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由随机点的遮挡和剪切运动引发的深度感知。

Perceptions of depth elicited by occluded and shearing motions of random dots.

作者信息

Royden C S, Baker J F, Allman J

机构信息

Division of Biology, California Institute of Technology, Pasadena 91125.

出版信息

Perception. 1988;17(3):289-96. doi: 10.1068/p170289.

DOI:10.1068/p170289
PMID:3226870
Abstract

A computer-controlled display of random dots was used to study perceptions of depth. In this display, a field of stationary random dots surrounded a rectangular area in which random dots moved with uniform velocity in a single direction. The boundaries of this rectangle did not move. When dot motion was perpendicular to the longer boundary of the rectangle (occluded motion), the rectangle seemed to be behind the stationary background surround. Motion parallel to the longer boundary of the rectangle (shearing motion) made it appear in front of the surround. The relative lengths of the sides of the rectangle determined which effect predominated. Thus, for motion perpendicular to the long axis of the rectangle the occlusion predominated and naive subjects reported that the central area seemed farther away than the surround. For shearing motion parallel to the long axis, the subjects reported that the rectangle was closer than the surround and the strength of both effects also depended on the length-to-width ratio of the rectangle. If there was occluded motion along the long axis, as the length-to-width ratio increased so did the likelihood that subjects would report seeing the rectangle behind the surround. Conversely, with shearing motion along the long axis, increasing the length-to-width ratio increased the likelihood that the rectangle would appear unambiguously in front of the surround. Some subjects integrated the two cues with the resulting perception being a rotating cylinder. The occlusion effect was stronger than the shearing effect.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

使用计算机控制的随机点显示来研究深度感知。在这个显示中,一个静止随机点的区域围绕着一个矩形区域,其中随机点以均匀速度沿单一方向移动。这个矩形的边界不移动。当点的运动垂直于矩形的较长边界(遮挡运动)时,矩形似乎在静止的背景区域之后。与矩形较长边界平行的运动(切变运动)使它看起来在背景区域之前。矩形边的相对长度决定了哪种效果占主导。因此,对于垂直于矩形长轴的运动,遮挡占主导,未经训练的受试者报告说中心区域似乎比周围更远。对于平行于长轴的切变运动,受试者报告说矩形比周围更近,并且两种效果的强度也取决于矩形的长宽比。如果沿着长轴有遮挡运动,随着长宽比增加,受试者报告看到矩形在周围之后的可能性也增加。相反,对于沿着长轴的切变运动,增加长宽比增加了矩形明确出现在周围之前的可能性。一些受试者整合了这两种线索,最终的感知是一个旋转的圆柱体。遮挡效果比切变效果更强。(摘要截于250字)

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Perceptions of depth elicited by occluded and shearing motions of random dots.由随机点的遮挡和剪切运动引发的深度感知。
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