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启动和未启动的反弹错觉似动现象。

Primed and unprimed rebounding illusory apparent motion.

作者信息

Davidenko Nicolas, Heller Nathan H

机构信息

Department of Psychology, University of California, Santa Cruz, CA, USA.

出版信息

Atten Percept Psychophys. 2018 Feb;80(2):307-315. doi: 10.3758/s13414-018-1483-1.

Abstract

Although sequences of uncorrelated random dots can yield a wide range of illusorily coherent motion percepts (including translation, rotation, contraction, expansion, shear, and rebounding motion), past priming studies have relied on two-alternative forced choice tasks that only measure unidirectional (positive or negative) priming effects. In Experiment 1 we showed that when participants are primed with unidirectional motion and given an additional option to report bidirectional (rebounding) motion, they do so frequently, suggesting that unidirectional motion can "default" to a rebounding percept. Furthermore, rebounding percepts are more prevalent during trials with long frame durations, suggesting a role for attention in forming and maintaining these illusory percepts. In Experiment 2 we compared rebounding percepts that followed unidirectional, drifting primes with rebounding percepts that followed bidirectional, rebounding primes, and found that these two types of illusory rebounding motion percepts differ systematically in their temporal structures. We argue that rebounding percepts following drifting primes can be understood as a breakdown of positive priming into an underlying oscillatory state, whereas rebounding percepts following rebounding primes may be understood either as (1) the initialization of the same oscillatory process, or (2) the entrainment of a two-step motion pattern by a higher-order mechanism.

摘要

尽管不相关随机点序列能够产生一系列广泛的虚幻连贯运动感知(包括平移、旋转、收缩、扩张、剪切和反弹运动),但过去的启动研究一直依赖于二选一的强制选择任务,这些任务仅测量单向(正向或负向)启动效应。在实验1中,我们发现,当用单向运动启动参与者并给予他们报告双向(反弹)运动的额外选项时,他们经常会这样做,这表明单向运动可以“默认”为反弹感知。此外,在长帧持续时间的试验中,反弹感知更为普遍,这表明注意力在形成和维持这些虚幻感知中发挥了作用。在实验2中,我们比较了跟随单向漂移启动刺激后的反弹感知与跟随双向反弹启动刺激后的反弹感知,发现这两种类型的虚幻反弹运动感知在时间结构上存在系统性差异。我们认为,跟随漂移启动刺激后的反弹感知可以理解为正向启动分解为潜在的振荡状态,而跟随反弹启动刺激后的反弹感知可以理解为要么是(1)相同振荡过程的初始化,要么是(2)由高阶机制对两步运动模式的夹带。

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