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外侧膝状体、V4区和颞中区(MT)损伤对视觉引导眼动的影响。

The effects of lateral geniculate nucleus, area V4, and middle temporal (MT) lesions on visually guided eye movements.

作者信息

Schiller P H, Lee K

机构信息

Massachusetts Institute of Technology, Cambridge 02139.

出版信息

Vis Neurosci. 1994 Mar-Apr;11(2):229-41. doi: 10.1017/s0952523800001590.

Abstract

Visually guided saccadic eye movements to singly presented stationary targets form a bimodal distribution. After superior colliculus lesions, the so called "express saccades" that form the first mode of the distribution are no longer obtained. The aim of this study was to determine what role several other neural systems play in the generation of express and regular saccades, with the latter being those that form the second mode in the bimodal distribution. Lesions were made in the parvocellular and magnocellular portions of the lateral geniculate nucleus to disrupt either the midget system or the parasol system that originates in the retina and areas V4 and MT. The effects of the lesions were examined on the accuracy and latency of saccadic eye movements made to stationary and to moving visual targets. Following magnocellular and MT lesions deficits were observed in smooth pursuit and in the amplitude of saccades made to moving targets. However, none of the lesions produced significant changes in the bimodal distribution of saccadic latencies to stationary targets. The results suggest that express saccades and regular saccades are not selectively mediated by either the midget or the parasol systems or by areas V4 and MT. Neither are the frontal eye fields involved as had previously been shown. We suggest that the superior colliculus plays a central role in producing both express and regular saccades by virtue of highly convergent input from numerous cortical structures.

摘要

视觉引导下对单个呈现的静止目标进行的扫视眼动形成双峰分布。在上丘损伤后,构成该分布第一种模式的所谓“快速扫视”不再出现。本研究的目的是确定其他几个神经系统在快速扫视和常规扫视的产生中起什么作用,后者是构成双峰分布中第二种模式的扫视。在外侧膝状核的小细胞和大细胞部分制造损伤,以破坏起源于视网膜以及V4区和MT区的侏儒系统或伞状系统。研究了这些损伤对针对静止和移动视觉目标进行的扫视眼动的准确性和潜伏期的影响。在大细胞和MT区损伤后,观察到平滑跟踪以及对移动目标进行的扫视幅度存在缺陷。然而,没有一种损伤使对静止目标的扫视潜伏期的双峰分布产生显著变化。结果表明,快速扫视和常规扫视不是由侏儒系统或伞状系统,也不是由V4区和MT区选择性介导的。额叶眼区也不像先前所示那样参与其中。我们认为,上丘凭借来自众多皮质结构的高度汇聚输入,在产生快速扫视和常规扫视方面发挥着核心作用。

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