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一种通过同时双侧监测大鼠眼睑和触须运动来研究面神经功能的系统。

A system for studying facial nerve function in rats through simultaneous bilateral monitoring of eyelid and whisker movements.

作者信息

Heaton James T, Kowaleski Jeffrey M, Bermejo Roberto, Zeigler H Philip, Ahlgren David J, Hadlock Tessa A

机构信息

Department of Surgery, Harvard Medical School, Massachusetts General Hospital, Boston, MA 02114, United States.

出版信息

J Neurosci Methods. 2008 Jun 30;171(2):197-206. doi: 10.1016/j.jneumeth.2008.02.023. Epub 2008 Mar 22.

Abstract

The occurrence of inappropriate co-contraction (synkinesis) of facially innervated muscles in humans is a common sequela of facial nerve injury and recovery. We have developed a system for studying facial nerve function and synkinesis in restrained rats using non-contact opto-electronic techniques that enable simultaneous bilateral monitoring of eyelid and whisker movements. Whisking is monitored in high spatio-temporal resolution using laser micrometers, and eyelid movements are detected using infrared diode and phototransistor pairs that respond to the increased reflection when the eyelids cover the cornea. To validate the system, 8 rats were tested with multiple 5-min sessions that included corneal air puffs to elicit blink and scented air flows to elicit robust whisking. Four rats then received unilateral facial nerve section and were tested at weeks 3-6. Whisking and eye blink behavior occurred both spontaneously and under stimulus control, with no detectable difference from published whisking data. Proximal facial nerve section caused an immediate ipsilateral loss of whisking and eye blink response, but some ocular closures emerged due to retractor bulbi muscle function. The independence observed between whisker and eyelid control indicates that this system may provide a powerful tool for identifying abnormal co-activation of facial zones resulting from aberrant axonal regeneration.

摘要

人类面部神经损伤和恢复后,面部神经支配的肌肉出现不适当的共同收缩(联带运动)是常见的后遗症。我们开发了一种系统,用于研究束缚状态下大鼠的面神经功能和联带运动,该系统使用非接触式光电技术,能够同时对双侧眼睑和触须运动进行监测。使用激光微米仪以高时空分辨率监测触须运动,使用红外二极管和光电晶体管对检测眼睑运动,当眼睑覆盖角膜时,它们会对反射增加做出反应。为验证该系统,对8只大鼠进行了多次5分钟的测试,测试内容包括角膜吹气以引发眨眼,以及有气味的气流以引发强烈的触须运动。然后,4只大鼠接受了单侧面神经切断术,并在第3至6周进行测试。触须运动和眨眼行为在自发状态和刺激控制下均会出现,与已发表的触须运动数据无明显差异。面神经近端切断导致同侧立即丧失触须运动和眨眼反应,但由于眼球退缩肌功能,仍会出现一些眼睑闭合情况。触须和眼睑控制之间的独立性表明,该系统可能为识别异常轴突再生导致的面部区域异常共同激活提供一个强大的工具。

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