Extension of a computational model of a class of orientation illusions

IF 1.5 4区 心理学 Q4 NEUROSCIENCES
Dejan Todorović
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引用次数: 0

Abstract

Polarity-dependent orientation illusions constitute a class of illusions in which the impression of orientation does not depend only on geometrical relations between its elements, but also on the relations between their luminances. Several examples of such figures are presented in the paper. Todorović (2021a) presented a simple computational model of such phenomena. Simulations of the model indicated that a common feature of the neural basis of these illusions is the presence of certain neural structures called ‘oblique clusters’. A limitation of the model was that it used a restricted set of parameters. In this paper a generalization of the model is introduced involving types of receptive fields, their orientation sensitivity and their size or spatial frequency tuning. The simulations of the new model indicated that oblique clusters were present in the reaction patterns under a much wider set of conditions, though not all. The original hypothesis that oblique clusters constituted the neural foundations of impressions of tilt in this class of illusions was vindicated.

Abstract Image

扩展一类方位错觉的计算模型。
依赖极性的方位错觉是一类错觉,在这类错觉中,方位印象不仅取决于元素之间的几何关系,还取决于它们之间的亮度关系。本文列举了几个此类图形的例子。托多罗维奇(2021a)提出了一个关于此类现象的简单计算模型。该模型的模拟结果表明,这些错觉的神经基础的一个共同特征是存在某些被称为 "斜集群 "的神经结构。该模型的局限性在于它使用了一组有限的参数。本文对该模型进行了概括,涉及感受野的类型、方向敏感性及其大小或空间频率调谐。新模型的模拟结果表明,在更广泛的条件下(尽管不是所有条件),反应模式中会出现斜集群。在这类幻觉中,斜集群构成了倾斜印象的神经基础,这一最初的假设得到了证实。
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来源期刊
Vision Research
Vision Research 医学-神经科学
CiteScore
3.70
自引率
16.70%
发文量
111
审稿时长
66 days
期刊介绍: Vision Research is a journal devoted to the functional aspects of human, vertebrate and invertebrate vision and publishes experimental and observational studies, reviews, and theoretical and computational analyses. Vision Research also publishes clinical studies relevant to normal visual function and basic research relevant to visual dysfunction or its clinical investigation. Functional aspects of vision is interpreted broadly, ranging from molecular and cellular function to perception and behavior. Detailed descriptions are encouraged but enough introductory background should be included for non-specialists. Theoretical and computational papers should give a sense of order to the facts or point to new verifiable observations. Papers dealing with questions in the history of vision science should stress the development of ideas in the field.
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