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恒河猴V4区和颞中区(MT)损伤对视觉表现的影响。

The effects of V4 and middle temporal (MT) area lesions on visual performance in the rhesus monkey.

作者信息

Schiller P H

机构信息

Massachusetts Institute of Technology, Cambridge 02139.

出版信息

Vis Neurosci. 1993 Jul-Aug;10(4):717-46. doi: 10.1017/s0952523800005423.

Abstract

The effects of V4, MT, and combined V4 + MT lesions were assessed on a broad range of visual capacities that included measures of contrast sensitivity, wavelength and brightness discrimination, form vision, pattern vision, motion and flicker perception, stereopsis, and the selection of stimuli that were less prominent than those with which they appeared in stimulus arrays. The major deficit observed was a loss in the ability, after V4 lesions, to select such less prominent stimuli; this was the case irrespective of the manner in which the stimulus arrays were made visible, using either luminance, chrominance, motion, or stereoscopic depth as surface media. In addition, V4 lesions yielded mild deficits in color, brightness, and form vision whereas MT lesions yielded mild to moderate deficits in motion and flicker perception. Both lesions produced mild deficits in contrast sensitivity, shape-from-motion perception, and yielded increased reaction times on many of the tasks. The impairment resulting from combined V4 and MT lesions was not greater than the sum of the deficits of either lesion. None of the lesions produced significant deficits in stereopsis. The findings suggest that (1) area V4 is part of a neural system that is involved in extracting stimuli from the visual scene that elicit less neural activity early in the visual system than do other stimuli with which they appear and (2) several other extrastriate regions and more than just two major cortical processing streams contribute to the processing of basic visual functions in the extrastriate cortex.

摘要

研究评估了V4区、MT区以及V4区与MT区联合损伤对多种视觉能力的影响,这些视觉能力包括对比敏感度、波长和亮度辨别、形状视觉、图案视觉、运动和闪烁感知、立体视觉,以及从刺激阵列中选择比与其同时呈现的其他刺激不太突出的刺激。观察到的主要缺陷是V4区损伤后,无法选择此类不太突出的刺激;无论使用亮度、色度、运动还是立体深度作为表面媒介来使刺激阵列可见,情况都是如此。此外,V4区损伤导致颜色、亮度和形状视觉出现轻度缺陷,而MT区损伤导致运动和闪烁感知出现轻度至中度缺陷。两种损伤均导致对比敏感度、运动形状感知出现轻度缺陷,并使许多任务的反应时间增加。V4区和MT区联合损伤造成的损害不大于任一损伤缺陷的总和。所有损伤均未导致立体视觉出现显著缺陷。研究结果表明:(1)V4区是神经系统的一部分,该系统参与从视觉场景中提取刺激,这些刺激在视觉系统早期引发的神经活动比与其同时出现的其他刺激少;(2)其他几个纹外区域以及不止两个主要的皮质处理流对纹外皮质基本视觉功能的处理有贡献。

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