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局部运动信号的感知交互。

Perceptual interaction of local motion signals.

作者信息

Nitzany Eyal I, Loe Maren E, Palmer Stephanie E, Victor Jonathan D

机构信息

Program in Computational Biology & Medicine, Cornell University, Ithaca, NY, USAFeil Family Brain and Mind Research Institute, Weill Cornell Medical College, New York City, NY, USADepartment of Organismal Biology and Anatomy, University of Chicago, Chicago, IL,

Department of Organismal Biology and Anatomy, University of Chicago, Chicago, IL,

出版信息

J Vis. 2016 Nov 1;16(14):22. doi: 10.1167/16.14.22.

Abstract

Motion signals are a rich source of information used in many everyday tasks, such as segregation of objects from background and navigation. Motion analysis by biological systems is generally considered to consist of two stages: extraction of local motion signals followed by spatial integration. Studies using synthetic stimuli show that there are many kinds and subtypes of local motion signals. When presented in isolation, these stimuli elicit behavioral and neurophysiological responses in a wide range of species, from insects to mammals. However, these mathematically-distinct varieties of local motion signals typically co-exist in natural scenes. This study focuses on interactions between two kinds of local motion signals: Fourier and glider. Fourier signals are typically associated with translation, while glider signals occur when an object approaches or recedes. Here, using a novel class of synthetic stimuli, we ask how distinct kinds of local motion signals interact and whether context influences sensitivity to Fourier motion. We report that local motion signals of different types interact at the perceptual level, and that this interaction can include subthreshold summation and, in some subjects, subtle context-dependent changes in sensitivity. We discuss the implications of these observations, and the factors that may underlie them.

摘要

运动信号是许多日常任务中丰富的信息来源,例如从背景中分离物体和导航。生物系统的运动分析通常被认为包括两个阶段:提取局部运动信号,然后进行空间整合。使用合成刺激的研究表明,局部运动信号有多种类型和子类型。当单独呈现时,这些刺激会在从昆虫到哺乳动物的广泛物种中引发行为和神经生理反应。然而,这些在数学上不同的局部运动信号变体通常在自然场景中共存。本研究聚焦于两种局部运动信号之间的相互作用:傅里叶信号和滑翔器信号。傅里叶信号通常与平移相关,而当物体接近或后退时会出现滑翔器信号。在这里,我们使用一类新型的合成刺激,探究不同类型的局部运动信号如何相互作用,以及背景是否会影响对傅里叶运动的敏感度。我们报告称,不同类型的局部运动信号在感知层面相互作用,这种相互作用可能包括阈下总和,并且在一些受试者中,敏感度会有微妙的背景依赖性变化。我们讨论了这些观察结果的意义以及可能构成其基础的因素。

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