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跑步机行走过程中的深度动感。

Vection in depth during treadmill walking.

作者信息

Ash April, Palmisano Stephen, Apthorp Deborah, Allison Robert S

机构信息

School of Psychology, University of Wollongong, Wollongong, Northfields Avenue, NSW 2522, Australia.

出版信息

Perception. 2013;42(5):562-76. doi: 10.1068/p7449.

Abstract

Vection has typically been induced in stationary observers (ie conditions providing visual-only information about self-motion). Two recent studies have examined vection during active treadmill walking--one reported that treadmill walking in the same direction as the visually simulated self-motion impaired vection (Onimaru et al, 2010 Journal of Vision 10(7):860), the other reported that it enhanced vection (Seno et al, 2011 Perception 40 747-750; Seno et al, 2011 Attention, Perception, & Psychophysics 73 1467-1476). Our study expands on these earlier investigations of vection during observer active movement. In experiment 1 we presented radially expanding optic flow and compared the vection produced in stationary observers with that produced during walking forward on a treadmill at a 'matched' speed. Experiment 2 compared the vection induced by forward treadmill walking while viewing expanding or contracting optic flow with that induced by viewing playbacks of these same displays while stationary. In both experiments subjects' tracked head movements were either incorporated into the self-motion displays (as simulated viewpoint jitter) or simply ignored. We found that treadmill walking always reduced vection (compared with stationary viewing conditions) and that simulated viewpoint jitter always increased vection (compared with constant velocity displays). These findings suggest that while consistent visual-vestibular information about self-acceleration increases vection, biomechanical self-motion information reduces this experience (irrespective of whether it is consistent or not with the visual input).

摘要

通常是在静止的观察者中诱发运动错觉(即仅提供关于自身运动的视觉信息的条件)。最近有两项研究考察了在主动跑步机行走过程中的运动错觉——一项研究报告称,在与视觉模拟的自身运动相同方向上的跑步机行走会削弱运动错觉(鬼丸等人,《视觉杂志》2010年第10卷第7期:860页),另一项研究报告称会增强运动错觉(濑野等人,《感知》2011年第40卷,747 - 750页;濑野等人,《注意、感知与心理物理学》2011年第73卷,1467 - 1476页)。我们的研究扩展了这些早期对观察者主动运动过程中运动错觉的研究。在实验1中,我们呈现了径向扩展的光流,并比较了静止观察者产生的运动错觉与在跑步机上以“匹配”速度向前行走时产生的运动错觉。实验2比较了在跑步机上向前行走时观看扩展或收缩光流所诱发的运动错觉与静止时观看这些相同显示的回放所诱发的运动错觉。在两个实验中,受试者追踪的头部运动要么被纳入自身运动显示中(作为模拟视点抖动),要么被简单忽略。我们发现,跑步机行走总是会降低运动错觉(与静止观看条件相比),而模拟视点抖动总是会增加运动错觉(与匀速显示相比)。这些发现表明,虽然关于自身加速度的一致视觉 - 前庭信息会增加运动错觉,但生物力学自身运动信息会减少这种体验(无论它与视觉输入是否一致)。

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