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通过深度产生强烈的运动感知,但没有强烈的深度位置感知。

Strong percepts of motion through depth without strong percepts of position in depth.

作者信息

Rokers Bas, Cormack Lawrence K, Huk Alexander C

机构信息

Neurobiology, Center for Perceptual Systems, Institute for Neuroscience, & Imaging Research Center, The University of Texas at Austin, Austin, TX 78712, USA.

出版信息

J Vis. 2008 Apr 15;8(4):6.1-10. doi: 10.1167/8.4.6.

DOI:10.1167/8.4.6
PMID:18484845
Abstract

Encoding the motion of objects through three spatial dimensions is a fundamental challenge for the visual system. Two binocular cues could contribute to the perception of motion through depth: changes in horizontal disparity (CD) and interocular velocity differences (IOVD). Although conceptually distinct, both cues are typically present when real objects move. Direct experimental isolation of the putative IOVD cue has remained elusive, and it is therefore unclear to what extent the visual system relies on it. We have found that binocularly anticorrelated stimuli impair position in depth judgments, but motion through depth judgments for the same stimuli are relatively unaffected. This dissociation of direction of motion from position in depth provides strong evidence that percepts of motion through depth are not based exclusively on estimating changes in disparity. Horizontal IOVDs appear to complement the CD cue. Vertical IOVDs fail to yield comparable performance, further implicating a comparison of horizontal interocular velocity and also ruling out explanations of our results based on monocular cues. These results suggest that (1) IOVDs are a robust cue to motion through depth; (2) IOVDs and retinal disparities exhibit similar horizontal/vertical anisotropies, consistent with the geometry of binocular viewing; and (3) binocular anticorrelation provides means to titrate the relative contributions of CD and IOVD cues.

摘要

对物体在三个空间维度上的运动进行编码是视觉系统面临的一项基本挑战。两种双眼线索可能有助于通过深度感知运动:水平视差变化(CD)和双眼速度差异(IOVD)。尽管在概念上有所不同,但当真实物体移动时,这两种线索通常都会出现。对假定的IOVD线索进行直接实验分离一直难以实现,因此尚不清楚视觉系统在多大程度上依赖于它。我们发现,双眼反相关刺激会损害深度位置判断,但相同刺激的深度运动判断相对不受影响。这种运动方向与深度位置的分离提供了有力证据,表明深度运动感知并非完全基于视差变化的估计。水平IOVD似乎补充了CD线索。垂直IOVD未能产生可比的性能,这进一步暗示了水平双眼速度的比较,也排除了基于单眼线索对我们结果的解释。这些结果表明:(1)IOVD是深度运动的有力线索;(2)IOVD和视网膜视差表现出相似的水平/垂直各向异性,这与双眼视觉的几何结构一致;(3)双眼反相关提供了一种方法来调节CD和IOVD线索的相对贡献。

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