• 제목/요약/키워드: Alveolar Nerve

검색결과 241건 처리시간 0.022초

하악공 전달마취후 복시 -증례보고- (Diplopia after Inferior Alveolar Nerve Block Anesthesia -A Case Report-)

  • 최은혜;서지영;정복영;김성태;김기덕;박원서
    • 대한치과마취과학회지
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    • 제7권2호
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    • pp.131-134
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    • 2007
  • Inferior alveolar nerve block anesthesia is one of the most common procedures in dental clinic. Although it is well known as safe procedure, complications always can be occurred. Ocular complications such as diplopia, loss of vision, opthalmoplegia are very rare, but once it happens, dentist and patient can be embarrassed and rapport will be decreased between them. We experienced one diplopia case after inferior alveolar nerve block anesthesia and treated without any further complication. We report this case and describe the cause, diagnosis, and treatment objectives of diplopia caused by inferior alveolar nerve block anesthesia.

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하치조신경 절단 후 흰쥐 삼차신경절에서 VIP-IR의 변화 (VIP IMMUNOREACTIVITY IN THE RAT TRIGEMINAL GANGLION AFTER INFERIOR ALVEOLAR NERVE AXOTOMY)

  • 김흥중;박주철;김현섭;문주훈
    • Restorative Dentistry and Endodontics
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    • 제25권2호
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    • pp.225-234
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    • 2000
  • The purpose of this study was to investigate the distribution and fluorescene intensity of vasoactive intestinal polypeptide(VIP) immunoreactive cells in rat trigeminal ganglion after inferior alveolar nerve axotomy. The animals were divided into normal and two experimental groups. The experimental animals were sacrificed at 14th and 28th day after inferior alveolar nerve axotomy. The trigeminal ganglion was removed and immersed in the 4% paraformaldehyde-0.2% picric acid in 0.1M phosphate buffer. Serial frozon sections about $16{\mu}m$ in thickness were cut with a cryostat. The immunofluorescence staining was performed. The rabbit anti-VIP(1 : 8,000) was used as primary antibody and fluorescene isothiocynate(FITC)-conjugated anti-rabbit IgG(1 : 80) as secondary antibody. The slides were observed under confocal laser scanning microscope. Three-dimensional images were constructed from 9 serial images(each $1{\mu}m$ in thickness) made by automatic optical sectioning. Unprocessed optical sections were obtained and stored on a optical disk. Color picture were printed by a video copy processor. The results were as follows; 1. The appearance of VIP immunoreactive cells in the mandibular part of trigeminal ganglion was 8.79${\pm}$1.99% in normal group and 39.16${\pm}$5.62% in 14 days, 16.25${\pm}$2.39% in 28 days after inferior alveolar nerve axotomy groups. 2. The relative fluorescence intensity of VIP immunoreactive cell bodies in the mandibular part of trigeminal ganglion was 134.40${\pm}$10.39 in normal group and 192.88${\pm}$14.06 in 14 days, 143.10${\pm}$5.02 in 28 days after nerve axotomy groups. Therefore, the relative fluorescence intensity of 14 days after nerve axotomy group was 43.3% higher than intensity of normal group. 3. In optical single section analysis of VIP immunoreactive cell bodies, white cell bodies(moderate fluorescence intensity) were the most abundant in normal and 28 days after nerve axotomy groups. Whereas, in 14 days after nerve axotomy group, red cell bodies(high fluorescence intensity) were the most abundant. 4. In optical serial section analysis of VIP immunoreactive cell bodies, red cell bodies(high fluorescence intensity) were observed in a part of the 9 sections of normal and 24 days after nerve axotomy groups. Whereas, red cell bodies were observed in all of the 9 sections of 14 days after nerve axotomy group. 5. The results indicates that number and fluorescence intensity of VIP immunoreactive cells were increased in the mandibular part of trigeminal ganglion following inferior alveolar nerve axotomy.

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Delayed paresthesia of inferior alveolar nerve after dental surgery: case report and related pathophysiology

  • Doh, Re-Mee;Shin, Sooil;You, Tae Min
    • Journal of Dental Anesthesia and Pain Medicine
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    • 제18권3호
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    • pp.177-182
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    • 2018
  • Paresthesia is an altered sensation of the skin, manifesting as numbness, partial loss of local sensitivity, burning, or tingling. The inferior alveolar nerve (IAN) is the third branch of the trigeminal nerve and is very important in dental treatment. IAN paresthesia may occur after various dental procedures such as simple anesthetic injections, surgical procedures, and endodontic treatment, and is reported to range from 0.35% to 8.4%. The altered sensation usually follows immediately after the procedure, and reports of late onset of nerve involvement are rare. This report presents a rare case of delayed paresthesia after dental surgery and discusses the pathophysiology of IAN delayed paresthesia.

하치조신경 손상시 턱끝신경 체성감각유발전위검사의 진단적 유용성에 관한 연구 (DIAGNOSTIC EFFICACY OF MENTAL NERVE SEP(SOMATOSENSORY EVOKED POTENTIALS) FOR THE INJURED INFERIOR ALVEOLAR NERVE)

  • 정현주;김명래
    • Journal of the Korean Association of Oral and Maxillofacial Surgeons
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    • 제27권3호
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    • pp.250-257
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    • 2001
  • Sensory dysfunction following the injury of the inferior alveolar nerve requires objective examination to get a reproducible data and to provide necessary treatment. This study was designed to evaluate if the SEP(somatosensory evoked potentials) of the mental nerve can be used as an objective method for the diagnosis of nerve injury and sensory disturbances. The subjects were nineteen patients ($37.4{\pm}11.3$ years old) who had been suffered from sensory disturbance of the unilateral lower lip and mental region for over 6 months after the inferior alveolar nerve injuries confirmed by the microsurgical explorations. The clinical neurosensory tests as SLTD(static light touch discrimination), MDD(moving direction discrimination), 2PD(two point discrimination), PPN(pin prick nociception) and accompanied pain were preceded to electro-physiologic examinations as SEP. The score of sensory dysfunction (sum score of all sensory tests) ranged from 0 to 8 were compared to the latency differences of the mental nerve SEPs. The correlation between clinical sensory scores and SEPs were tested by Spearman nonparametric rank correlation analysis, the differences in SEP latency by Kruskal-Wallis test and the latency differences according to PPN and accompanied pain by Mann-Whitney U test. This study resulted that the difference of the latencies between normal side and affected side was $2.22{\pm}2.46$ msec and correlated significantly with the neurosensory dysfunction scores (p=0.0001). Conclusively, the somatosensory evoked potentials of the mental nerve can be a useful diagnostic method to evaluate the inferior alveolar nerve injuries and the change of sensory dysfunction to be reproduced as an objective assessment.

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Management and prevention of third molar surgery-related trigeminal nerve injury: time for a rethink

  • Leung, Yiu Yan
    • Journal of the Korean Association of Oral and Maxillofacial Surgeons
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    • 제45권5호
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    • pp.233-240
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    • 2019
  • Trigeminal nerve injury as a consequence of lower third molar surgery is a notorious complication and may affect the patient in long term. Inferior alveolar nerve (IAN) and lingual nerve (LN) injury result in different degree of neurosensory deficit and also other neurological symptoms. The long term effects may include persistent sensory loss, chronic pain and depression. It is crucial to understand the pathophysiology of the nerve injury from lower third molar surgery. Surgery remains the most promising treatment in moderate-to-severe nerve injuries. There are limitations in the current treatment methods and full recovery is not commonly achievable. It is better to prevent nerve injury than to treat with unpredictable results. Coronectomy has been proved to be effective in reducing IAN injury and carries minimal long-term morbidity. New technologies, like the roles of erythropoietin and stem cell therapy, are being investigated for neuroprotection and neural regeneration. Breakthroughs in basic and translational research are required to improve the clinical outcomes of the current treatment modalities of third molar surgery-related nerve injury.

후상치조신경 마취 후 발생된 복시 및 하직근 마비;발생기전에 관한 고찰 (DIPLOPIA AND INFEIRO RECTUS MUSCLE PALSY AFTER POSTERIOR SUPERIOR ALVEOLAR NERVE BLOCK)

  • 김운규
    • Maxillofacial Plastic and Reconstructive Surgery
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    • 제23권5호
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    • pp.461-470
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    • 2001
  • A unhealthy 58-year-old male patient required extraction of left upper second molar due to advanced periodontitis. Lidocaine contained 1 : 100000 epinephrine for left posterior superior alveolar nerve block was administered in the mucobuccal fold above the second molar to be treated at the local private dental clinic. After four hours of posterior superior alveolar block anesthesia, patient feeled double vision and discomfort of eyeball movement. At next day, he complained difficulty of left eyeball movement, vertigo and diplopia. He was referred to our department via local clinic and department of ophthalomology of our hospital. He was treated by medication and eyeball exercise, and then follow up check. The double vision and medial rectus muscle palsy disappeared patially after 2 months of block anesthesia. We described herein an ocular complication of diplopia and inferior rectus muscle palsy after posterior superior alveolar nerve block for extraction of left upper second molar, and review the cause or origin of this case. The autonomic nervous system is presented as the logical basis for the untoward systems of ophthalmologic sign likely to diplopia and inferior rectus muscle palsy, rather then simple circulation of anesthetic solution in the vascular network.

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가토 하치조신경 재생에 있어 Nerve Growth Factor의 효과 (EFFECT OF NERVE GROWTH FACTOR IN REGENERATION OF MANDIBULAR NERVE OF RABBIT)

  • 박광;김현태;이종호
    • Maxillofacial Plastic and Reconstructive Surgery
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    • 제18권2호
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    • pp.261-268
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    • 1996
  • An experimental study was performed to evaluate the efficacy of nerve growth factor(NGF) on inferior alveolar nerve in a rabbit model. In 20 New Zealand white rabbits, 14mm of bilat eral alveolar nerve were resected and the defects were repaired with the 17mm silicone conduits. In group I, 5mm autologous nerve segment were located centrally in the left side after tubulization and NGF solution(Sigma chemical 0.1 mg/mL) was instilled into each conduit. In group II, nerve repair modality was the same but no NGF solution was instilled into the conduits. On 2 months and 6 months postoperatively, the results were evaluated by clinical and hist omorphometric assessment. The result was that autologous nerve segment group show the best nerve regeneration effect and NGF instilled group the worst.

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Single-insertion technique for anesthetizing the inferior alveolar nerve, lingual nerve, and long buccal nerve for extraction of mandibular first and second molars: a prospective study

  • Joseph, Benny;Kumar, Nithin;Vyloppilli, Suresh;Sayd, Shermil;Manojkumar, KP;Vijaykumar, Depesh
    • Journal of the Korean Association of Oral and Maxillofacial Surgeons
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    • 제46권6호
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    • pp.403-408
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    • 2020
  • Objectives: Appropriate and accurate local anesthetic (LA) techniques are indispensable in the field of oral and maxillofacial surgery to obtain a satisfactory outcome for both the operating surgeon and the patient. When used alone, the inferior alveolar nerve block (IANB) technique requires supplemental injections like long buccal nerve block for extraction of mandibular molars leading to multiple traumatic experiences for the patient. The aim of this study was to anesthetize the inferior alveolar, lingual, and long buccal nerves with single-needle penetration requiring a minimal skillset such as administering a conventional IANB through introduction of the Benny Joseph technique for extraction of mandibular molars. Materials and Methods: This was a prospective study conducted in the Department of Oral and Maxillofacial Surgery, Kunhitharuvai Memorial Charitable Trust (KMCT) Dental College, Calicut, India. The duration of the study was 6 months, from June to November 2017, with a maximum sample size of 616 cases. The LA solution was 2% lignocaine with 1:100,000 adrenaline. The patients were selected from a population in the range of 20 to 40 years of age who reported to the outpatient department for routine dental extraction of normally positioned mandibular right or left first or second molars. Results: Of the 616 patients, 42 patients (6.8%) required re-anesthetization, a success rate of 93.2%. There were no complications such as hematoma formation, trismus, positive aspiration, and nerve injuries. None of the cases required re-anesthetization in the perioperative period. Conclusion: The Benny Joseph technique can be employed and is effective compared with conventional IANB techniques by reducing trauma to the patient and also requires less technique sensitivity.

백서에서 하치조신경 전달마취후 설배면 혈관반응에 관한 실험연구 (VASCULAR EFFECTS OF THE INFERIOR ALVEOLAR NERVE INJECTION OF 2% LIDOCAINE HCI WITH 1:100,000 EPINEPHRINE)

  • 김수관;조재오
    • Maxillofacial Plastic and Reconstructive Surgery
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    • 제21권3호
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    • pp.266-269
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    • 1999
  • This article discusses the vascular change of dorsal surface of tongue following inferior alveolar nerve block of 2% lidocaine HCl with 1:100,000 epinephrine. Twenty-two rats were randomly allocated to three groups: control group; without mandibular nerve block, experimental group 1; 2% lidocaine HCl, experimental group 2; 2% lidocaine HCl plus 1:100,000 epinephrine. The assessments were performed at 1-, 5-, 30-, 60-, 120-minute after inferior alveolar nerve block. Vessel diameters using the micrometer were measured and compared. Results showed that the increase in vascular constriction in group 3 was greater than those in groups 1 and 2. In conclusion, local anesthesia combined with epinephrine assures safer anesthesia for hemostasis.

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하치조신경관으로 과충전된 근관치료 충전재에 의한 감각이상의 외과적 처치 (Surgical treatment for dysesthesia after overfilling of endodontic material into the mandibular canal)

  • 송재민;김용덕;이재열
    • 대한치과의사협회지
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    • 제54권11호
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    • pp.874-879
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    • 2016
  • Damage to the inferior alveolar nerve(IAN) is a relatively infrequent complication in endodontic treatment. However, endodontic overfilling involving the mandibular canal may cause an injury of the inferior alveolar nerve resulting in sensory disturbances such as pain, dysesthesia, paresthesia or anesthesia. Two mechanism(chemical neurotoxicity and mechanical compression) are responsible for the IAN injury. When absorbent materials overfilled, it can be treated as a non-surgical procedure. But early surgical intervention required when mechanical, chemical nerve damage expected. We report surgical removal of overfilled gutta-percha and IAN decompression through sagittal split osteotomy in case of dysesthesia after overfilling of endodontic material into the mandibular canal. Dysesthesia recovered 3 months after surgical treatment.

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