• 제목/요약/키워드: abducens nerve injury

검색결과 5건 처리시간 0.021초

두개저 골절과 동반된 외상성 양측성 외전신경 마비 1례 (A Case of Traumatic Bilateral Abducens Nerve Palsy Associated with Skull Base Fracture)

  • 황정인;조진성;이승철;이정훈
    • Journal of Trauma and Injury
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    • 제21권1호
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    • pp.66-69
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    • 2008
  • Traumatic bilateral abducens nerve palsy is rare and is associated with intracranial, skull and cervical spine injuries. We report a case of bilateral abducens nerve palsy in a 40-month-old patient with a skull base fracture. The injury mechanism was associated with direct nerve injury caused by a right petrous bone fracture and indirect injury by frontal impact on the abducens nerve at the point of fixation to the petrous portion and Dorello's canal. The emergency physician should be aware of injuries and the mechanism of abducens nerve palsy in head trauma.

Diplopia developed by cervical traction after cervical spine surgery

  • Kim, Ji-Yoon;Kim, Hyuna;Kang, So Jeong;Kim, Hyunjee;Lee, Young-Seok
    • Journal of Yeungnam Medical Science
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    • 제38권2호
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    • pp.152-156
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    • 2021
  • Diplopia is a rare complication of spine surgery. The abducens nerve is one of the cranial nerves most commonly related to diplopia caused by traction injury. We report a case of a 71-year-old woman who presented with diplopia developing from abducens nerve palsy after C1-C2 fixation and fusion due to atlantoaxial subluxation with cord compression. As soon as we discovered the symptoms, we suspected excessive traction by the instrument and subsequently performed reoperation. Subsequently, the patient's symptoms improved. In other reported cases we reviewed, most were transient. However, we thought that our rapid response also helped the patient's fast recovery in this case. The mechanisms by which postoperative diplopia develops vary and, thus, remain unclear. We should pay attention to the fact that the condition is sometimes an indicator of an underlying, life-threatening condition. Therefore, all patients with postoperative diplopia should undergo thorough ophthalmological and neurological evaluations as well as careful observation by a multidisciplinary team.

터어키안 주변종양에 대한 감마나이프 방사선 수술 (Gamma Knife Radiosurgery for Juxtasellar Tumors)

  • 장종희;장진우;박용구;정상섭
    • Journal of Korean Neurosurgical Society
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    • 제29권10호
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    • pp.1345-1351
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    • 2000
  • Objective : Around the sellar area, there are many important structures. But, the optimal radiation dosage for minimal toxicity to surrounding neural tissue has not been firmly established. The purpose of this study is to evaluate the radiosurgical outcome of juxtasellar tumors and to investigate the relationship between radiation dosage and toxicity to neural tissue. Method : Between May 1992 and June 2000, we treated 65 juxtasellar tumors by using the Leksell Gamma Knife. Among them, 52 patients who could be followed more than 1 year were included in this study. The radiosurgical dosage to the optic pathway, cavernous sinus, Meckel's cave, hypothalamus, pituitary gland and stalk, and brain stem was analyzed and correlated with clinical outcome. The mean follow-up period was 33.5 months(range 12.2- 99.0 months). Result : The clinical response rate was 69.2%. The volume response rate was 61.0% and the radiologic control rate was 92.7%. There were 4 complications(7.7%) of 2 trigeminal neuropathy, 1 abducens nerve palsy, and 1 trigeminal and transient abducens nerve palsy. The optic apparatus appeared to tolerate doses greater than 10Gy. The risk of cranial nerve complications in cavernous sinus seemed to be related to doses of more than 16Gy. In 3 of 4 patients who received more than 16Gy to cavernous sinus, the abducens or trigeminal neuropathy occurred. Also, one patient who received more than 15Gy to the Meckel's cave, trigeminal neuropathy developed. The hypothalamus, pituitary gland and stalk, and brain stem were relatively tolerable to radiation. Conclusion : Gamma Knife radiosurgery seems to be an effective method to control the growth of juxtasellar tumors. To avoid injury to surrounding important neural tissue, careful dose planning and further study for radiation toxicity to neural tissue were needed.

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키아리 1형 기형을 동반한 고도 척추 측만증에서 수술 전 Halo-Pelvic 견인 후 발생한 6번 뇌신경(외전신경) 마비 (Sixth Cranial Nerve (Abducens Nerve) Palsy after Preoperative Halo-Pelvic Traction for Severe Scoliosis with Chiari I Malformation)

  • 황재광;이춘성;최신우;김정환
    • 대한정형외과학회지
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    • 제55권6호
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    • pp.534-539
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    • 2020
  • 고도 척추 측만증의 치료는 척추외과 의사에게 어려운 과제로 남아있다. 고도 척추 측만증의 수술 시 급격한 교정은 신경학적 손상이나 기구 실패 등의 수술 중 합병증의 위험을 증가시킬 수 있다. 이러한 합병증을 최소화하기 위해 최종 수술을 시행하기에 앞서 부분 교정을 얻기 위한 다양한 수술 전 견인법들이 사용되고 있다. 하지만 이전 연구에 의하면 halo 견인과 관련한 합병증의 하나로 뇌신경 마비가 발생할 수 있으며 대표적으로 6번 뇌신경(외전신경)의 마비가 가장 흔하게 나타난다. 이러한 합병증을 줄이기 위해 견인 무게의 점진적 증량이나 세심한 신경학적 검진이 필요하며 특히 이전에 뇌수술이나 경추부 수술을 시행한 경우에는 더욱 주의가 필요할 수 있다. 저자들은 이전에 키아리 1형 기형과 관련하여 감압술을 시행했던 고도 척추 측만증에서 수술 전 halo-pelvic 견인에 의한 6번 뇌신경 마비의 증례를 경험하였기에 문헌 고찰과 함께 보고하고자 한다.

안와골절 수술 후 발생한 신경손상 (Nerve Injuries after the Operations of Orbital Blow-out Fracture)

  • 최재일;이성표;지소영;양완석
    • 대한두개안면성형외과학회지
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    • 제11권1호
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    • pp.28-32
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    • 2010
  • Purpose: In accordance with the increasing number of accidents caused by various reasons and recently developed fine diagnostic skills, the incidence of orbital blow-out fracture cases is increasing. As it causes complications, such as diplopia and enophthalmos, surgical reduction is commonly required. This article reports a retrospective series of 5 blow-out fracture cases that had unusual nerve injuries after reduction operations. We represents the clinical experiences about treatment process and follow-up. Methods: From January 2000 to August 2009, we treated total 705 blow-out fracture patients. Among them, there were 5 patients (0.71%) who suffered from postoperative neurologic complications. In all patients, the surgery was performed with open reduction with insertion of $Medpor^{(R)}$. Clinical symptoms and signs were a little different from each other. Results: In case 1, the diagnosis was oculomotor nerve palsy. The diagnosis of the case 2 was superior orbital fissure syndrome, case 3 was abducens nerve palsy, and case 4 was idiopathic supraorbital nerve injury. The last case 5 was diagnosed as optic neuropathy. Most of the causes were extended fracture, especially accompanied with medial and inferomedial orbital blow-out fracture. Extensive dissection and eyeball swelling, and over-retraction by assistants were also one of the causes. Immediately, we performed reexploration procedure to remove hematomas, decompress and check the incarceration. After that, we checked VEP (visual evoked potential), visual field test, electromyogram. With ophthalmologic test and followup CT, we can rule out the orbital apex syndrome. We gave $Salon^{(R)}$ (methylprednisolone, Hanlim pharmaceuticals) 500 mg twice a day for 3 days and let them bed rest. After that, we were tapering the high dose steroid with $Methylon^{(R)}$ (methylprednisolon 4 mg, Kunwha pharmaceuticals) 20 mg three times a day. Usually, it takes 1.2 months to recover from the nerve injury. Conclusion: According to the extent of nerve injury after the surgery of orbital blow-out fracture, the clinical symptoms were different. The most important point is to decide quickly whether the optic nerve injury occurred or not. Therefore, it is necess is to diagnose the nerve injury immediately, perform reexploration for decompression and use corticosteroid adequately. In other words, the early diagnosis and treatment is most important.