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The Role of Stereopsis, Motion Parallax, Perspective andAngle Polarity in Perceiving 3-D Shape

机译:立体视觉,运动视差,视角和角度极性在感知3D形状中的作用

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We studied how stimulus attributes (angle polarity and perspective) and data-driven signals (motion parallax and binocular disparity) affect recovery of 3-D shape. We used physical stimuli, which consisted of two congruent trapezoids forming a dihedral angle. To study the effects of the stimulus attributes, we used 2 ×2 combinations of convex/concave angles and proper/reverse perspective cues. To study the effects of binocular disparity and motion parallax, we used 2 ×2 combinations of monocular/binocular viewing with moving/stationary observers. The task was to report the depth of the right vertical edge relative to a fixation point positioned at a different depth. In Experiment 1 observers also had the option of reporting that the right vertical edge and fixation point were at the same depth. However, in Experiment 2, observers were only given two response options: is the right vertical edge in front of/behind the fixation point? We found that across all stimulus configurations, perspective is a stronger cue than angle polarity in recovering 3-D shape; we also confirm the bias to perceive convex compared to concave angles. In terms of data-driven signals, binocular disparity recovered 3-D shape better than motion parallax. Interestingly, motion parallax improved performance for monocular viewing but not for binocular viewing.
机译:我们研究了刺激属性(角度极性和角度)和数据驱动信号(运动视差和双眼视差)如何影响3D形状的恢复。我们使用了物理刺激,该刺激由两个形成二面角的全等梯形组成。为了研究刺激属性的影响,我们使用了凸角/凹角和适当/反向透视线索的2×2组合。为了研究双目视差和运动视差的影响,我们使用了2×2单眼/双眼观察与移动/固定观察者的组合。任务是报告相对于位于不同深度的固定点的右垂直边缘的深度。在实验1中,观察者还可以选择报告右垂直边缘和固定点在同一深度。但是,在实验2中,观察者仅获得两个响应选项:固定点之前/之后的右侧垂直边缘是?我们发现,在所有刺激配置中,透视在恢复3D形状时比角度极性更强。我们还确认了与凹角相比,感知凸的偏见。在数据驱动信号方面,双眼视差比运动视差更能恢复3D形状。有趣的是,运动视差改善了单眼观看的性能,但没有改善双眼观看的性能。

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