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表面的连续性和不连续性会使立体深度感知产生偏差。

Surface continuity and discontinuity bias the perception of stereoscopic depth.

作者信息

Goutcher Ross, Connolly Eilidh, Hibbard Paul B

机构信息

Psychology, Faculty of Natural Sciences, University of Stirling, Stirling, UK.

Department of Psychology, University of Essex, Essex, UK.

出版信息

J Vis. 2018 Nov 1;18(12):13. doi: 10.1167/18.12.13.

DOI:10.1167/18.12.13
PMID:30458518
Abstract

Binocular disparity signals can provide high acuity information about the positions of points, surfaces, and objects in three-dimensional space. For some stimulus configurations, however, perceived depth is known to be affected by surface organization. Here we examine the effects of surface continuity and discontinuity on such surface organization biases. Participants were presented with a series of random dot surfaces, each with a cumulative Gaussian form in depth. Surfaces varied in the steepness of disparity gradients, via manipulation of the standard deviation of the Gaussian, and/or the presence of differing forms of surface discontinuity. By varying the relative disparity between surface edges, we measured the points of subjective equality, where surfaces of differing steepness and/or discontinuity were perceptually indistinguishable. We compare our results to a model that considers sensitivity to different frequencies of disparity modulation. Across a series of experiments, the observed patterns of change in points of subjective equality suggest that perceived depth is determined by the integration of measures of relative disparity, with a bias toward sharp changes in disparity. Such disparities increase perceived depth when they are in the same direction as the overall disparity. Conversely, perceived depth is reduced by the presence of sharp disparity changes that oppose the sign of the overall depth change.

摘要

双眼视差信号可以提供有关三维空间中点、表面和物体位置的高敏锐度信息。然而,对于某些刺激配置,已知感知深度会受到表面组织的影响。在这里,我们研究表面连续性和不连续性对这种表面组织偏差的影响。向参与者呈现一系列随机点表面,每个表面在深度上都具有累积高斯形式。通过操纵高斯的标准差和/或存在不同形式的表面不连续性,表面在视差梯度的陡度上有所变化。通过改变表面边缘之间的相对视差,我们测量了主观相等点,即不同陡度和/或不连续性的表面在感知上无法区分的点。我们将我们的结果与一个考虑对视差调制不同频率敏感度的模型进行比较。在一系列实验中,观察到的主观相等点的变化模式表明,感知深度是由相对视差测量的整合决定的,并且倾向于视差的急剧变化。当这些视差与整体视差方向相同时,会增加感知深度。相反,与整体深度变化的符号相反的急剧视差变化会降低感知深度。

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