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无双眼视差的定量立体深度

Quantitative stereoscopic depth without binocular correspondence.

作者信息

Liu L, Stevenson S B, Schor C M

机构信息

School of Optometry, University of California at Berkeley 94720.

出版信息

Nature. 1994 Jan 6;367(6458):66-9. doi: 10.1038/367066a0.

Abstract

What features in a stereogram define the disparities that lead to stereoscopic depth? The usual answer is that luminance-defined edges from the two eyes are matched and produce depth perception. But parts of an object may be occluded by other objects and absent from one eye's view. It was suggested that unpaired monocular elements might signal occlusion in depth, and the qualitative perception of depth associated with unmatched elements has been shown to be consistent with the geometry of occlusion. We designed a stereogram that simulates a particular occlusion situation: an opaque white rectangle is stereoscopically in front of a large black rectangle pasted on a white background. The position of the occluder is adjusted so that its left edge obscures the left-hand edge of the black rectangle in the right eye view and its right edge obscures the right-hand edge of the black rectangle in the left eye view. We report here that quantitative stereopsis can be seen from this stereogram, even though there are no binocular corresponding luminance edges to match.

摘要

立体图中的哪些特征决定了导致立体深度的视差?通常的答案是,来自双眼的由亮度定义的边缘相互匹配并产生深度感知。但是物体的某些部分可能会被其他物体遮挡,从而在一只眼睛的视野中缺失。有人提出,不成对的单眼元素可能会在深度上标志遮挡,并且与不匹配元素相关的深度定性感知已被证明与遮挡的几何形状一致。我们设计了一张模拟特定遮挡情况的立体图:一个不透明的白色矩形立体地位于粘贴在白色背景上的大黑色矩形前方。遮挡物的位置经过调整,使其左边缘在右眼视图中遮挡黑色矩形的左边缘,其右边缘在左眼视图中遮挡黑色矩形的右边缘。我们在此报告,即使没有双眼对应的亮度边缘可供匹配,从这张立体图中也能看到定量立体视觉。

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