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在水平前庭眼反射的随意取消过程中脑干神经元的放电行为。II. 与眼动相关的神经元。

Firing behavior of brain stem neurons during voluntary cancellation of the horizontal vestibuloocular reflex. II. Eye movement related neurons.

作者信息

Cullen K E, Chen-Huang C, McCrea R A

机构信息

Department of Pharmacological and Physiological Sciences, University of Chicago, Illinois 60637.

出版信息

J Neurophysiol. 1993 Aug;70(2):844-56. doi: 10.1152/jn.1993.70.2.844.

DOI:10.1152/jn.1993.70.2.844
PMID:8410176
Abstract
  1. The single-unit activity of neurons in the vestibular nucleus, the prepositus nucleus, and the abducens nucleus, whose activity was primarily related to horizontal eye movements, was recorded in alert squirrel monkeys that were trained to track a small visual target by generating smooth pursuit eye movements and to cancel their horizontal vestibuloocular reflex (VOR) by fixating a head stationary target. 2. The spiking behavior of each cell was recorded during 1) spontaneous eye movements, 2) horizontal smooth pursuit of a target that was moved sinusoidally +/- 20 degrees/s at 0.5 Hz, 3) horizontal VOR evoked by 0.5-Hz sinusoidal turntable rotations +/- 40 degrees/s (VORs), and 4) voluntary cancellation of the VOR by fixation of a head-stationary target during 0.5-Hz sinusoidal turntable rotation at +/- 40 degrees/s (VORCs). The responses of most (28/42) of the units were recorded during unpredictable 100-ms steps in head acceleration (400 degrees/s2) that were generated while the monkey was fixating a target light. The acceleration steps were generated either when the monkey was stationary or when the turntable was already rotating (VORt trials), and the monkey was canceling its VOR (VORCt trials). 3. The firing behavior of all 12 of the abducens neurons recorded was closely related to horizontal eye position and eye velocity during all of the behavioral paradigms used, although there was a small but significant increase in the eye position sensitivity of many of these units when the eye was moving (smooth pursuit) versus when the eye was stationary (fixation). 4. Many neurons in the prepositus nucleus and the medial vestibular nucleus (n = 15) were similar to abducens neurons, in that their firing rate was related primarily to horizontal eye position and eye velocity, regardless of the behavioral paradigm used. These cells were, on average, more sensitive to eye position and smooth pursuit eye velocity than were abducens neurons. 5. The firing rate of 15 other neurons in the prepositus and medial vestibular nucleus was related primarily to horizontal smooth pursuit eye movements. The tonic firing rate of all of these smooth pursuit (SP) cells was related to horizontal eye position, and the majority generated bursts of spikes during saccades in all directions but their off direction. Six of the SP neurons fired in phase with ipsilateral eye movements, whereas the remaining nine were sensitive to eye movements in the opposite direction.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 在警觉的松鼠猴中记录了前庭核、前庭旁核和展神经核中神经元的单单位活动,这些神经元的活动主要与水平眼动有关。这些猴子经过训练,通过产生平稳跟踪眼动来跟踪一个小视觉目标,并通过注视头部固定的目标来消除其水平前庭眼反射(VOR)。2. 在以下情况下记录每个细胞的放电行为:1)自发眼动;2)以0.5Hz的频率正弦波式地±20度/秒移动目标时的水平平稳跟踪;3)0.5Hz正弦波式转盘旋转±40度/秒诱发的水平VOR(VORs);4)在±40度/秒的0.5Hz正弦波式转盘旋转过程中通过注视头部固定目标来主动消除VOR(VORCs)。在猴子注视目标光时产生的不可预测的100毫秒头部加速度(400度/秒²)步骤中,记录了大多数(28/42)单位的反应。加速度步骤在猴子静止时或转盘已经旋转时(VORt试验)产生,且猴子正在消除其VOR(VORCt试验)。3. 在所有使用的行为范式中,记录的所有12个展神经神经元的放电行为都与水平眼位和眼速度密切相关,尽管当眼睛移动(平稳跟踪)时与眼睛静止(注视)时相比,许多这些单位的眼位敏感性有小幅但显著的增加。4. 前庭旁核和内侧前庭核中的许多神经元(n = 15)与展神经神经元相似,即它们的放电率主要与水平眼位和眼速度有关,与所使用的行为范式无关。这些细胞平均而言,比展神经神经元对眼位和平稳跟踪眼速度更敏感。5. 前庭旁核和内侧前庭核中的另外15个神经元的放电率主要与水平平稳跟踪眼动有关。所有这些平稳跟踪(SP)细胞的紧张性放电率与水平眼位有关,并且大多数在除其脱离方向外的所有方向的扫视期间产生一串尖峰。6个SP神经元与同侧眼动同相放电,而其余9个对相反方向的眼动敏感。(摘要截断于400字)

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