1.Post-COVID-19 unilateral upper lip numbness: A case report
Sofia Maria S. Im ; Gerard Saranza
Acta Medica Philippina 2024;58(4):94-96
This is a case of a 63-year-old female with post-COVID-19 unilateral upper lip pain and numbness. Neurologic
examination did not reveal any deficits other than deficits on pinprick in the maxillary division (V2) of the
left trigeminal nerve. Brain neuroimaging showed signs of acute inflammation of the left maxillary sinus.
Neuropraxia of the infraorbital nerve, a branch of the trigeminal nerve, was the diagnosis considered.
Reports on trigeminal neurosensory changes following acute sinusitis are few, and isolated trigeminal neuropathy is rare except in cases of dental disorders. Up to this writing, there have been no reports on post-COVID-19 unilateral upper lip numbness and pain. This study will also serve as a concise review on the correlative neuroanatomy of the trigeminal nerve.
COVID-19
;
Trigeminal Nerve
2.Promotion effect of TGF-β-Zfp423-ApoD pathway on lip sensory recovery after nerve sacrifice caused by nerve collateral compensation.
Pingchuan MA ; Gaowei ZHANG ; Su CHEN ; Cheng MIAO ; Yubin CAO ; Meng WANG ; Wenwen LIU ; Jiefei SHEN ; Patrick Ming-Kuen TANG ; Yi MEN ; Li YE ; Chunjie LI
International Journal of Oral Science 2023;15(1):23-23
Resection of oral and maxillofacial tumors is often accompanied by the inferior alveolar nerve neurectomy, resulting in abnormal sensation in lower lip. It is generally believed that spontaneous sensory recovery in this nerve injury is difficult. However, during our follow-up, patients with inferior alveolar nerve sacrifice showed different degrees of lower lip sensory recovery. In this study, a prospective cohort study was conducted to demonstrate this phenomenon and analyze the factors influencing sensory recovery. A mental nerve transection model of Thy1-YFP mice and tissue clearing technique were used to explore possible mechanisms in this process. Gene silencing and overexpression experiments were then conducted to detect the changes in cell morphology and molecular markers. In our follow-up, 75% of patients with unilateral inferior alveolar nerve neurectomy had complete sensory recovery of the lower lip 12 months postoperatively. Patients with younger age, malignant tumors, and preservation of ipsilateral buccal and lingual nerves had a shorter recovery time. The buccal nerve collateral sprouting compensation was observed in the lower lip tissue of Thy1-YFP mice. ApoD was demonstrated to be involved in axon growth and peripheral nerve sensory recovery in the animal model. TGF-β inhibited the expression of STAT3 and the transcription of ApoD in Schwann cells through Zfp423. Overall, after sacrificing the inferior alveolar nerve, the collateral compensation of the ipsilateral buccal nerve could innervate the sensation. And this process was regulated by TGF-β-Zfp423-ApoD pathway.
Mice
;
Animals
;
Lip/innervation*
;
Prospective Studies
;
Mandibular Nerve/pathology*
;
Sensation/physiology*
;
Trigeminal Nerve Injuries/pathology*
3.Evaluating the risk factors of inferior alveolar nerve injury following removal of the mandibular third molars.
Chinese Journal of Stomatology 2022;57(3):258-265
Objective: To evaluate the risk factors of inferior alveolar nerve injury (IANI) after surgical removal of the mandibular third molars (M3) and present a new risk scoring system to predict the probability of IANI. Methods: Patients who underwent extraction of M3 in the Stomatology Hospital, Zhejiang University School of Medicine from April 2017 to December 2019 were involved. The investigators enrolled a sample composed of 949 mandibular third molars. Prediction model was used for univariate and multivariate analysis of gender, age, M3, inferior alveolar canal (IAC), and the contact between M3 and IAC, to assess the risk factors of IANI. Combined with the risk factors determined by the outcomes of prediction model, the risk scoring system was constructed. The diagnostic performance of each cut-off score was examined to conduct a risk stratification of IANI risk scores. The predictive ability and reliability of the model were evaluated. Results: In prediction model, twenty nine cases (4.4%, 29/664) experienced postoperative IANI. Number of root (P<0.01), depth of impaction (P<0.05), contact between M3 and IAC (P<0.01) and their contact position (P<0.05) were statistically significant as contributing risk factors of IANI. Specifically, the incidence of temporary IANI was higher in those who aged under 25 years (P<0.001), while female suffer more permanent injury (P<0.05). Based on the IANI risk scoring system, patients were stratified into low-risk, middle-risk and high-risk groups at cutoff scores of 3 and 4. The area under the receiver operator characteristic curve of the risk scoring system were 0.81 [95%CI (0.70-0.90), P=0.002] and 0.80 [95%CI (0.68-0.92), P=0.007] towards good discrimination. Conclusions: Age, gender, number of root, depth of impaction, and contact between M3 and IAC were risk factors of IANI. IANI risk scoring system might help in preoperative assessment, recognition of high-risk cases and decision-making to reduce IANI.
Aged
;
Female
;
Humans
;
Mandible/surgery*
;
Mandibular Nerve
;
Molar, Third/surgery*
;
Reproducibility of Results
;
Risk Factors
;
Tooth Extraction/adverse effects*
;
Trigeminal Nerve Injuries/etiology*
4.Gamma Knife Radiosurgery on the Trigeminal Root Entry Zone for Idiopathic Trigeminal Neuralgia: Results and a Review of the Literature
Yonsei Medical Journal 2020;61(2):111-119
Trigeminal neuralgia (TN) is a chronic disorder of the trigeminal nerve characterized by repeated electrical shock-like sensations on one side of the face. It can cause severe pain in the face and disrupt or impair quality of life in patients. Options for the management of TN consist of pharmacological and surgical treatments, including Gamma Knife radiosurgery (GKRS). GKRS has been used for TN for a long time because of its low rate of complications and high success rate. Moreover, GKRS can be of use for drug-resistant TN patients who are poor surgical candidates due to medical comorbidities, patients of older age, or patients who refuse invasive therapy. We reviewed the rationale, effects, safety, and current treatment policies of GKRS for TN in view of our institution's results and a review of the literature to date.]]>
Comorbidity
;
Facial Pain
;
Humans
;
Quality of Life
;
Radiosurgery
;
Sensation
;
Trigeminal Nerve
;
Trigeminal Neuralgia
5.Variant anatomy of the buccal nerve
Mayank PATEL ; Joe IWANAGA ; Shogo KIKUTA ; Rod J OSKOUIAN ; R Shane TUBBS
Anatomy & Cell Biology 2019;52(1):82-83
Knowledge of the anatomy and variations of the nerves of the oral cavity is important to surgeons who operate this region. Herein, we report a rare case of a buccal nerve with two distinct roots. The anatomy of this case and its clinical applications is discussed.
Mouth
;
Surgeons
;
Trigeminal Nerve
6.Role of neuron and non-neuronal cell communication in persistent orofacial pain
Koichi IWATA ; Masamichi SHINODA
Journal of Dental Anesthesia and Pain Medicine 2019;19(2):77-82
It is well known that trigeminal nerve injury causes hyperexcitability in trigeminal ganglion neurons, which become sensitized. Long after trigeminal nerve damage, trigeminal spinal subnucleus caudalis and upper cervical spinal cord (C1/C2) nociceptive neurons become hyperactive and are sensitized, resulting in persistent orofacial pain. Communication between neurons and non-neuronal cells is believed to be involved in these mechanisms. In this article, the authors highlight several lines of evidence that neuron-glial cell and neuron macrophage communication have essential roles in persistent orofacial pain mechanisms associated with trigeminal nerve injury and/or orofacial inflammation.
Cell Communication
;
Cervical Cord
;
Facial Pain
;
Inflammation
;
Macrophages
;
Neurons
;
Nociceptors
;
Trigeminal Ganglion
;
Trigeminal Nerve
;
Trigeminal Nerve Injuries
;
Trigeminal Nucleus, Spinal
7.Trigeminal somatosensory evoked potential test as an evaluation tool for infraorbital nerve damage
Woo Taik HONG ; Jin Hee CHOI ; Ji Hyun KIM ; Yong Hun KIM ; Chae Eun YANG ; Jiye KIM ; Sug Won KIM
Archives of Craniofacial Surgery 2019;20(4):223-227
BACKGROUND: Neurosensory changes are frequently observed in the patients with mid-face fractures, and these symptoms are often caused by infraorbital nerve (ION) damage. Although ION damage is a relatively common phenomenon, there are no established and objective methods to evaluate it. The aim of this study was to test whether trigeminal somatosensory evoked potential (TSEP) could be used as a prognostic predictor of ION damage and TSEP testing was an objective method to evaluate ION injury. METHODS: In this prospective TSEP study, 48 patients with unilateral mid-face fracture (only unilateral blow out fracture and unilateral zygomaticomaxillary fracture were included) and potential ION damages were enrolled. Both sides of the face were examined with TSEP and the non-traumatized side of the face was used as control. We calculated the latency difference between the affected and the unaffected sides. RESULTS: Twenty-four patients recovered within 3 months, and 21 patients took more than 3 months to recover. The average latency difference between the affected side and unaffected side was 1.4 and 4.1 ms for the group that recovered within 3 months and the group that recovered after 3 months, respectively. CONCLUSION: Patients who suffered ION damage showed prolonged latency when examined using the TSEP test. TSEP is an effective tool for evaluation of nerve injury and predicting the recovery of patients with ION damage.
Evoked Potentials, Somatosensory
;
Humans
;
Methods
;
Orbital Fractures
;
Prospective Studies
;
Trigeminal Nerve Injuries
8.Facial Herpes Zoster: A 15-year Retrospective Single-Center Study
Joong Heon SUH ; Soo Kyung LEE ; Un Ha LEE ; Myoung Shin KIM
Korean Journal of Dermatology 2019;57(5):235-242
BACKGROUND: Many studies about herpes zoster exist in the Korean dermatologic literature. However, few studies have reported about facial herpes zoster and its complications. OBJECTIVE: The purpose of this study was to investigate the epidemiology, clinical features, and complications of facial herpes zoster. METHODS: We analyzed the medical records of 977 patients who visited Sanggye Paik Hospital between January 2002 and December 2017. We categorized patients into 8 groups based on the dermatomal distribution of herpetic lesions. We investigated the correlations between clinical features, prognosis, and complications. RESULTS: We analyzed the medical records of 977 patients who visited Sanggye Paik Hospital between January 2002 and December 2017. We categorized patients into 8 groups based on the dermatomal distribution of herpetic lesions. We investigated the correlations between clinical features, prognosis, and complications. Results: The most common site of involvement of facial herpes zoster was the ophthalmic branch of the trigeminal nerve (59.2%). Herpes zoster involving the ophthalmic and the maxillary branches of the trigeminal nerves showed a significantly higher incidence rate of herpes zoster ophthalmicus than that observed with herpes zoster involving only the ophthalmic branch (odds ratio 7.373). Age and periorbital swelling were significantly correlated with herpes zoster ophthalmicus (p<0.001). Facial palsy was significantly correlated with otalgia and cutaneous ear involvement (p<0.001). Postherpetic neuralgia (PHN) occurred in 41% of patients with facial herpes zoster. Patients who received antiviral treatment within 3 days showed lower rates of PHN (35.8%) than patients who received treatment after 4 days (45.4%) (p=0.002). CONCLUSION: Facial herpes zoster is associated with several neurological complications. Variables including age, periorbital swelling, otalgia, and cutaneous ear involvement are useful predictors of complications and prognosis. Early institution of antiviral treatment and appropriate interdepartmental consultations are required for better treatment outcomes.
Ear
;
Earache
;
Epidemiology
;
Facial Paralysis
;
Herpes Zoster Ophthalmicus
;
Herpes Zoster Oticus
;
Herpes Zoster
;
Humans
;
Incidence
;
Medical Records
;
Neuralgia, Postherpetic
;
Prognosis
;
Referral and Consultation
;
Retrospective Studies
;
Trigeminal Nerve
9.Trigeminal Neuralgia Resulting from Delayed Cervical Cord Compression after Acute Traumatic Fracture of Odontoid Process
Yong Woo SHIM ; Sung Hwa PAENG ; Keun Soo LEE ; Sung Tae KIM ; Won Hee LEE
Korean Journal of Neurotrauma 2019;15(1):38-42
Trigeminal neuralgia is caused by compression of trigeminal nerve root and it leads to demyelination gradually. It was almost idiopathic and occurred unexpected. The upper cervical spinal cord contains the spinal trigeminal tract and nucleus. Fibers with cell bodies in the trigeminal ganglion enter in the upper pons and descend caudally to C2 level. We experienced a rare patient with facial pain, which was paroxysmal attack with severe pain after a clear event, cervical spinal injury (C2). So, this case reminds us of a possible cause of trigeminal neuralgia after a trauma of the head and neck.
Cell Body
;
Cervical Cord
;
Demyelinating Diseases
;
Facial Pain
;
Head
;
Humans
;
Neck
;
Odontoid Process
;
Pons
;
Spinal Cord
;
Spinal Injuries
;
Trigeminal Ganglion
;
Trigeminal Nerve
;
Trigeminal Neuralgia
10.Gamma Knife Radiosurgery in Recurrent Trigeminal Neuralgia after Other Procedures
Jae Meen LEE ; Beong Ik HUR ; Chang Hwa CHOI
Kosin Medical Journal 2019;34(1):30-37
OBJECTIVES: Trigeminal neuralgia (TN) is undurable paroxysmal pain in the distribution of the fifth cranial nerve. Invasive treatment modalities for TN include microvascular decompression (MVD) and percutaneous procedures, such as, radiofrequency rhizotomy (RFR). Gamma Knife radiosurgery (GKRS) is a considerable option for patients with pain recurrence after an initial procedure. This study was undertaken to analyze the effects of gamma knife radiosurgery in recurrent TN after other procedures. METHODS: Eleven recurrent TN patients after other procedures underwent GKRS in our hospital from September 2004 to August 2016. Seven patients had previously undergone MVD alone, two underwent MVD with partial sensory rhizotomy (PSR), and two underwent RFR. Mean patient age was 60.5 years. We retrospectively analyzed patient's characteristics, clinical results, sites, and divisions of pain. Outcomes were evaluated using the Visual Analog Scales (VAS) score. RESULTS: Right sides were more prevalent than left sides (7:4). The most common distribution of pain was V1 + V2 division (n = 5) following V2 + V3 (n = 3), V2 (n = 2), and V1 + V2 + V3 (n = 1) division. Median GKRS dose was 80 Gy and the mean interval between the prior treatment and GKRS was 74.45 months. The final outcomes of subsequent GKRS were satisfactory in most cases, and at 12 months postoperatively ten patients (90.0%) had a VAS score of ≤ 3. CONCLUSIONS: In this study, the clinical result of GKRS was satisfactory. Invasive procedures, such as, MVD, RFR are initially effective in TN patients, but GKRS provides a safe and satisfactory treatment modality for those who recurred after prior invasive treatments.
Humans
;
Microvascular Decompression Surgery
;
Radiosurgery
;
Recurrence
;
Retrospective Studies
;
Rhizotomy
;
Trigeminal Nerve
;
Trigeminal Neuralgia
;
Visual Analog Scale


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