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猕猴在平稳跟踪眼球运动期间绒球中的眼球位置信号。

Eye position signals in the flocculus of the monkey during smooth-pursuit eye movements.

作者信息

Noda H, Warabi T

出版信息

J Physiol. 1982 Mar;324:187-202. doi: 10.1113/jphysiol.1982.sp014106.

Abstract
  1. Discharges of Purkinje cells and mossy fibres were recorded from the flocculus of monkeys trained to fixate a small visual target and to track the target when it moved slowly.2. Discharges of Purkinje cells changed tonically with shifts of gaze. Firing rates were linearly related to eye positions for either the entire or more than half the eye-position range in 12.6% of Purkinje cells tested (76/603 units).3. The eye position-related activity (position component) was observable in these cells also during smooth-pursuit eye movements. It was typically seen during slow eye movements (velocities less than 10 deg/s) but became undetectable during high velocity movements (faster than 50 deg/s).4. The position component became prominent when smooth pursuit was executed at the preferred loci of the individual cells. In the majority of the cells tested at their preferred loci, the position component was observable to a relatively high frequency, such as 0.5 Hz (+/- 10 deg; peak velocity 31 deg/s).5. Forty-five mossy fibre units showed saccade-related bursts and position-related intersaccadic tonic activity during steady eye position. In each unit, the position component was found only during fixations within a specific range of eye positions. During fixations outside these regions, all position-related mossy fibres were completely silent.6. During sinusoidal smooth-pursuit eye movements, the mossy fibres also displayed cyclic modulations in activity. All fibres discharged with eye movements in one direction and were silent during eye movements in the other direction.7. Saccade-related bursts from mossy fibres led the onset of saccades, ranging from 0 to 19 ms with a mean lead-time of 6.9 ms. This observation negates the possibility that the position-related signals might represent proprioceptive impulses from the stretch receptors of the extraocular muscle.
摘要
  1. 从训练过的猴子的小脑绒球记录浦肯野细胞和苔藓纤维的放电情况,这些猴子被训练注视一个小视觉目标,并在目标缓慢移动时跟踪它。

  2. 浦肯野细胞的放电随着注视的移动而呈紧张性变化。在测试的浦肯野细胞中,12.6%(76/603个单位)的细胞,其发放率与整个或超过一半的眼位范围的眼位呈线性相关。

  3. 在平稳跟踪眼球运动期间,这些细胞中也可观察到与眼位相关的活动(位置成分)。它通常在眼球缓慢运动期间(速度小于10度/秒)出现,但在高速运动期间(速度超过50度/秒)变得无法检测到。

  4. 当在单个细胞的偏好位点进行平稳跟踪时,位置成分变得突出。在其偏好位点测试的大多数细胞中,位置成分以相对较高的频率(如0.5赫兹)(±10度;峰值速度31度/秒)可观察到。

  5. 45个苔藓纤维单位在稳定眼位期间显示与扫视相关的爆发和与位置相关的扫视间紧张性活动。在每个单位中,仅在特定眼位范围内的注视期间发现位置成分。在这些区域之外的注视期间,所有与位置相关的苔藓纤维完全沉默。

  6. 在正弦平稳跟踪眼球运动期间,苔藓纤维的活动也表现出周期性调制。所有纤维在眼球向一个方向运动时放电,而在眼球向另一个方向运动时沉默。

  7. 苔藓纤维与扫视相关的爆发领先于扫视的开始,范围从0到19毫秒,平均领先时间为6.9毫秒。这一观察结果排除了位置相关信号可能代表来自眼外肌牵张感受器的本体感受冲动的可能性。

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J Physiol. 1969 Feb;200(3):713-22. doi: 10.1113/jphysiol.1969.sp008718.
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The mechanism of downbeat nystagmus.下跳性眼球震颤的机制。
Arch Neurol. 1974 Mar;30(3):227-37. doi: 10.1001/archneur.1974.00490330035006.

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