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运动定义轮廓的感知空间位移中的各向异性:左上和右下视觉象限中的相反偏差。

Anisotropies in the perceived spatial displacement of motion-defined contours: opposite biases in the upper-left and lower-right visual quadrants.

作者信息

Fan Zhao, Harris John

机构信息

School of Psychology and Clinical Language Sciences, University of Reading, Whiteknights, Reading RG66AL, UK.

出版信息

Vision Res. 2010 Oct 12;50(21):2101-9. doi: 10.1016/j.visres.2010.07.018. Epub 2010 Jul 29.

Abstract

In a recent study (Fan, Z., & Harris, J. (2008). Perceived spatial displacement of motion-defined contours in peripheral vision. Vision Research, 48(28), 2793-2804), we demonstrated that virtual contours defined by two regions of dots moving in opposite directions were displaced perceptually in the direction of motion of the dots in the more eccentric region when the contours were viewed in the right visual field. Here, we show that the magnitude and/or direction of these displacements varies in different quadrants of the visual field. When contours were presented in the lower visual field, the direction of perceived contour displacement was consistent with that when both contours were presented in the right visual field. However, this illusory motion-induced spatial displacement disappeared when both contours were presented in the upper visual field. Also, perceived contour displacement in the direction of the more eccentric dots was larger in the right than in the left visual field, perhaps because of a hemispheric asymmetry in attentional allocation. Quadrant-based analyses suggest that the pattern of results arises from opposite directions of perceived contour displacement in the upper-left and lower-right visual quadrants, which depend on the relative strengths of two effects: a greater sensitivity to centripetal motion, and an asymmetry in the allocation of spatial attention.

摘要

在最近的一项研究中(范,Z.,& 哈里斯,J.(2008 年)。周边视觉中运动定义轮廓的感知空间位移。《视觉研究》,48(28),2793 - 2804),我们证明了由两个朝相反方向移动的点区域定义的虚拟轮廓,当在右侧视野中观察这些轮廓时,会在更偏心区域的点的运动方向上产生感知位移。在这里,我们表明这些位移的大小和/或方向在视野的不同象限中有所变化。当轮廓出现在下视野时,感知到的轮廓位移方向与两个轮廓都出现在右侧视野时一致。然而,当两个轮廓都出现在上视野时,这种由错觉运动引起的空间位移消失了。此外,在右侧视野中,朝着更偏心的点方向的感知轮廓位移比在左侧视野中更大,这可能是由于注意力分配中的半球不对称性。基于象限的分析表明,结果模式源于左上和右下视觉象限中感知轮廓位移的相反方向,这取决于两种效应的相对强度:对向心运动的更高敏感性以及空间注意力分配的不对称性。

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