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人类视觉中局部模式元素整合为全局形状的过程。

Integration of local pattern elements into a global shape in human vision.

作者信息

Saarinen J, Levi D M, Shen B

机构信息

College of Optometry, University of Houston, Houston, TX 77204-6052, USA.

出版信息

Proc Natl Acad Sci U S A. 1997 Jul 22;94(15):8267-71. doi: 10.1073/pnas.94.15.8267.

Abstract

The spatial extent of the cortical filters selective for different spatial frequencies and orientations is limited. We studied psychophysically how information from the local filters is integrated into global pattern shapes, i.e., whether performance in the identification of a global pattern consisting of small, locally oriented Gabor elements depends on the orientations of those elements. The observer was presented with an E-like stimulus pattern shape comprised of oriented Gabor patches on a blank background, and the performance measure was the threshold contrast for identifying the orientation of the E pattern (four possible rotated orientations). The results showed that contrast thresholds were significantly lower when the local elements all shared the same orientation (e.g., all horizontal) compared with the condition in which the elements had mixed orientations (both horizontal and vertical). The enhancement effect due to uniform local orientations can be explained by two factors: One is local facilitatory interactions between the orientation selective filters, and the other is second-order information integration across the filters.

摘要

对不同空间频率和方向具有选择性的皮质滤波器的空间范围是有限的。我们通过心理物理学方法研究了来自局部滤波器的信息是如何整合到全局模式形状中的,即由小的、局部定向的加博尔元素组成的全局模式的识别性能是否取决于这些元素的方向。向观察者呈现一个类似字母E的刺激模式形状,它由空白背景上的定向加博尔斑块组成,性能指标是识别E模式方向(四种可能的旋转方向)的阈值对比度。结果表明,与元素具有混合方向(水平和垂直方向都有)的情况相比,当局部元素都具有相同方向(例如,全是水平方向)时,对比度阈值显著更低。由于局部方向一致而产生的增强效应可以由两个因素来解释:一个是方向选择性滤波器之间的局部促进性相互作用,另一个是跨滤波器的二阶信息整合。

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