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猴 V4 中真实和错觉轮廓的等价表示。

Equivalent representation of real and illusory contours in macaque V4.

机构信息

Institute of Neuroscience and State Key Laboratory of Neuroscience, Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences, Shanghai 200031, People's Republic of China.

出版信息

J Neurosci. 2012 May 16;32(20):6760-70. doi: 10.1523/JNEUROSCI.6140-11.2012.

Abstract

The cortical processing of illusory contours provides a unique window for exploring the brain mechanisms underlying visual perception. Previous electrophysiological single-cell recordings demonstrate that a subgroup of cells in macaque V1 and V2 signal the presence of illusory contours, whereas recent human brain imaging studies reveal higher-order visual cortices playing a central role in illusory figure processing. It seems that the processing of illusory contours/figures may engage multiple cortical interactions between hierarchically organized processing stages in the ventral visual pathway of primates. However, it is not yet known in which brain areas illusory contours are represented in the same manner as real contours at both the population and single-cell levels. Here, by combining intrinsic optical imaging in anesthetized rhesus macaques with single-cell recordings in awake ones, we found a complete overlap of orientation domains in visual cortical area V4 for processing real and illusory contours. In contrast, the orientation domains mapped in early visual areas V1 and V2 mainly encoded the local physical stimulus features inducing the subjective perception of global illusory contours. Our results indicate that real and illusory contours are encoded equivalently by the same functional domains in V4, suggesting that V4 is a key cortical locus for integration of local features into global contours.

摘要

错觉轮廓的皮层处理为探索视觉感知背后的大脑机制提供了一个独特的窗口。以前的电生理单细胞记录表明,猕猴 V1 和 V2 中的一小部分细胞会发出错觉轮廓的信号,而最近的人类大脑成像研究则揭示了高级视觉皮层在错觉图形处理中起着核心作用。似乎错觉轮廓/图形的处理可能涉及灵长类动物腹侧视觉通路中分层处理阶段之间的多个皮层相互作用。然而,目前尚不清楚在哪些脑区,错觉轮廓在群体和单细胞水平上以与真实轮廓相同的方式被表示。在这里,我们通过结合麻醉恒河猴的内源性光学成像和清醒恒河猴的单细胞记录,发现处理真实和错觉轮廓的视觉皮层 V4 中的朝向域完全重叠。相比之下,早期视觉区域 V1 和 V2 中映射的朝向域主要编码引起主观感知全局错觉轮廓的局部物理刺激特征。我们的结果表明,V4 中的相同功能域以相同的方式对真实和错觉轮廓进行编码,这表明 V4 是将局部特征整合到全局轮廓中的关键皮质位置。

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