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沿感知表面跨越亮度间隙的离散颜色填充。

Discrete color filling beyond luminance gaps along perceptual surfaces.

作者信息

Kanai Ryota, Wu Daw-An, Verstraten Frans A J, Shimojo Shinsuke

机构信息

Psychonomics Division, Helmholtz Research Institute, Universiteit Utrecht, Utrecht, The Netherlands.

出版信息

J Vis. 2006 Dec 5;6(12):1380-95. doi: 10.1167/6.12.4.

Abstract

Perceived color at a point in space is not determined simply by the color directly stimulating the corresponding retinal position. Surface color is informed by flanking edge signals, which also serve to inhibit the intrusion of signals from neighboring surfaces. Spatially continuous local interactions among color and luminance signals have been implicated in a propagation process often referred to as filling-in. Here, we report a phenomenon of discrete color filling whereby color jumps over luminance gaps filling into disconnected regions of the stimulus. This color filling is found to be blocked at boundaries defined by texture. The color filling is also highly specific to the elements belonging to a common perceptual surface, even when multiple surfaces are transparently overlaid. Our results indicate that color filling can be governed by a host of visual cues outside the realm of first-order color and brightness, via their impact on perceptual surface segmentation and segregation.

摘要

空间中某一点的感知颜色并非仅由直接刺激相应视网膜位置的颜色决定。表面颜色由侧翼边缘信号告知,这些信号也用于抑制来自相邻表面的信号干扰。颜色和亮度信号之间的空间连续局部相互作用与一种通常称为填充的传播过程有关。在此,我们报告了一种离散颜色填充现象,即颜色跳过亮度间隙填充到刺激的不连续区域中。发现这种颜色填充在由纹理定义的边界处被阻断。即使多个表面透明叠加,颜色填充也高度特定于属于共同感知表面的元素。我们的结果表明,颜色填充可以通过其对感知表面分割和分离的影响,由一阶颜色和亮度领域之外的许多视觉线索来控制。

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