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猫内侧前庭核中与眼球震颤慢相和快相相关的运动前神经元的功能组织

Functional organization of premotor neurons in the cat medial vestibular nucleus related to slow and fast phases of nystagmus.

作者信息

Nakao S, Sasaki S, Schor R H, Shimazu H

出版信息

Exp Brain Res. 1982;45(3):371-85. doi: 10.1007/BF01208597.

Abstract

Extracellular spikes were recorded from secondary vestibular neurons in the cat medial vestibular nucleus (MVN) and were identified as type I or II neurons by horizontal rotation. Type I neurons were further classified as excitatory or inhibitory premotor neurons on the basis of their axonal termination in the contralateral or ipsilateral abducens nucleus, demonstrated by spike-triggered averaging of abducens nerve discharges, or by antidromic activation using systematic microstimulation within the abducens nucleus. Both excitatory and inhibitory premotor type I MVN neurons exhibited a rhythmic modulation of their firing rate in association with nystagmus elicited by rotation or electrical stimulation of the vestibular nerve. Their tonic activity during the slow phase was suppressed at the quick phase directed to the ipsilateral side. Excitatory type I MVN neurons terminating in the contralateral abducens nucleus sent collateral axons to the contralateral MVN. These commissural neurons also showed a nystagmus-related discharge pattern. Type II MVN neurons activated at short latency by stimulation of the contralateral vestibular nerve exhibited burst discharges when the activity of ipsilateral type I neurons was suppressed at the quick phase. These type II neurons made monosynaptic inhibitory connection with type I neurons as shown by the post-spike average of the membrane potential of secondary MVN neurons triggered from spikes of single type II neurons. Thus, the inhibitory action originating from burst activity of type II MVN neurons contributes to suppression of type I premotor MVN neurons during fast eye movements.

摘要

从猫内侧前庭核(MVN)的次级前庭神经元记录细胞外锋电位,并通过水平旋转将其鉴定为I型或II型神经元。根据其轴突在对侧或同侧展神经核的终止情况,I型神经元进一步分为兴奋性或抑制性运动前神经元,这通过展神经放电的锋电位触发平均法或通过在展神经核内进行系统微刺激的逆向激活来证明。兴奋性和抑制性运动前I型MVN神经元在与旋转或前庭神经电刺激诱发的眼球震颤相关时,其放电频率均呈现节律性调制。它们在慢相期间的紧张性活动在快相指向同侧时受到抑制。终止于对侧展神经核的兴奋性I型MVN神经元向对侧MVN发出侧支轴突。这些连合神经元也表现出与眼球震颤相关的放电模式。当同侧I型神经元的活动在快相受到抑制时,通过对侧前庭神经刺激在短潜伏期激活的II型MVN神经元会出现爆发性放电。如从单个II型神经元的锋电位触发的次级MVN神经元膜电位的锋电位后平均值所示,这些II型神经元与I型神经元形成单突触抑制性连接。因此,II型MVN神经元爆发性活动产生的抑制作用有助于在快速眼动期间抑制I型运动前MVN神经元。

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