The bumpy circle illusion: apparent shape-distortion of filled circles placed on a checkered pattern

Shuichiro Taya, Masaya Ishikawa
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Abstract

A new visual illusion in which circles placed on the checkered-pattern background appear to be polygons is reported. In this article, we first demonstrated that the apparent distortion of circles in this ‘bumpy circle illusion (BCI)’ depends on the luminance difference between the circles and the components of the background. Then, with the aim of clarifying the mechanism that causes this phenomenon, the ‘low-pass filtering theory’ the ‘segmentation theory’, the ‘corner effect theory’, and the ‘completion theory’ were investigated. As a result, the low-pass filtering theory and the completion theory were rejected because they predicted the occurrence of the illusion in some modulated BCI figures that produced no illusion. The ‘segmentation theory’, which postulated that the same mechanism as in the curvature blindness illusion produces BCI, was also rejected because the same luminance assignment as for BCI image components does not produce the curvature blindness illusion. In addition, the curvature of lines appears to deform in the curvature blindness illusion, whereas the BCI does not produce an illusion of line circles, which also shows the difference between the two phenomena. The ‘corner effect theory’ is the most promising because it correctly predicts (1) how the apparent distortion of the circles appears and (2) the presence/absence of illusion with the outline circles depending on the checkerboard luminance alteration cycles inside and outside of the circles. However, the corner effect theory can only be justified if it is assumed that the strength of the effect is different depending on whether the checkered pattern is applied to the inside or outside of the circles. Whether such asymmetry does exist and the reason why the asymmetry occurs needs further investigation.
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凹凸圆错觉:方格图案上填充圆的明显形状变形
据报道,在一种新的视错觉中,置于方格图案背景上的圆看起来像是多边形。在这篇文章中,我们首先证明了在这种 "凹凸圆错觉(BCI)"中,圆的明显变形取决于圆与背景成分之间的亮度差异。然后,为了阐明造成这种现象的机制,我们对 "低通滤波理论"、"分割理论"、"边角效应理论 "和 "完成理论 "进行了研究。结果,"低通滤波理论 "和 "完成理论 "被否定,因为这两种理论预测了在一些没有产生幻觉的调制 BCI 图形中出现的幻觉。分割理论 "推测与 "曲度盲 "错觉产生机制相同的机制会产生 "曲度盲 "错觉,该理论也被否定,因为与 "曲度盲 "错觉图像成分相同的亮度分配不会产生 "曲度盲 "错觉。此外,在曲率盲错觉中,线条的曲率出现变形,而 BCI 不会产生线条圆圈的错觉,这也说明了两种现象的不同。角效应理论 "最有希望,因为它能正确预测:(1)圆的明显变形是如何出现的;(2)根据圆内外的棋盘亮度变化周期,轮廓圆是否会出现错觉。然而,只有假定圆内和圆外的棋盘格图案不同,圆角效应的强度也不同,圆角效应理论才能成立。这种不对称性是否确实存在,以及出现不对称性的原因,还需要进一步研究。
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Motion-induced blindness occurs with a simple motion mask Motion-induced blindness occurs with a simple motion mask The bumpy circle illusion: apparent shape-distortion of filled circles placed on a checkered pattern Double-mirror illusion: a new class of 3D illusion that creates anomalous U-turn and anomalous translation simultaneously Five types of anomalous perceptions created by the same mirror-reflection process
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