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The Role of Vertical Disparity in Distance and Depth Perception as Revealed by Different Stereo-Camera Configurations

机译:垂直视差在距离和深度感知中的作用如不同的立体相机配置所揭示

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摘要

Vertical binocular disparity is a source of distance information allowing the portrayal of the layout and 3D metrics of the visual space. The role of vertical disparity in the perception of depth, size, curvature, or slant of surfaces was revealed in several previous studies using cue conflict paradigms. In this study, we varied the configuration of stereo-cameras to investigate how changes in the horizontal and vertical disparity fields, conflicting with the vergence cue, affect perceived distance and depth. In four experiments, observers judged the distance of a cylinder displayed in front of a large fronto-parallel surface. Experiment 1 revealed that the presence of a background surface decreases the uncertainty in judgments of distance, suggesting that observers use the relative horizontal disparity between the target and the background as a cue to distance. Two other experiments showed that manipulating the pattern of vertical disparity affected both distance and depth perception. When vertical disparity specified a nearer distance than vergence (convergent cameras), perceived distance and depth were underestimated as compared with the condition where vertical disparity was congruent with vergence cues (parallel cameras). When vertical disparity specified a further distance than vergence, namely an infinite distance, distance and depth were overestimated. The removal of the vertical distortion lessened the effect on perceived distance. Overall, the results suggest that the vertical disparity introduced by the specific camera configuration is mainly responsible for the effect. These findings outline the role of vertical disparity in distance and depth perception and support the use of parallel cameras for designing stereograms.
机译:垂直双眼视差是距离信息的来源,可以描述视觉空间的布局和3D度量。先前的一些使用线索冲突范例的研究揭示了垂直视差在感知深度,大小,曲率或表面倾斜方面的作用。在这项研究中,我们改变了立体相机的配置,以研究水平和垂直视差场中的变化如何与聚散线索冲突,从而影响感知的距离和深度。在四个实验中,观察者判断了显示在大额平行表面前面的圆柱的距离。实验1显示,背景表面的存在降低了距离判断的不确定性,这表明观察者将目标和背景之间的相对水平差异用作距离的提示。另外两个实验表明,操纵垂直视差模式会影响距离和深度感知。当垂直视差指定的距离比聚散镜头(会聚相机)更近时,与垂直视差与聚散提示一致的条件(平行相机)相比,感知距离和深度被低估了。当垂直视差指定的距离比发散距离远时,即无限距离,距离和深度被高估了。垂直失真的消除减小了对感知距离的影响。总体而言,结果表明,特定相机配置引入的垂直视差主要是造成这种效果的原因。这些发现概述了垂直视差在距离和深度感知中的作用,并支持使用平行相机设计立体图。

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