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灵长类动物小脑绒球在前庭眼反射快速行为改变中的作用。I. 视觉引导的水平平滑追踪眼球运动和被动头部旋转过程中的浦肯野细胞活动。

Role of primate flocculus during rapid behavioral modification of vestibuloocular reflex. I. Purkinje cell activity during visually guided horizontal smooth-pursuit eye movements and passive head rotation.

作者信息

Lisberger S G, Fuchs A F

出版信息

J Neurophysiol. 1978 May;41(3):733-63. doi: 10.1152/jn.1978.41.3.733.

DOI:10.1152/jn.1978.41.3.733
PMID:96225
Abstract
  1. Extracellular recordings were obtained from 124 Purkinje cells (P-cells) in the flocculus of alert monkeys. P-cell simple spike-firing rate was analyzed quantitatively during various combinations of smooth-pursuit eye movement and passive head rotation. 2. During sinusoidal smooth eye movements, 80% of the P-cells displayed increased firing rate during ipsilateral and 20% during contralateral eye movement. Over the frequency range 0.3--1.4 Hz, firing-rate modulation was proportional to and in phase with maximum eye velocity. During the steady state of triangle-wave tracking, firing rate increased monotonically as a function of eye velocity. Since firing rate was uncorrelated with retinal-error velocity, one component of P-cell firing rate was related to eye velocity. 3. During the transient phase of triangle-wave tracking, when an instantaneous change in the direction of target movement caused a large retinal-error velocity, 40% of the P-cells were related only to eye velocity. Sixty percent of the P-cells displayed an overshoot or undershoot in firing rate, indicating a relationship to either retinal-error velocity or eye acceleration as well as to eye velocity. 4. During the vestibuloocular reflex (VOR), evoked by head rotation in the dark, P-cell firing rate was only weakly modulated. In contrast, when the monkey suppressed the VOR by fixating a target that rotated with him, P-cell rate was deeply modulated. Since the modulation was proportional to and in phase with maximum head velocity, another component of P-cell firing rate was related to head velocity. 5. Of 36 P-cells tested, 35 displayed firing-rate modulation during both suppression of the VOR and smooth-pursuit eye movement. P-cells that reached peak firing rate during ipsilateral head rotation also reached peak firing rate during ipsilateral smooth eye rotation. Average population sensitivitites to head velocity and eye velocity were equal. In three conditions in which eye and head velocity were elicited simultaneously, P-cell firing rate could be predicted by the linear, vector addition of the separate eye and head velocity components of firing rate. Therefore, the relatively weak modulation of P-cell firing rate during the VOR in the dark can be accounted for by the cancellation of equal but opposite head and eye velocity components. 6. The connections of flocculus P-cells to interneurons in the brain stem VOR pathways have been established in other mammals. In the context of those connections, P-cell firing patterns were appropriate to facilitate the eye movements the monkey was required to make. We conclude that the flocculus is important for sustaining any smooth eye movements that are different from those evoked by head rotation in the dark. The eye velocity component may represent an efference copy signal that sustains ongoing eye velocity during smooth pursuit.
摘要
  1. 从清醒猴子的绒球中124个浦肯野细胞(P细胞)记录细胞外电活动。在平稳跟踪眼球运动和被动头部转动的不同组合过程中,对P细胞简单锋电位发放率进行了定量分析。2. 在正弦眼球平稳运动期间,80%的P细胞在同侧眼球运动时发放率增加,20%在对侧眼球运动时增加。在0.3 - 1.4赫兹频率范围内,发放率调制与最大眼球速度成正比且同相。在三角波跟踪的稳态期间,发放率随眼球速度单调增加。由于发放率与视网膜误差速度不相关,P细胞发放率的一个成分与眼球速度有关。3. 在三角波跟踪的瞬态阶段,当目标运动方向的瞬时变化导致大的视网膜误差速度时,40%的P细胞仅与眼球速度有关。60%的P细胞在发放率上出现超调或欠调,表明与视网膜误差速度或眼球加速度以及眼球速度有关。4. 在黑暗中头部转动诱发前庭眼反射(VOR)期间,P细胞发放率仅受到微弱调制。相反,当猴子通过注视与他一起转动的目标来抑制VOR时,P细胞发放率受到深度调制。由于调制与最大头部速度成正比且同相,P细胞发放率的另一个成分与头部速度有关。5. 在测试的36个P细胞中,35个在抑制VOR和平稳跟踪眼球运动期间均表现出发放率调制。在同侧头部转动时达到发放率峰值的P细胞,在同侧眼球平稳转动时也达到发放率峰值。对头部速度和眼球速度的平均群体敏感性相等。在同时诱发眼球和头部速度的三种情况下,P细胞发放率可以通过发放率的单独眼球和头部速度成分的线性矢量相加来预测。因此,黑暗中VOR期间P细胞发放率的相对微弱调制可以通过抵消相等但相反的头部和眼球速度成分来解释。6. 在其他哺乳动物中已经确定了绒球P细胞与脑干VOR通路中中间神经元的连接。在这些连接的背景下,P细胞发放模式适合于促进猴子所需进行的眼球运动。我们得出结论,绒球对于维持任何不同于黑暗中头部转动诱发的平稳眼球运动很重要。眼球速度成分可能代表一个传出副本信号,在平稳跟踪期间维持正在进行的眼球速度。

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