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支持双侧对称感知的刺激信息。

Stimulus information supporting bilateral symmetry perception.

作者信息

Kurki Ilmari

机构信息

Department of Psychology and Logopedics, Faculty of Medicine, PO Box 63, University of Helsinki, Finland.

出版信息

Vision Res. 2019 Aug;161:18-24. doi: 10.1016/j.visres.2019.02.017. Epub 2019 Jun 12.

Abstract

A classification image (a psychophysical reverse-correlation) method was used to investigate what stimulus regions and information the visual system uses for bilateral symmetry perception. The stimuli were symmetric random-dot patterns with either low or high dot density. First, the spatial integration region supporting symmetry perception was estimated, by analyzing the trial-to-trial correlation between the spatial location of symmetric dots and the corresponding response. It was observed that the integration region was rather compact (3 deg with dense stimulus), vertically elongated and located near to the axis of symmetry. The size of the area was dependent on the pattern density, being larger with low-density stimulus. Next, the resolution of the symmetry matching was probed by estimating how close to the perfect symmetry the dots in two stimulus parts must be to be perceived as symmetric (classification image for symmetry tolerance). Dot pairings up to 6 arc min off from the mirror symmetry correlated with symmetry response, suggesting that the process underlying symmetry matching has large tolerance and low resolution. Outside the integration region, the symmetry tolerance classification image weights were essentially zero, suggesting that the lack of symmetry integration there is not a byproduct of high tolerance.

摘要

采用一种分类图像(一种心理物理学逆相关)方法来研究视觉系统用于双侧对称感知的刺激区域和信息。刺激物是具有低或高点密度的对称随机点图案。首先,通过分析对称点的空间位置与相应反应之间的逐次试验相关性,估计支持对称感知的空间整合区域。观察到整合区域相当紧凑(密集刺激时为3度),垂直拉长且位于对称轴附近。该区域的大小取决于图案密度,低密度刺激时更大。接下来,通过估计两个刺激部分中的点必须与完美对称接近到何种程度才能被感知为对称(对称容差的分类图像)来探究对称匹配的分辨率。与镜像对称偏差达6角分的点配对与对称反应相关,这表明对称匹配背后的过程具有较大的容差和较低的分辨率。在整合区域之外,对称容差分类图像权重基本为零,这表明那里缺乏对称整合并非高容差的副产品。

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