Kapadia M K, Westheimer G, Gilbert C D
The Rockefeller University, New York, New York 10021, USA.
J Neurophysiol. 2000 Oct;84(4):2048-62. doi: 10.1152/jn.2000.84.4.2048.
To examine the role of primary visual cortex in visuospatial integration, we studied the spatial arrangement of contextual interactions in the response properties of neurons in primary visual cortex of alert monkeys and in human perception. We found a spatial segregation of opposing contextual interactions. At the level of cortical neurons, excitatory interactions were located along the ends of receptive fields, while inhibitory interactions were strongest along the orthogonal axis. Parallel psychophysical studies in human observers showed opposing contextual interactions surrounding a target line with a similar spatial distribution. The results suggest that V1 neurons can participate in multiple perceptual processes via spatially segregated and functionally distinct components of their receptive fields.
为了研究初级视觉皮层在视觉空间整合中的作用,我们研究了警觉猴子初级视觉皮层神经元反应特性以及人类感知中上下文交互的空间排列。我们发现了相反上下文交互的空间分离。在皮层神经元层面,兴奋性交互位于感受野的末端,而抑制性交互在正交轴上最强。在人类观察者中进行的平行心理物理学研究表明,围绕目标线的相反上下文交互具有相似的空间分布。结果表明,V1神经元可以通过其感受野中空间分离且功能不同的成分参与多种感知过程。