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人类视觉中移动亮度边缘的时空表征。

Spatiotemporal representation of moving luminance edges in human vision.

作者信息

Marcus J T, Toet A

机构信息

Institute for Perception TNO, Soesterberg, The Netherlands.

出版信息

Neurosci Lett. 1991 Apr 1;124(2):239-41. doi: 10.1016/0304-3940(91)90103-z.

Abstract

The edges of straight bars in a square-wave luminance grating appear undulating to an observer when the retinal image of this pattern is in motion. The amplitude of the perceived undulations increases linearly with retinal image speed with an average slope of 30 +/- 4 ms. The period of the motion-induced bulges is 2.5 +/- 0.5 degree and shows no consistent variation with the retinal image velocity of the pattern. The close quantitative agreement between the spatiotemporal extent of this effect and recent estimates of the spatiotemporal parameters of human motion-sensitive mechanisms suggests the existence of motion-sensitive cells in the central nervous system that have a fixed time constant but change the shape and size of their retinal support with retinal image velocity.

摘要

当方波亮度光栅的视网膜图像运动时,观察者会觉得该图案中直条的边缘呈波浪状起伏。所感知到的起伏幅度随视网膜图像速度呈线性增加,平均斜率为30±4毫秒。运动诱导凸起的周期为2.5±0.5度,且与图案的视网膜图像速度没有一致的变化。这种效应的时空范围与人类运动敏感机制的时空参数的最新估计之间在数量上的密切吻合表明,中枢神经系统中存在运动敏感细胞,这些细胞具有固定的时间常数,但会随着视网膜图像速度改变其视网膜支持区域的形状和大小。

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