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相对深度间隔的感知:感知深度中的系统偏差。

Perception of relative depth interval: systematic biases in perceived depth.

作者信息

Harris Julie M, Chopin Adrien, Zeiner Katharina, Hibbard Paul B

机构信息

Vision Lab, School of Psychology, University of St Andrews, St Andrews, UK.

出版信息

Q J Exp Psychol (Hove). 2012;65(1):73-91. doi: 10.1080/17470218.2011.589520. Epub 2011 Sep 19.

Abstract

Given an estimate of the binocular disparity between a pair of points and an estimate of the viewing distance, or knowledge of eye position, it should be possible to obtain an estimate of their depth separation. Here we show that, when points are arranged in different vertical geometric configurations across two intervals, many observers find this task difficult. Those who can do the task tend to perceive the depth interval in one configuration as very different from depth in the other configuration. We explore two plausible explanations for this effect. The first is the tilt of the empirical vertical horopter: Points perceived along an apparently vertical line correspond to a physical line of points tilted backwards in space. Second, the eyes can rotate in response to a particular stimulus. Without compensation for this rotation, biases in depth perception would result. We measured cyclovergence indirectly, using a standard psychophysical task, while observers viewed our depth configuration. Biases predicted from error due either to cyclovergence or to the tilted vertical horopter were not consistent with the depth configuration results. Our data suggest that, even for the simplest scenes, we do not have ready access to metric depth from binocular disparity.

摘要

给定一对点之间的双眼视差估计值和观察距离估计值,或者眼睛位置信息,应该能够获得它们深度间隔的估计值。在这里,我们表明,当点在两个区间以不同的垂直几何配置排列时,许多观察者发现这项任务很困难。能够完成这项任务的人往往会将一种配置中的深度间隔感知为与另一种配置中的深度非常不同。我们探讨了对此效应的两种合理的解释。第一种是经验性垂直视野单像区的倾斜:沿着明显垂直线感知的点对应于在空间中向后倾斜的物理点线。第二种是眼睛可以响应特定刺激而旋转。如果不对此旋转进行补偿,就会导致深度感知偏差。当观察者观看我们的深度配置时,我们使用标准的心理物理学任务间接测量了眼球旋转会聚。由眼球旋转会聚或倾斜的垂直视野单像区引起的误差所预测的偏差与深度配置结果不一致。我们的数据表明,即使对于最简单的场景,我们也无法通过双眼视差直接获得度量深度。

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