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猴上丘的组织架构:眼动前放电的中间层细胞

Organization of monkey superior colliculus: intermediate layer cells discharging before eye movements.

作者信息

Mohler C W, Wurtz R H

出版信息

J Neurophysiol. 1976 Jul;39(4):722-44. doi: 10.1152/jn.1976.39.4.722.

Abstract
  1. We investigated the characteristics of cells in the intermediate layers of the superior colliculus that increase their rate of discharge before saccadic eye movements. Eye movements were repeatedly elicited by training rhesus monkeys to fixate on a spot of light and to make saccades to other spots of light when the fixation spot was turned off. 2. The eye movement cells showed consistent variations with their depth within the colliculus. The onset of the cell discharge led the eye movement by less time and the duration of the discharge was shorter as the cell was located closer to the dorsal edge of the intermediate layers. The movements fields (that area of the visual field where a saccade into the area is preceded by a burst of cell discharges) of each successive cell also became smaller as the cells were located more dorsally. The profile of peak discharge frequency remained fairly flat throughout the movement field of the cells regardless of depth of the cell within the colliculus. 3. A new type of eye movement-related cell has been found which usually lies at the border between the superficial and intermediate layers. This cell type, the visually triggered movement cell, increased its rate of discharge before saccades made to a visual stimulus but not before spontaneous saccades of equal amplitude made in the light or the dark. A vigorous discharge of these cells before an eye movement was dependent on the presence of a visual target; the cells seemed to combine the visual input of superficial layer cells and the movement-related input of the intermediate layer cells. The size of the movement fields of these cells were about the same size as the visual fields of superficial layer cells just above them...
摘要
  1. 我们研究了上丘中间层中在眼球快速跳动之前放电频率增加的细胞的特征。通过训练恒河猴注视一个光点,并在注视点熄灭时向其他光点进行快速眼动,反复诱发眼动。2. 眼动细胞在丘脑中的深度呈现出一致的变化。随着细胞位置更靠近中间层的背侧边缘,细胞放电的起始领先于眼动的时间更短,放电持续时间也更短。随着细胞位置更靠背侧,每个连续细胞的运动视野(即扫视进入该区域之前细胞放电爆发的视野区域)也变得更小。无论细胞在丘脑中的深度如何,细胞放电频率峰值的分布在整个细胞运动视野中都保持相当平坦。3. 发现了一种新型的与眼动相关的细胞,它通常位于浅层和中间层之间的边界处。这种细胞类型,即视觉触发运动细胞,在对视觉刺激进行扫视之前放电频率增加,但在明或暗中进行等幅自发扫视之前则不会增加。这些细胞在眼动之前的强烈放电依赖于视觉目标的存在;这些细胞似乎结合了浅层细胞的视觉输入和中间层细胞的运动相关输入。这些细胞的运动视野大小与它们上方浅层细胞的视野大小大致相同……

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