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视觉空间的排斥后效

Repulsive Aftereffects of Visual Space.

作者信息

Zimmermann Eckart

机构信息

Institute for Experimental Psychology, Heinrich Heine University Düsseldorf, Universitätsstraße 1, 40225 Düsseldorf, Germany.

出版信息

Vision (Basel). 2023 Nov 15;7(4):73. doi: 10.3390/vision7040073.

Abstract

Prolonged exposure to a sensory stimulus induces perceptual adaptation aftereffects. Traditionally, aftereffects are known to change the appearance of stimulus features, like contrast, color, or shape. However, shifts in the spatial position of objects have also been observed to follow adaptation. Here, I demonstrate that visual adaptation produced by different adapter stimuli generates a bi-directional spatial repulsion. Observers had to judge the distance between a probe dot pair presented in the adapted region and compare them to a reference dot pair presented in a region not affected by adaptation. If the probe dot pair was present inside the adapted area, observers underestimated the distance. If, however, the dot pair straddled the adapted area, the distance was perceived as larger with a stronger distance expansion than compression. Bi-directional spatial repulsion was found with a similar magnitude for size and density adapters. Localization estimates with mouse pointing revealed that adaptation also affected absolute position judgments. Bi-directional spatial repulsion is most likely produced by the lines of adapter stimuli since single bars used as adapters were sufficient to induce spatial repulsion. Spatial repulsion was stronger for stimuli presented in the periphery. This finding explains why distance expansion is stronger than distance compression.

摘要

长时间暴露于感觉刺激会诱发知觉适应后效应。传统上,已知后效应会改变刺激特征的外观,如对比度、颜色或形状。然而,也观察到物体空间位置的变化也会伴随适应发生。在此,我证明不同的适应刺激产生的视觉适应会产生双向空间排斥。观察者必须判断在适应区域呈现的探测点对之间的距离,并将其与在未受适应影响的区域呈现的参考点对进行比较。如果探测点对出现在适应区域内,观察者会低估距离。然而,如果点对跨越适应区域,距离会被感知为更大,且距离扩展比压缩更强。对于大小和密度适应刺激,发现了类似程度的双向空间排斥。用鼠标指向进行的定位估计表明,适应也会影响绝对位置判断。双向空间排斥很可能是由适应刺激线产生的,因为用作适应刺激的单个条足以诱发空间排斥。对于周边呈现的刺激,空间排斥更强。这一发现解释了为什么距离扩展比距离压缩更强。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7d19/10661249/3fb2357b6f04/vision-07-00073-g001.jpg

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