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Effects of auditory information on self-motion perception during simultaneous presentation of visual shearing motion

机译:同时呈现视觉剪切运动时听觉信息对自我运动知觉的影响

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摘要

Recent studies have found that self-motion perception induced by simultaneous presentation of visual and auditory motion is facilitated when the directions of visual and auditory motion stimuli are identical. They did not, however, examine possible contributions of auditory motion information for determining direction of self-motion perception. To examine this, a visual stimulus projected on a hemisphere screen and an auditory stimulus presented through headphones were presented separately or simultaneously, depending on experimental conditions. The participant continuously indicated the direction and strength of self-motion during the 130-s experimental trial. When the visual stimulus with a horizontal shearing rotation and the auditory stimulus with a horizontal one-directional rotation were presented simultaneously, the duration and strength of self-motion perceived in the opposite direction of the auditory rotation stimulus were significantly longer and stronger than those perceived in the same direction of the auditory rotation stimulus. However, the auditory stimulus alone could not sufficiently induce self-motion perception, and if it did, its direction was not consistent within each experimental trial. We concluded that auditory motion information can determine perceived direction of self-motion during simultaneous presentation of visual and auditory motion information, at least when visual stimuli moved in opposing directions (around the yaw-axis). We speculate that the contribution of auditory information depends on the plausibility and information balance of visual and auditory information.
机译:最近的研究发现,当视觉和听觉运动刺激的方向相同时,由视觉和听觉运动的同时呈现引起的自我运动知觉会得到促进。但是,他们没有检查听觉运动信息对确定自我运动感知方向的可能贡献。为了检查这一点,视实验条件而定,分别或同时显示了投射在半球屏幕上的视觉刺激和通过耳机呈现的听觉刺激。在130年代的试验中,参与者不断指出自我运动的方向和强度。当同时呈现水平剪切旋转的视觉刺激和水平单向旋转的听觉刺激时,在听觉旋转刺激的相反方向上感知到的自我运动的持续时间和强度明显长于并感知到在听觉旋转刺激的同一方向上。但是,仅听觉刺激不能充分诱发自我运动知觉,如果能够,则其方向在每个实验试验中均不一致。我们得出的结论是,听觉运动信息至少可以在视觉刺激沿相反方向(围绕偏航轴)移动时确定视觉和听觉运动信息的同时呈现过程中感知到的自我运动方向。我们推测听觉信息的贡献取决于视觉和听觉信息的合理性和信息平衡。

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