to the lateral surface of the mandibular ramus; innervated by the third division of the trigeminal nerve.
- Referred pain: Upper and lower molars, preauricular region, cheek, and temple.
- Ultrasound: Inferior border of the zygomatic arch; a convex probe is advantageous for an overview.
- US-FHR: 27–30 G needle, 1–2 mL into the space between the superficial and deep epimysiums of the masseter; high safety (Figure 1).
- Anatomy: From the temporal fossa to the coronoid process of the mandible.
- Referred pain: Maxillary molars, temporal headache, frontal region, periorbital region.
- Ultrasound: A linear probe is placed over the temporal region above the zygomatic arch to image the temporalis in the short axis.
- US-FHR: 27–30 G needle, 1–2 mL into the muscle belly and the fascia at the coronoid process insertion (Figure 2).
- Anatomy: Fascia and fat pad between the deep layer of the temporalis and the superficial aspect of the lateral pterygoid and the maxillary artery (running toward the pterygopalatine ganglion); from the lateral pterygoid plate to the articular disc and the condylar process.
- Referred pain: Periarticular region of the TMJ, deep ear pain, occlusal pain, maxillary molars, maxillary sinus and nasal area, and autonomic-related symptoms.
- Ultrasound: A linear probe is placed over the cheek inferior to the zygomatic arch; after confirming the temporalis and the coronoid process, the deep lateral pterygoid, fat pad, and maxillary artery are imaged in the short axis. Color Doppler identification of the maxillary artery is mandatory for safety.
- US-FHR: 30 G needle, 1–2 mL into the fat pad between the lateral pterygoid and the deep masseter, and into the perivascular fascia of the maxillary artery. After confirming the maxillary artery with Color Doppler, Doppler is turned off to maintain clear B-mode visualization during the release (Figure 3).
6.2. Medial Pterygoid and Joint Capsule Region (POINTs 4–6)
- Anatomy: The medial pterygoid arises from the maxilla and from both surfaces of the lateral pterygoid plate, inserting on the medial surface of the mandibular ramus. Referred pain involves the periarticular region of the TMJ, mandibular molars, medial cheek, tongue, and palate. The fascia around the masseter and medial pterygoid—and the fat pad between them—function as the pain generator. Insertion points of the temporalis, lateral pterygoid, and medial pterygoid are shown in Figure 4 (Nihon University Ethics Committee approval number 28-8-0).
- -
- Temporalis: Both surfaces of the coronoid process and the lateral pterygoid plate.
- -
- Lateral pterygoid: Anterior and posterior margins of the lateral pterygoid plate.
- -
- Medial pterygoid: Maxilla and both surfaces of the lateral pterygoid plate.
- Referred pain: Temporomandibular joint region, mandibular molars, medial cheek, tongue, and palate. Effective for periarticular TMJ pain.
- Ultrasound: With the mouth half-opened and a convex probe, a panoramic ultrasound view facilitates the identification of the relevant structures. The patient positioning and imaging procedure is as follows:
- -
- Have the patient open the mouth widely. This shifts the mandible downward and enlarges the space between the coronoid process and the maxilla, securing a safe access route to the medial pterygoid.
- -
- Insert the needle from the anterior to the coronoid process. This enables a safe and efficient needle approach to the superficial aspect of the medial pterygoid and the fat pad.
- -
- These additional clinical tips extend the standard procedure and contribute to safety and efficiency.
- Anatomy: From the intraoral approach, posterior to the maxillary tuberosity, directly into the medial pterygoid muscle belly.
- Referred pain: The same as the extraoral approach.
- Indications: Limited mouth opening, pronounced deep fascial densification, cases complicated by contracture of the lateral pterygoid.
- US-FHR: 30 G needle, 0.5–1 mL via the intraoral route. Collaboration with a dentist is essential for safe execution (Figure 5).
- Anatomy: Inferior to the zygomatic arch; condylar process of the mandible, articular disc, joint capsule, and lateral pterygoid insertion.
- Referred pain: Periarticular TMJ region, pain on opening/closing, and occlusal discomfort.
- Ultrasound: Probe perpendicular to the zygomatic arch; the condylar process is tracked by sliding the probe, and joint dynamics are confirmed during opening and closing.
- US-FHR: 27–30 G needle, 1–2 mL into the densified periarticular fascia (Figure 6).
6.3. Parotid Region (POINT 7)
- Anatomy: From the zygomatic arch to the anteroinferior region of the mastoid process to the posterior border of the mandibular ramus; continuous SMAS layer.
- Referred pain: Dental pain in general (low site specificity), periarticular TMJ region, cheek, and preauricular region.
- Ultrasound: The probe is moved caudally from the preauricular region; the parotid gland and the superficial layer of the masseter are identified, and the capsule layer is visualized.
- US-FHR: 30 G needle, 0.5–1 mL into the superficial parotid capsule layer; the facial artery and posterior auricular artery must be avoided (Figure 7).
- Related reports: Detailed extensions will be addressed in a separate case report (applications to long-standing facial nerve palsy, synkinesis, atypical facial pain, tinnitus, etc.).
6.4. Cervical Region (POINTs 8–9)
- Anatomy: From the mental region to the hyoid bone to the mastoid process.
- Referred pain: Mandibular anterior region, tongue, pharynx, and swallowing pain.
- Ultrasound: Probe placed in the submental region; the hyoid bone and the submandibular gland serve as landmarks.
- US-FHR: 27–30 G needle, 1–2 mL into the fascia around the anterior belly and the intermediate tendon (Figure 8).
- Anatomy: Fascial planes between the epimysiums of the sternocleidomastoid, levator scapulae, scalene, and longus colli muscles, and the perivascular sheath region.
- Referred pain: Temporal/frontal headache, periorbital pain, dizziness, tinnitus, and swallowing discomfort.
- Ultrasound: Palpate the sternocleidomastoid, place the probe at the tender point, and confirm the internal jugular vein and common carotid artery.
- US-FHR: 27–30 G needle, 1–3 mL into the densified fascia lateral to the carotid sheath (a slightly larger volume than other POINTs is used to ensure spread across multiple cervical fascial planes—between the epimysiums of the sternocleidomastoid, levator scapulae, scalene, and longus colli—and the perivascular fascia). After confirming vascular structures with Color Doppler, Doppler is turned off to maintain clear B-mode visualization during the release (Figure 9).
6.5. Facial Artery Region (POINT 10)
- Anatomy: From the inferior mandibular border to the superficial buccinator to the deep platysma.
- Referred pain: Cheek, corner of the mouth, lower lip, mandibular anterior teeth, and mental region.
- Ultrasound: Probe placed at the mandibular border; Color Doppler identification of the facial artery.
- US-FHR: 30 G needle, 0.5–1 mL into the fascia lateral to the arterial sheath. After confirming the facial artery with Color Doppler, Doppler is turned off to maintain clear B-mode visualization during the release (Figure 10).
6.6. Upper Posterior Cervical Release (POINT 11)—Advanced Technique (C0–1 Vertebral Artery Curvature or C1–C2 Ligamentum Flavum/Dural Region; Selected by Tender-Point Dominance)
- (1)
- PAOM/dura densification release: The C0–1 posterior atlanto-occipital membrane and the C1–C2 ligamentum flavum/epidural space are histologically continuous [16], and the densification along this continuum is released through a posterior, out-of-plane needle approach.
- (2)
- Densification release at the vertebral artery curvature: After passing through the C1 transverse foramen, the vertebral artery makes a sharp curve on the superior surface of the C1 posterior arch. This curvature corresponds to category #1 (curved regions of tissues) among the eight stacking-fascia predilection categories [12] and is a frequent site of densification.
- (3)
- Perivascular fascia release around the vertebral artery: This is the most important aspect of the procedure. It addresses densification of the perivascular fascia around the vertebral artery (stacking-fascia category #6, superficial course of neurovascular structures [12]). Resulting changes in vertebral arterial hemodynamics may, in turn, affect the perfusion of the brainstem, cerebellum, and upper cervical spinal cord. This aspect supports a hypothesized rationale for applying POINT 11 to non-odontogenic toothache, particularly in the maxillary molar region; further prospective evaluation is required.
- Anatomy: At C0–1, the perivascular fascia around the vertebral artery at the C0–1 curvature segment (beneath the posterior atlanto-occipital membrane), or at C1–C2, the ligamentum flavum and dura mater. The two structures are histologically continuous [16].
- Referred pain: Refractory pain from the upper teeth (especially the maxillary molars) through the retro-orbital region to the temporal region; refractory headache; and cases with prominent upper posterior cervical tenderness.
- Ultrasound: Based on palpation, the side with dominant tenderness (C0–1 or C1–C2) is selected, and a linear probe is used to image the corresponding level. Color Doppler identification of the vertebral artery is mandatory for safety.
- US-FHR: 30 G needle, advanced from the posterior side, with the tip placed beneath the PAOM; 1–2 mL of physiological saline is injected (direct vascular puncture is strictly forbidden; Color Doppler identification of the vertebral artery is mandatory; Doppler is turned off during the release).
7. Pathology-Specific Application of the Eleven-Point Protocol
7.1. Masticatory Myofascial Toothache
7.2. Neurovascular Toothache
7.3. TMD-Related Toothache
7.4. Autonomic-Component Toothache
7.5. Swallowing-Related Toothache
7.6. Parotid-Derived Toothache (Novel Concept)
7.7. Refractory Referred Pain (Upper Teeth ↔ Deep Eye ↔ Temple)
8. Discussion
8.1. Overall Discussion
- POINT 5 (intraoral medial pterygoid): Newly added; this approach was conceived by co-author Dr. Tadashi Kobayashi (Development of Community Healthcare, Hirosaki University Graduate School of Medicine).
- POINT 7 (superficial parotid fascia): Symptomatic improvement has been observed in selected cases of non-odontogenic toothache; these observations are hypothesis-generating and require prospective evaluation.
- POINT 11 (upper posterior cervical release): An integrated technique that simultaneously addresses (1) the histological continuity of the PAOM and dura, (2) the densification at the vertebral artery curvature at C1, and (3) the perivascular fascia of the vertebral artery. Whether this is accompanied by measurable changes in vertebral arterial hemodynamics or downstream perfusion of the brainstem, cerebellum, and upper cervical spinal cord remains a hypothesis to be tested.
8.2. Anatomical Validity Based on the Eight Stacking-Fascia Categories
- POINT 3 (lateral pterygoid/fat pad/maxillary artery/pterygopalatine) = #1 curved regions + #4 peritubular + #5 fat pad + #6 superficial neurovascular course (quadruple composite; integrated POINT).
- POINT 11 (upper posterior cervical) = #7 ligamentum flavum and epidural space (PAOM–dura histological continuity) + #1 curved regions (vertebral artery curvature) + #6 superficial neurovascular course (perivascular fascia of the vertebral artery) (triple composite; integrated POINT, addressing densification across the PAOM/dura/ligamentum flavum together with perivascular release of the vertebral artery; possible downstream effects on brainstem, cerebellar, and upper cervical spinal cord perfusion via altered vertebral arterial hemodynamics remain a hypothesis to be tested).
- POINT 7 (superficial parotid) = #6 superficial neurovascular course (the facial nerve and parotid duct travel beneath the superficial fascia).
8.3. A Therapeutic Paradigm Shift from TPI to FHR
8.4. Position Relative to Existing Related Studies
8.5. Brief Notes on Related Areas
8.6. Supplementary Materials
- Video S1: POINT 1—Masseter (superficial and deep layers) US-FHR.
- Video S2: POINT 2—Temporalis US-FHR.
- Video S3: POINT 3—Lateral pterygoid/fat pad/maxillary artery/pterygopalatine integrated US-FHR.
- Video S4: POINT 4—Medial pterygoid (extraoral approach) US-FHR.
- Video S5: POINT 5—Medial pterygoid (intraoral approach) US-FHR.
- Video S6: POINT 6—Temporomandibular joint capsule complex US-FHR.
- Video S7: POINT 7—Superficial parotid fascia US-FHR.
- Video S8: POINT 8—Digastric muscle US-FHR.
- Video S9: POINT 9—Cervical sympathetic trunk region (centered on the middle cervical ganglion, extending cephalad and caudad to include the superior cervical and stellate ganglia) US-FHR.
- Video S10: POINT 10—Perivascular fascia of the facial artery US-FHR.
- Video S11A: POINT 11—Upper posterior cervical release (C0–1 vertebral artery curvature, tender-side example) US-FHR.
- Video S11B: POINT 11—Upper posterior cervical release (C1–C2 ligamentum flavum/dural region, tender-side example) US-FHR.
9. Conclusions
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Conflicts of Interest
Abbreviations
| APF | aponeurotic fascia |
| CDS | Crowned Dens Syndrome |
| EPI | epimysium |
| FHR | fascia hydrorelease |
| FPS | Fascial Pain Syndrome |
| MPS | myofascial pain syndrome |
| NDT | non-odontogenic toothache |
| PAOM | posterior atlanto-occipital membrane |
| SMAS | superficial musculoaponeurotic system |
| TMD | temporomandibular disorder |
| TPI | trigger-point injection |
| TrP | trigger point |
| US-FHR | ultrasound-guided fascia hydrorelease |
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