Bulatov Aleksandr, Bertulis Algis, Bulatova Natalja, Loginovich Yelena
Institute of Biology, Kaunas University of Medicine, Kaunas, Lithuania.
Acta Neurobiol Exp (Wars). 2009;69(4):504-25. doi: 10.55782/ane-2009-1760.
In the present study, a computational model of the automatic centroid extraction based on the processes of local integration of excitatory profiles in the visual pathways has been developed. The model predictions have been compared with the results of our psychophysical examination of the perceptual distortions of the spatial extent. In experiments, the subjects matched two spatial intervals flanked by one of the three types of the contextual objects: either the Müller-Lyer wings, or vertical stripes, or spot pairs. A good resemblance between the theoretical functions and dependencies of the illusions' magnitudes on various spatial parameters of the stimuli has provided evidence that the effects caused by indirect positional coding via centroids are powerful enough to explain the phenomena of the geometric illusions investigated.
在本研究中,基于视觉通路中兴奋性分布的局部整合过程,开发了一种自动质心提取的计算模型。已将该模型预测结果与我们对空间范围感知扭曲的心理物理学检查结果进行了比较。在实验中,受试者匹配了由三种类型的上下文对象之一包围的两个空间间隔:要么是缪勒-莱尔翅膀,要么是垂直条纹,要么是点对。理论函数与错觉大小对刺激各种空间参数的依赖性之间的良好相似性提供了证据,表明通过质心进行的间接位置编码所产生的效应足以强大到能够解释所研究的几何错觉现象。