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模糊双眼感知中深度与运动的解码

Decoding of depth and motion in ambiguous binocular perception.

作者信息

Sakai Ko, Ogiya Mitsuharu, Hirai Yuzo

机构信息

Department of Computer Science, Graduate School of Systems and Information Engineering, University of Tsukuba, 1-1-1 Tennodai, Tsukuba, Ibaraki 305-8573, Japan.

出版信息

J Opt Soc Am A Opt Image Sci Vis. 2011 Jul 1;28(7):1445-52. doi: 10.1364/JOSAA.28.001445.

Abstract

We have shown previously that random dots with an interocular time delay (ITD), the time difference of the onset of dots between the two eyes, yield both apparent depth and motion, although depth and velocity are covariant and, thus, ITD is inherently ambiguous. The depth of random dots with ITD was proportional to ITD, suggesting that the visual system assumes a constant velocity of the dots and determines depth on the basis of this constant velocity. We performed psychophysical experiments to investigate whether subjects perceive a constant velocity with a variety of ITDs in random dots aligned along a single vertical line that ensures neither apparent motion nor accidental disparity between the dots. The results showed that subjects perceive a constant velocity for a variety of ITDs with simultaneous perception of depth in proportion to ITD, indicating the priority of depth over velocity in ambiguous binocular perception derived from ITD.

摘要

我们之前已经表明,具有双眼时间延迟(ITD)的随机点,即两眼之间点的起始时间差,会产生明显的深度和运动,尽管深度和速度是协变的,因此ITD本质上是模糊的。具有ITD的随机点的深度与ITD成正比,这表明视觉系统假定点的速度恒定,并基于此恒定速度确定深度。我们进行了心理物理学实验,以研究受试者是否会在沿单一垂直线排列的随机点中,对于各种ITD感知到恒定速度,这些随机点确保点之间既没有明显运动也没有偶然视差。结果表明,受试者对于各种ITD都能感知到恒定速度,同时能感知到与ITD成比例的深度,这表明在由ITD产生的模糊双眼感知中,深度优先于速度。

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