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闪烁栅格错觉中感知大小与感知强度的分离

Dissociation of perceived size and perceived strength in the scintillating grid illusion.

作者信息

Matsuno Toyomi, Sato Yuka

机构信息

Faculty of Economics, Hosei University, Machida, Tokyo, Japan.

出版信息

J Vis. 2019 Nov 1;19(13):15. doi: 10.1167/19.13.15.

Abstract

The scintillating grid illusion is a geometric visual illusion where illusory dark spots are perceived on white circular patches that are located at the intersections of a grid pattern. Previous studies have measured the perceived strength of the illusory spots by varying stimulus and viewing conditions, to elucidate the mechanisms underlying the illusion; however, findings remain inconclusive. In the present study, we measured the perceived size of the illusory spots, in addition to their perceived strength, by varying the size of the geometric components and the orientation of the stimulus, to further investigate the mechanism behind this illusion. We found that the dependency of perceived spot size on the change of the stimulus parameters is dissociated from that of the perceived spot strength. The perceived size of the illusory spots linearly correlated with the size of the white patches and was less dependent on the width of the grid bars and the orientation of the stimulus, while the perceived strength was characterized by a quadratic relationship with patch size and bar width and was monotonically modulated depending on the orientation of the stimuli. These results suggest that different factors separately constrain size and strength within the processes that elicit the illusory spots. We propose that the mechanism underlying the scintillating grid illusion is based on the interruption of the surface formation process of white patches by the interference of the orientation signals of gray bars.

摘要

闪烁栅格错觉是一种几何视觉错觉,在网格图案交点处的白色圆形斑块上会感知到虚幻的暗点。以往的研究通过改变刺激和观察条件来测量虚幻暗点的感知强度,以阐明这种错觉背后的机制;然而,研究结果仍无定论。在本研究中,我们通过改变几何成分的大小和刺激的方向,除了测量虚幻暗点的感知强度外,还测量了其感知大小,以进一步探究这种错觉背后的机制。我们发现,虚幻暗点感知大小对刺激参数变化的依赖性与感知强度的依赖性是分离的。虚幻暗点的感知大小与白色斑块的大小呈线性相关,且对网格条宽度和刺激方向的依赖性较小,而感知强度的特征是与斑块大小和条宽呈二次关系,并根据刺激方向单调调节。这些结果表明,在引发虚幻暗点的过程中,不同因素分别制约着大小和强度。我们提出,闪烁栅格错觉背后的机制是基于灰色条的方向信号干扰对白斑块表面形成过程的中断。

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