Motion parallax driven by head movements: Conditions for visual stability, perceived depth, and perceived concomitant motion

Motion parallax driven by head movements: Conditions for visual stability, perceived depth, and perceived concomitant motion
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DOI:
10.1068/p5221
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发表时间:
2005-01-01
期刊:
影响因子:
1.7
通讯作者:
Ujike, H
Ujike, H
中科院分区:
心理学4区
文献类型:
--
作者:
Ono, H;Ujike, H

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将屏幕上刺激的运动与头部的运动联系起来,我们研究了视觉稳定性和深度知觉作为头部运动速度和视差的函数。在实验1中,对于不同的头部速度,观察者调整视差以找到(a)深度阈值和(B)伴随运动阈值。在这些阈值之间,可以看到深度,但没有感知到运动。在实验2中,对于不同的头部速度,观察者调整视差,以产生相同的感知深度。较慢的头部运动需要更大的视差来产生与较快的头部运动相同的感知深度。在实验3中,观察者报告了不同视差幅度的感知深度。知觉深度与较小的视差无运动知觉,但开始下降,较大的视差和伴随的运动被认为是。在视差较大的情况下,只能看到运动。
Yoking the movement of the stimulus on the screen to the movement of the head, we examined visual stability and depth perception as a function of head-movement velocity and parallax. In experiment 1, for different head velocities, observers adjusted the parallax to find (a) the depth threshold and (b) the concomitant-motion threshold. Between these thresholds, depth was seen with no perceived motion. In experiment 2, for different head velocities, observers adjusted the parallax to produce the same perceived depth. A slower head movement required a greater parallax to produce the same perceived depth as faster head movements. In experiment 3, observers reported the perceived depth for different parallax magnitudes. Perceived depth covaried with smaller parallax without motion perception, but began to decrease with larger parallax and concomitant motion was seen. Only motion was seen with the larger parallax.