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特发性面神经麻痹研究用面神经损伤大鼠模型的建立。

Establishment of Facial Nerve Injury Rat Model for Idiopathic Facial Paralysis Research.

机构信息

Department of Neurosurgery, Xinhua Hospital Affiliated to Shanghai Jiaotong University School of Medicine; The Cranial Nerve Disease Center, Shanghai Jiaotong University.

Department of Neurosurgery, Affiliated Nanjing Brain Hospital, Nanjing Medical University.

出版信息

J Vis Exp. 2024 May 31(207). doi: 10.3791/66258.

Abstract

Idiopathic facial paralysis is the most common type of facial nerve injury, accounting for approximately 70% of peripheral facial paralysis cases. This disease can not only lead to a change in facial expression but also greatly impact the psychology of patients. In severe cases, it can affect the normal work and life of patients. Therefore, the research on facial nerve injury repair has important clinical significance. In order to study the mechanism of this disease, it is necessary to carry out relevant animal experiments, among which the most important task is to establish an animal model with the same pathogenesis as human disease. The compression of the facial nerve within the petrous bone, especially the nerve trunk at the junction of the distal end of the internal auditory canal and the labyrinthine segment, is the pathogenesis of idiopathic facial paralysis. In order to simulate this common disease, a compression injury model of the main extracranial segment of the facial nerve was established in this study. The neurological damage was evaluated by behavioral, neuroelectrophysiological, and histological examination. Finally, 50 g constant force and 90 s clamp injury were selected as the injury parameters to construct a stable idiopathic facial paralysis model.

摘要

特发性面瘫是面神经损伤中最常见的类型,约占周围性面瘫病例的 70%。这种疾病不仅会导致面部表情的改变,还会极大地影响患者的心理。在严重的情况下,它会影响患者的正常工作和生活。因此,对面神经损伤修复的研究具有重要的临床意义。为了研究这种疾病的机制,有必要进行相关的动物实验,其中最重要的任务是建立一种与人类疾病具有相同发病机制的动物模型。面神经在颞骨内受压,特别是在内耳道口末端和迷路段交界处的神经干,是特发性面瘫的发病机制。为了模拟这种常见疾病,本研究建立了面神经主要颅外段的压迫性损伤模型。通过行为、神经电生理和组织学检查来评估神经损伤。最后,选择 50g 恒定力和 90s 夹伤作为损伤参数,构建稳定的特发性面瘫模型。

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