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视觉抖动会抑制直立观察者的侧倾运动错觉。

Visual jitter inhibits roll vection for an upright observer.

作者信息

Nakamura Shinji

机构信息

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

出版信息

Perception. 2013;42(7):751-8. doi: 10.1068/p7494.

Abstract

It is widely known that visual jitter convoluted with an expanding optical flow can robustly enhance an observer's illusory perception of forward self-motion (eg Palmisano et al 2000 Perception 29 57-67). In the present investigation I examine the effects of visual jitter on visually induced self-rotation (roll vection). The results showed that the strength of roll vection was decreased under conditions where the visual jitter was convoluted into the rotating visual stimulus. Although the extent of the decrement differed according to the amplitude and direction of the jitter, visual jitters in any direction with any amplitude can significantly reduce vection strength, at least under the conditions examined in the present experiment. The perceptual process underlying jitter effects on vection is discussed in the context of visuo-vestibular conflict in perception of self-motion.

摘要

众所周知,视觉抖动与扩展的光流相卷积能够有力地增强观察者对向前自我运动的错觉感知(例如,帕尔米萨诺等人,《感知》,2000年,第29卷,第57 - 67页)。在本研究中,我考察了视觉抖动对视觉诱发的自我旋转(侧倾运动)的影响。结果表明,当视觉抖动与旋转视觉刺激相卷积时,侧倾运动的强度会降低。尽管降低的程度因抖动的幅度和方向而异,但在本实验所考察的条件下,任何幅度和任何方向的视觉抖动都能显著降低运动强度。本文将在自我运动感知中的视觉与前庭冲突的背景下讨论抖动对运动影响的感知过程。

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