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在自主眼球运动条件下额外视觉振荡对运动错觉的影响——视网膜图像运动在运动错觉促进中起关键作用。

Effects of additional visual oscillation on vection under voluntary eye movement conditions--retinal image motion is critical in vection facilitation.

作者信息

Nakamura Shinji

机构信息

Faculty of Child Development, Division of Clinical Psychology, Nihon Fukushi University, Okuda, Mihama-cho, Aichi 470-3295, Japan.

出版信息

Perception. 2013;42(5):529-36. doi: 10.1068/p7486.

Abstract

Horizontal oscillation introduced into a visual inducer can enhance an observer's illusory perception of vertical self-motion induced by a vertically moving optic flow pattern. To examine the effects of increased retinal image motion on the facilitation of vection, vection strength was analysed under various stimulus conditions where the oscillation of the retinal image was determined both by the motion of the visual stimulus and the observer's eye movements. The results indicated that the facilitation of vection was regulated by the oscillation of the visual stimulus on the observer's retina rather than the stimulus oscillation per se. Thus, the current experiment clearly favours the hypothesis that increased retinal image motion plays a critical role in the facilitation of vection.

摘要

引入视觉诱导物中的水平振荡可以增强观察者对由垂直移动的光流模式引起的垂直自我运动的错觉感知。为了研究视网膜图像运动增加对诱导运动促进作用的影响,在各种刺激条件下分析了诱导运动强度,其中视网膜图像的振荡由视觉刺激的运动和观察者的眼球运动共同决定。结果表明,诱导运动的促进作用是由视觉刺激在观察者视网膜上的振荡调节的,而不是刺激振荡本身。因此,当前实验明确支持了视网膜图像运动增加在诱导运动促进中起关键作用这一假设。

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