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半规管堵塞后清醒猫的次级前庭神经元的连合传入

Commissural inputs to secondary vestibular neurons in alert cats after canal plugs.

作者信息

Farrow Karl, Broussard Dianne M

机构信息

Department of Physiology, University of Toronto, Toronto, Ontario M5T 2S8, Canada.

出版信息

J Neurophysiol. 2003 Jun;89(6):3351-3. doi: 10.1152/jn.01060.2002.

Abstract

Gaze is stabilized during head movements primarily by the vestibuloocular reflex (VOR). After a unilateral canal plug, the VOR's response is reduced. Recovery of the VOR may be brought about by changes in the efficacy of brain stem synapses or by other mechanisms. We measured the responses of horizontal secondary vestibular neurons (HSNs) to stimulation of the contralateral labyrinth. HSN responses in normal alert cats were compared with those in cats that had recovered from unilateral horizontal semicircular canal (HSCC) plugs. After recovery, excitatory commissural inputs to HSNs on the plugged side elicited significantly smaller responses than in normal cats with no change in mean discharge rates. However, mean discharge rates tended to be higher after recovery for cells receiving inhibitory commissural inputs. The change in resting rate invalidates any direct comparison of inhibitory inputs. These results are interpreted in terms of possible mechanisms for recovery from unilateral vestibular loss by the VOR neural network. We conclude that after unilateral HSCC plugs, changes in brain stem excitatory synapses and/or excitability of secondary vestibular neurons may participate in the restoration of normal vestibular reflexes.

摘要

在头部运动过程中,注视主要通过前庭眼反射(VOR)得以稳定。单侧半规管堵塞后,VOR的反应会减弱。VOR的恢复可能是由脑干突触效能的变化或其他机制引起的。我们测量了水平次级前庭神经元(HSN)对侧迷路刺激的反应。将正常警觉猫的HSN反应与单侧水平半规管(HSCC)堵塞后恢复的猫的反应进行了比较。恢复后,堵塞侧HSN的兴奋性连合输入引发的反应明显小于正常猫,且平均放电率没有变化。然而,对于接受抑制性连合输入的细胞,恢复后的平均放电率往往更高。静息率的变化使对抑制性输入的任何直接比较都无效。这些结果根据VOR神经网络从单侧前庭损失中恢复的可能机制进行了解释。我们得出结论,单侧HSCC堵塞后,脑干兴奋性突触的变化和/或次级前庭神经元的兴奋性可能参与了正常前庭反射的恢复。

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