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空间处理与半球不对称性。瞬态/大细胞视觉系统的作用。

Spatial processing and hemispheric asymmetry. Contributions of the transient/magnocellular visual system.

作者信息

Roth E C, Hellige J B

机构信息

University of Southern California, Department of Psychology, Los Angeles CA, 90089, USA.

出版信息

J Cogn Neurosci. 1998 Jul;10(4):472-84. doi: 10.1162/089892998562889.

Abstract

Right-handed observers were presented with stimuli consisting of a line and two horizontally separated dots. A categorical spatial task required observers to indicate whether the dots were above or below the line, and a coordinate spatial task required observers to indicate whether the line could fit into the space between the two dots. For the coordinate task, reaction time was faster when the stimuli were presented to the left visual field (right hemisphere) than when the stimuli were presented to the right visual field (left hemisphere). The opposite hemispheric asymmetry was obtained for the categorical task. In addition, coordinate spatial processing took longer with stimuli presented on a red background than with stimuli presented on a green background. The opposite hemispheric asymmetry was obtained for the categorical task. In addition, coordinate spatial processing took longer with stimuli presented on a red background than with stimuli presented on a green background. The opposite trend characterized categorical spatial processing. Because the color red attenuates processing in the transient/magnocellular visual pathway, these results suggest that coordinate spatial processing is more dependent on the transient/magnocellular pathway than is categorical spatial processing. However, manipulations of color condition had no effect on visual field (hemispheric) asymmetries, suggesting that the two hemispheres rely on the same visual information and on the same computational mechanisms as each other-although they do not always use that information with equal efficiency.

摘要

右利手的观察者会看到由一条线和两个水平分开的点组成的刺激物。一项分类空间任务要求观察者指出点在线的上方还是下方,而一项坐标空间任务要求观察者指出线是否能放入两点之间的空间。对于坐标任务,当刺激物呈现给左视野(右半球)时,反应时间比刺激物呈现给右视野(左半球)时更快。对于分类任务,获得了相反的半球不对称性。此外,与呈现绿色背景的刺激物相比,呈现红色背景的刺激物进行坐标空间处理所需的时间更长。对于分类任务,获得了相反的半球不对称性。此外,与呈现绿色背景的刺激物相比,呈现红色背景的刺激物进行坐标空间处理所需的时间更长。分类空间处理呈现出相反的趋势。由于红色会减弱瞬态/大细胞视觉通路中的处理,这些结果表明坐标空间处理比分类空间处理更依赖于瞬态/大细胞通路。然而,颜色条件的操作对视场(半球)不对称性没有影响,这表明两个半球依赖相同的视觉信息和相同的计算机制——尽管它们并不总是以相同的效率使用该信息。

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