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运动任务中三维结构的二维约束

Two-dimensional constraints on three-dimensional structure from motion tasks.

作者信息

Eagle R A, Blake A

机构信息

Department of Experimental Psychology, University of Oxford, England.

出版信息

Vision Res. 1995 Oct;35(20):2927-41. doi: 10.1016/0042-6989(95)00101-5.

Abstract

Can humans recover metric structure from motion sequences or, as has been claimed by Todd and Bressan [(1990) Perception & Psychophysics, 48, 419-430], are they limited to recovering only relief structure? Two experiments were carried out to investigate this question. In a metric-structure task, the angular thresholds for discriminating two rotating bi-planar structures were approximately 91 deg. By contrast, in a relief-structure task, the angular thresholds for discriminating a planar from a non-planar structure, both undergoing simple rotational motion, were only approximately 11 deg. A computational model is proposed to examine the image motion sensitivity required to perform discriminations of both three-dimensional metric and relief structure from motion. When the experimental data were re-plotted in terms of this two-dimensional sensitivity, the thresholds were found to be the same for both tasks. This finding is related to the model's revelation that recovering metric structure from motion is inherently more noise-sensitive than is recovering relief structure from motion. The conclusion is that the differences in angular thresholds reflect the differing nature of the two tasks. There is no evidence that the visual processes themselves are preferentially sensitive to non-metric over metric structure from motion.

摘要

人类能否从运动序列中恢复度量结构,或者像托德和布雷桑([(1990)《感知与心理物理学》,48,419 - 430])所声称的那样,人类是否仅限于恢复浮雕结构?进行了两项实验来研究这个问题。在一个度量结构任务中,区分两个旋转双平面结构的角度阈值约为91度。相比之下,在一个浮雕结构任务中,区分一个平面结构和一个非平面结构(两者都进行简单旋转运动)的角度阈值仅约为11度。提出了一个计算模型来检验从运动中区分三维度量结构和浮雕结构所需的图像运动敏感度。当根据这种二维敏感度重新绘制实验数据时,发现两个任务的阈值是相同的。这一发现与该模型所揭示的内容相关,即从运动中恢复度量结构本质上比从运动中恢复浮雕结构对噪声更敏感。结论是角度阈值的差异反映了这两个任务的不同性质。没有证据表明视觉过程本身对来自运动的非度量结构比对度量结构更敏感。

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