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训练恒河猴中介导水平前庭眼反射的前庭核神经元的生理和行为鉴定

Physiological and behavioral identification of vestibular nucleus neurons mediating the horizontal vestibuloocular reflex in trained rhesus monkeys.

作者信息

Scudder C A, Fuchs A F

机构信息

Department of Physiology and Biophysics, University of Washington, Seattle 98195.

出版信息

J Neurophysiol. 1992 Jul;68(1):244-64. doi: 10.1152/jn.1992.68.1.244.

Abstract
  1. To describe in detail the secondary neurons of the horizontal vestibuloocular reflex (VOR), we recorded the extracellular activity of neurons in the rostral medial vestibular nucleus of alert, trained rhesus monkeys. On the basis of their activity during horizontal head and eye movements, neurons were divided into several different types. Position-vestibular-pause (PVP) units discharged in relation to head velocity, eye velocity, eye position, and ceased firing during some saccades. Eye and head velocity (EHV) units discharged in relation to eye velocity and head velocity in the same direction so that the two signals partially canceled during the VOR. Two cell types discharged in relation to eye position and velocity but not head velocity; other types discharged in relation to head velocity only. 2. The position in the neural path from the primary vestibular afferents to abducens motoneurons was examined for each type. Direct input from the vestibular nerve was indicated if the cell could be activated by shocks to the nerve at latencies less than or equal to 1.4 ms. A projection to abducens motoneurons was indicated if spike-triggered averaging of lateral rectus electromyographic (EMG) activity yielded responses with a sharp onset at monosynaptic latencies. 3. PVP neurons were the principal interneuron in the VOR "three-neuron arc." Eighty percent received primary afferent input, and 66% made excitatory connections with contralateral abducens motoneurons. Surprisingly few, approximately 11%, made inhibitory connections with ipsilateral abducens motoneurons. This imbalance in the ipsi- and contralateral projections was confirmed by measuring the EMG activity evoked by electrical microstimulation in regions where PVP neurons were located. 4. EHV neurons whose activity increased during contralaterally directed head or eye movements were also interneurons in the ipsilateral inhibitory pathway. Eighty-nine percent received ipsilateral primary afferent input, and 25% projected to ipsilateral abducens motoneurons. EHV neurons excited during ipsilateral movements received neither direct primary afferent input nor projected to either abducens nucleus. A small proportion of each of two other cell types having sensitivity to contralateral eye position made excitatory connections with contralateral abducens motoneurons. Other types rarely were activated from the eighth nerve or projected to the abducens nucleus. 5. The significance of the connections of VOR interneurons and the signals they convey is discussed for three situations: smooth pursuit of a moving target, suppression of the VOR, and the VOR itself. PVP neurons convey a signal with a ratio of eye position and velocity components that is inappropriate to drive motoneurons during pursuit or the VOR.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 为了详细描述水平前庭眼反射(VOR)的次级神经元,我们记录了警觉、受过训练的恒河猴延髓内侧前庭核中神经元的细胞外活动。根据它们在水平头部和眼球运动期间的活动,神经元被分为几种不同类型。位置 - 前庭 - 暂停(PVP)单位根据头部速度、眼球速度、眼球位置发放冲动,并在某些扫视期间停止放电。眼球和头部速度(EHV)单位根据眼球速度和相同方向的头部速度发放冲动,因此在VOR期间这两个信号部分抵消。有两种细胞类型根据眼球位置和速度发放冲动,但与头部速度无关;其他类型仅根据头部速度发放冲动。2. 对从初级前庭传入神经到展神经运动神经元的神经通路中的每种类型进行了定位研究。如果细胞能够在潜伏期小于或等于1.4毫秒时被神经电击激活,则表明有来自前庭神经的直接输入。如果对侧直肌肌电图(EMG)活动的触发尖峰平均在单突触潜伏期产生快速起始的反应,则表明有向展神经运动神经元的投射。3. PVP神经元是VOR“三神经元弧”中的主要中间神经元。80%接受初级传入输入,66%与对侧展神经运动神经元建立兴奋性连接。令人惊讶的是,只有约11%与同侧展神经运动神经元建立抑制性连接。通过测量PVP神经元所在区域电微刺激诱发的EMG活动,证实了同侧和对侧投射的这种不平衡。4. 在对侧方向的头部或眼球运动期间活动增加的EHV神经元也是同侧抑制性通路中的中间神经元。89%接受同侧初级传入输入,25%投射到同侧展神经运动神经元。在同侧运动期间兴奋的EHV神经元既不接受直接的初级传入输入,也不投射到任何一个展神经核。另外两种对侧眼球位置敏感的细胞类型中,每种类型的一小部分与对侧展神经运动神经元建立兴奋性连接。其他类型很少被第八神经激活或投射到展神经核。5. 针对三种情况讨论了VOR中间神经元的连接及其传递的信号的意义:对移动目标的平稳跟踪、VOR的抑制以及VOR本身。PVP神经元传递的信号中,眼球位置和速度成分的比例在跟踪或VOR期间不适于驱动运动神经元。(摘要截选至四百字)

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