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视觉检测中空间整合的机制:一种基于侧向相互作用的模型。

Mechanisms for spatial integration in visual detection: a model based on lateral interactions.

作者信息

Usher M, Bonneh Y, Sagi D, Herrmann M

机构信息

Department of Psychology, University of Kent, Canterbury, UK.

出版信息

Spat Vis. 1999;12(2):187-209. doi: 10.1163/156856899x00111.

Abstract

Recent studies of visual detection show a configuration dependent weak improvement of thresholds with the number of targets, which corresponds to a fourth-root power law. We find this result to be inconsistent with probability summation models, and account for it by a model of 'physiological' integration that is based on excitatory lateral interactions in the visual cortex. The model explains several phenomena which are confirmed by the experimental data, such as the absence of spatial and temporal uncertainty effects, temporal summation curves, and facilitation by a pedestal in 2AFC tasks. The summation exponents are dependent on the strength of the lateral interactions, and on the distance and orientation relationship between the elements.

摘要

近期关于视觉检测的研究表明,阈值随目标数量呈现出与配置相关的微弱改善,这符合四次方根幂律。我们发现这一结果与概率求和模型不一致,并通过基于视觉皮层兴奋性侧向相互作用的“生理”整合模型来解释它。该模型解释了一些得到实验数据证实的现象,比如不存在空间和时间不确定性效应、时间总和曲线以及在二项迫选任务中由基座产生的易化作用。总和指数取决于侧向相互作用的强度,以及各元素之间的距离和方向关系。

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