Amodal completion of coincidentally occluded angles: a matter of visual approximation

Andrea Dissegna, W. Gerbino, C. Fantoni
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Abstract

In the Gerbino illusion a regular but coincidentally occluded polygon appears distorted. Such a display represents a critical condition for amodal completion (AC), in which the smooth continuations of contour fragments—however small—conflict with their possible monotonic interpolation. Smoothness and monotonicity are considered the fundamental constraints of AC at the contour level. To account for the Gerbino illusion we contrasted two models derived from alternative AC frameworks: visual interpolation, based on the literal representation of contour fragments, vs. visual approximation, which tolerates a small misorientation of contour fragments, compatible with smoothness and monotonicity constraints. To measure the perceived misorientation of sides of coincidentally occluded angles we introduced a novel technique for analyzing data from a multiple probe adjustment task. An unsupervised cluster analysis of errors in extrapolation and tilt adjustments revealed that the distortion observed in the Gerbino illusion is consistent with visual approximation and, in particular, with the concatenation of misoriented and locally shrinked amodally completed angles. Implications of our technique and obtained results shed new light on visual completion processes.
巧合夹角的模态补全:视觉近似的问题
在Gerbino错觉中,一个规则但碰巧被遮挡的多边形出现扭曲。这样的显示代表了模态补全(AC)的关键条件,其中轮廓碎片的平滑连续-无论多么小-与其可能的单调插值相冲突。平滑性和单调性被认为是AC在轮廓水平上的基本约束。为了解释Gerbino错觉,我们对比了两种来自替代AC框架的模型:基于轮廓片段文字表示的视觉插值和视觉近似,前者可以容忍轮廓片段的小定向错误,与平滑性和单调性约束兼容。为了测量巧合遮挡角的侧面感知错位,我们引入了一种新的技术来分析多探头调整任务的数据。外推和倾斜调整误差的无监督聚类分析表明,在Gerbino错觉中观察到的畸变与视觉近似一致,特别是与定向错误和局部收缩模态完成角度的连接一致。我们的技术和获得的结果的含义为视觉完井过程提供了新的线索。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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