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视觉运动处理中中心-外周拮抗的感知结果。

Perceptual consequences of centre-surround antagonism in visual motion processing.

作者信息

Tadin Duje, Lappin Joseph S, Gilroy Lee A, Blake Randolph

机构信息

Vanderbilt Vision Research Center, Vanderbilt University, 111 21st Avenue South, Nashville, Tennessee 37203, USA.

出版信息

Nature. 2003 Jul 17;424(6946):312-5. doi: 10.1038/nature01800.

Abstract

Centre-surround receptive field organization is a ubiquitous property in mammalian visual systems, presumably tailored for extracting image features that are differentially distributed over space. In visual motion, this is evident as antagonistic interactions between centre and surround regions of the receptive fields of many direction-selective neurons in visual cortex. In a series of psychophysical experiments we make the counterintuitive observation that increasing the size of a high-contrast moving pattern renders its direction of motion more difficult to perceive and reduces its effectiveness as an adaptation stimulus. We propose that this is a perceptual correlate of centre-surround antagonism, possibly within a population of neurons in the middle temporal visual area. The spatial antagonism of motion signals observed at high contrast gives way to spatial summation as contrast decreases. Evidently, integration of motion signals over space depends crucially on the visibility of those signals, thereby allowing the visual system to register motion information efficiently and adaptively.

摘要

中心-外周感受野组织是哺乳动物视觉系统中普遍存在的一种特性,大概是为提取在空间上呈差异分布的图像特征而量身定制的。在视觉运动中,这在视觉皮层中许多方向选择性神经元的感受野的中心区域和外周区域之间的拮抗相互作用中表现明显。在一系列心理物理学实验中,我们做出了一个违反直觉的观察结果:增加高对比度运动模式的大小会使其运动方向更难被感知,并降低其作为适应刺激的有效性。我们提出,这是中心-外周拮抗作用的一种感知关联,可能发生在颞中视觉区域的一群神经元内。随着对比度降低,在高对比度下观察到的运动信号的空间拮抗作用会让位于空间总和。显然,运动信号在空间上的整合关键取决于这些信号的可见性,从而使视觉系统能够高效且自适应地记录运动信息。

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