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在伴有辐辏的扫视过程中与扫视相关的上丘神经元的放电。

Discharge of saccade-related superior colliculus neurons during saccades accompanied by vergence.

作者信息

Walton Mark M G, Mays Lawrence E

机构信息

Department of Psychology, University of Alabama, Birmingham 35294, USA.

出版信息

J Neurophysiol. 2003 Aug;90(2):1124-39. doi: 10.1152/jn.00877.2002.

Abstract

It has long been believed that the superior colliculus (SC) is involved in the production of saccades but plays no role in the generation of vergence eye movements. However, results from several recent studies suggest that it may be worthwhile to examine the role of the SC in saccade-vergence interactions. Specifically, the available literature suggests two questions: do saccade-related neurons in SC have three-dimensional movement fields and is the slowing of saccades by vergence attributable, in part, to changes in the level of activity in SC? Single-unit data were recorded from 51 saccade-related neurons in rhesus monkey SC during saccades without vergence, saccades accompanied by convergence, and saccades accompanied by divergence. Most cells (78% for convergence, 86% for divergence) showed a significant reduction in peak spike density when the saccade was accompanied by vergence. A minority of cells (16% for convergence, 2% for divergence) increased their firing rate for saccades accompanied by vergence. Three cells were found that discharged in association with saccades, vergence, and the combination of the two. There were no cells that exhibited the pattern of discharge that would be expected of a cell tuned for saccades with divergence. Thus the present results do not support the hypothesis that saccade-related SC neurons are, as a rule, tuned in three dimensions. Small, but significant, differences in firing rate were often found for saccades without vergence at near and far distances. Approximately half of the cells showed a significant relationship between spike activity and saccade velocity, but the correlations tended to be very weak. This suggests that the decreased neuronal activity of SC neurons has only a limited effect on saccade velocity. For some cells, the movement field shifted for saccades with vergence. These shifts were highly variable from one cell to another.

摘要

长期以来,人们一直认为上丘(SC)参与扫视运动的产生,但在双眼会聚眼球运动的产生中不起作用。然而,最近几项研究的结果表明,研究SC在扫视 - 会聚相互作用中的作用可能是值得的。具体而言,现有文献提出了两个问题:SC中与扫视相关的神经元是否具有三维运动场,以及会聚导致的扫视减慢是否部分归因于SC活动水平的变化?在无会聚的扫视、伴有会聚的扫视和伴有发散的扫视过程中,记录了恒河猴SC中51个与扫视相关的神经元的单单位数据。大多数细胞(会聚时为78%,发散时为86%)在扫视伴有会聚时峰值放电密度显著降低。少数细胞(会聚时为16%,发散时为2%)在伴有会聚的扫视时放电率增加。发现有三个细胞与扫视、会聚以及两者的组合相关放电。没有细胞表现出对于调谐为发散扫视的细胞所预期的放电模式。因此,目前的结果不支持这样的假设,即通常情况下,与扫视相关的SC神经元在三维空间中被调谐。在近距和远距无会聚的扫视中,经常发现放电率存在微小但显著的差异。大约一半的细胞显示出放电活动与扫视速度之间存在显著关系,但相关性往往非常弱。这表明SC神经元活动的降低对扫视速度的影响有限。对于一些细胞,其运动场在伴有会聚的扫视时发生了偏移。这些偏移在不同细胞之间差异很大。

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