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从双视图和多视图显示中的运动推断结构。

Inferring structure from motion in two-view and multiview displays.

作者信息

Liter J C, Braunstein M L, Hoffman D D

机构信息

Department of Cognitive Sciences, University of California, Irvine 92717.

出版信息

Perception. 1993;22(12):1441-65. doi: 10.1068/p221441.

Abstract

Five experiments were conducted to examine constraints used to interpret structure-from-motion displays. Theoretically, two orthographic views of four or more points in rigid motion yield a one-parameter family of rigid three-dimensional (3-D) interpretations. Additional views yield a unique rigid interpretation. Subjects viewed two-view and thirty-view displays of five-point objects in apparent motion. The subjects selected the best 3-D interpretation from a set of 89 compatible alternatives (experiments 1-3) or judged depth directly (experiment 4). In both cases the judged depth increased when relative image motion increased, even when the increased motion was due to increased simulation rotation. Subjects also judged rotation to be greater when either simulated depth or simulated rotation increased (experiment 4). The results are consistent with a heuristic analysis in which perceived depth is determined by relative motion.

摘要

进行了五项实验来检验用于解释运动视差显示结构的约束条件。从理论上讲,四个或更多点的刚体运动的两个正视图会产生一个单参数的刚体三维(3-D)解释族。额外的视图会产生唯一的刚体解释。受试者观看了五点物体在视运动中的双视图和三十视图显示。受试者从一组89个兼容选项中选择最佳的3-D解释(实验1-3)或直接判断深度(实验4)。在这两种情况下,当相对图像运动增加时,判断出的深度都会增加,即使增加的运动是由于模拟旋转增加所致。当模拟深度或模拟旋转增加时,受试者也会判断旋转更大(实验4)。结果与一种启发式分析一致,即感知深度由相对运动决定。

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