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大鼠视神经逆行性轴突退变中复合动作电位的变化

Changes of compound action potentials in retrograde axonal degeneration of rat optic nerve.

作者信息

Sugioka M, Sawai H, Adachi E, Fukuda Y

机构信息

Department of Physiology, Osaka University Medical School, Japan.

出版信息

Exp Neurol. 1995 Apr;132(2):262-70. doi: 10.1016/0014-4886(95)90031-4.

Abstract

Electrophysiological recordings of compound action potentials (CAPs) were made from the optic nerve (ON) following unilateral optic tract (OT) transection in adult rats. In response to optic chiasm stimulation CAPs recorded from the ON ipsilateral to the transected OT, i.e., the ON of control side, revealed three positive waves, termed n1, n2, and n3 components, corresponding to fast-, intermediate-, and slow-conducting fibers. Two weeks after OT transection, CAPs recorded from the ON contralateral to the transected OT, i.e., the ON of cut side, were generally smaller in amplitude than those recorded from the ON of control side. The degree of amplitude reduction was different among three components; n3 component was severely reduced and n2 component was moderately reduced, whereas n1 component relatively persisted. These tendencies were more marked in CAPs recorded at 4 weeks after OT transection; n3 component disappeared, whereas n1 and n2 components decreased in amplitude with elongation of latency. Cross sections of the ON after unilateral OT transection were examined electron microscopically, in which significant decrease in fiber density, demyelination, and distorted fibers were verified in the cut side. The present study suggests that slower-conducting ON fibers, that is, smaller-diameter ON fibers are initially and remarkably thrown into retrograde degeneration, while larger-diameter ON fibers are relatively resistant to axotomy.

摘要

在成年大鼠单侧视束(OT)横断后,从视神经(ON)记录复合动作电位(CAPs)的电生理情况。响应视交叉刺激,在横断OT同侧的ON(即对照侧的ON)记录的CAPs显示出三个正向波,称为n1、n2和n3成分,分别对应快传导、中传导和慢传导纤维。OT横断两周后,在横断OT对侧的ON(即切断侧的ON)记录的CAPs,其振幅通常比对照侧ON记录的CAPs小。三个成分的振幅降低程度不同;n3成分严重降低,n2成分中度降低,而n1成分相对保留。这些趋势在OT横断4周时记录的CAPs中更为明显;n3成分消失,而n1和n2成分的振幅随潜伏期延长而降低。对单侧OT横断后的ON横断面进行电子显微镜检查,结果证实切断侧的纤维密度显著降低、脱髓鞘以及纤维扭曲。本研究表明,传导较慢的ON纤维,即直径较小的ON纤维最初会明显发生逆行性变性,而直径较大的ON纤维对轴突切断相对具有抗性。

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