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Stereoscopic Illusory Contours—Cortical Neuron Responses and Human Perception

机译:立体幻影轮廓—皮质神经元反应和人类知觉。

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摘要

In human perception, figure-ground segregation suggests that stereoscopic cues are grouped over wide areas of the visual field. For example, two abutting rectangles of equal luminance and size are seen as a uniform surface when presented at the same depth, but appear as two surfaces separated by an illusory contour and a step in depth when presented with different retinal disparities. Here, we describe neurons in the monkey visual cortex that signal such illusory contours and can be selective for certain figure-ground directions that human observers perceive at these contours. The results suggest that these neurons group stereoscopic cues over distances up to 8°. In addition, we compare these results with human perception and show that the mean stimulus parameters required by these neurons also induce optimal percepts of illusory contours in human observers.
机译:在人的感知中,图形与地面的隔离表明,立体提示在视野的广阔区域内分组。例如,当以相同的深度呈现时,具有相同亮度和大小的两个邻接矩形被视为一个均匀的表面,但是当呈现不同的视网膜视差时,则呈现为被虚幻的轮廓和深度阶梯分开的两个表面。在这里,我们描述了猴子视觉皮层中的神经元,这些神经元发出了这种虚幻的轮廓信号,并且可以对人类观察者在这些轮廓处感知到的某些图形地面方向具有选择性。结果表明,这些神经元在高达8°的距离内对立体提示进行分组。此外,我们将这些结果与人类的感知力进行了比较,结果表明,这些神经元所需的平均刺激参数也能在人类观察者中诱导出最佳的幻觉轮廓感知。

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