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前庭代偿过程中的视觉-前庭相互作用:顶盖前区在恒河猴半规管切除术后水平眼动前庭反射恢复中的作用

Visual-vestibular interactions during vestibular compensation: role of the pretectal not in horizontal VOR recovery after hemilabyrinthectomy in rhesus monkey.

作者信息

Stewart C Matthew, Mustari Michael J, Perachio Adrian A

机构信息

Department of Otolaryngology, University of Texas Medical Branch, Galveston, 77555-0130, USA.

出版信息

J Neurophysiol. 2005 Oct;94(4):2653-66. doi: 10.1152/jn.00739.2004. Epub 2005 Mar 9.

Abstract

Damage to the vestibular labyrinth leads to profound nystagmus and vertigo. Over time, the vestibular-ocular system recovers in a process called vestibular compensation leading to reduced nystagmus and vertigo provided visual signals are available. Our study was directed at identifying sources of visual information that could play a role in vestibular compensation. Specifically, we investigated the role of the pretectal nucleus of the optic tract (NOT) in vestibular compensation after hemilabyrinthectomy (HL) in rhesus monkeys. We chose the NOT because this structure provides critical visual motion information for adaptive modification of the vestibular ocular reflex (VOR). We produced bilateral NOT lesions by injecting the excitotoxin ibotenic acid. We compared vestibular compensation after HL in NOT-lesioned and control animals with intact NOTs. We measured eye movements with an electromagnetic method employing scleral search coils. Measurements included slow-phase eye velocity during spontaneous nystagmus, per- and postrotatory nystagmus and the horizontal VOR (hVOR) gain (eye-velocity/head velocity) associated with per- and postrotatory and sinusoidal (0.2-2.0 Hz; 30-90 degrees/s) whole body oscillation around the earth-vertical axis. VOR gain was low (<0.5) for rotation toward the HL side. Our control animal evinced significant vestibular compensation with VOR gains approaching unity by 100 days post HL. In contrast, monkeys with bilateral lesions of the NOT never obtained this significant recovery with hVOR gains well below unity at 100 days and beyond. Therefore our studies demonstrate that the NOT is an essential source of visual signals for the process of vestibular compensation after HL.

摘要

前庭迷路受损会导致严重的眼球震颤和眩晕。随着时间推移,前庭眼系统会在一个称为前庭代偿的过程中恢复,只要有视觉信号,眼球震颤和眩晕就会减轻。我们的研究旨在确定可能在前庭代偿中发挥作用的视觉信息来源。具体而言,我们研究了视束前顶盖核(NOT)在恒河猴半规管切除术后(HL)前庭代偿中的作用。我们选择NOT是因为该结构为前庭眼反射(VOR)的适应性调节提供关键的视觉运动信息。我们通过注射兴奋性毒素鹅膏蕈氨酸制造双侧NOT损伤。我们比较了NOT损伤动物和NOT完整的对照动物在HL后的前庭代偿情况。我们使用巩膜搜索线圈的电磁方法测量眼球运动。测量包括自发眼球震颤期间的慢相眼球速度、旋转前后的眼球震颤以及与旋转前后和正弦(0.2 - 2.0 Hz;30 - 90度/秒)绕地球垂直轴的全身振荡相关的水平VOR(hVOR)增益(眼球速度/头部速度)。向HL侧旋转时VOR增益较低(<0.5)。我们的对照动物在HL后100天表现出显著的前庭代偿,VOR增益接近1。相比之下,NOT双侧损伤的猴子在100天及以后hVOR增益远低于1,从未获得这种显著恢复。因此,我们的研究表明,NOT是HL后前庭代偿过程中视觉信号的重要来源。

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