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通过启动错觉似动来分离高阶和低阶视觉运动系统

Dissociating Higher and Lower Order Visual Motion Systems by Priming Illusory Apparent Motion.

作者信息

Heller Nathan H, Davidenko Nicolas

机构信息

University of California, Santa Cruz, USA.

出版信息

Perception. 2018 Jan;47(1):30-43. doi: 10.1177/0301006617731007. Epub 2017 Sep 11.

Abstract

Motion processing is thought of as a hierarchical system composed of higher and lower order components. Past research has shown that these components can be dissociated using motion priming paradigms in which the lower order system produces negative priming while the higher order system produces positive priming. By manipulating various stimulus parameters, researchers have probed these two systems using bistable test stimuli that permit only two motion interpretations. Here we employ maximally ambiguous test stimuli composed of randomly refreshing pixels in a task that allows observers to report more than just two types of motion percepts. We show that even with such stimuli, motion priming can constrain the unstructured random pixel patterns into coherent percepts of positive or negative apparent motion. Moreover, we find that the higher order system is uniquely susceptible to cognitive influences, as evidenced by a significant suppression of positive priming in the presence of alternative response options.

摘要

运动处理被认为是一个由高阶和低阶组件组成的层次系统。过去的研究表明,这些组件可以通过运动启动范式来分离,其中低阶系统产生负启动,而高阶系统产生正启动。通过操纵各种刺激参数,研究人员使用双稳态测试刺激来探测这两个系统,这种刺激只允许两种运动解释。在这里,我们在一项任务中使用由随机刷新像素组成的最大模糊测试刺激,该任务允许观察者报告不止两种类型的运动感知。我们表明,即使使用这样的刺激,运动启动也可以将无结构的随机像素模式约束为正或负表观运动的连贯感知。此外,我们发现高阶系统对认知影响具有独特的敏感性,这在存在替代反应选项时正启动的显著抑制中得到了证明。

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