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极坐标投影对从运动中感知欧几里得结构的影响。

The effect of polar projection on the perception of euclidean structure from motion.

作者信息

Börjesson E, Lind M

机构信息

Dept. of Psychology, Uppsala University, Sweden.

出版信息

Percept Psychophys. 1996 Aug;58(6):871-82. doi: 10.3758/bf03205489.

DOI:10.3758/bf03205489
PMID:8768182
Abstract

The aim of the present study was to examine whether euclidean structure could be recovered from apparent motion sequences under polar projection. In Experiment 1, length judgments of two sides of a simulated triangle rotating in depth did not reveal effects of type of projection, polar or parallel, on the perception of euclidean structure. However, there was a significant correlation between simulated and produced slants. The results also indicated that absolute depth judgments could not be accounted for by a random mechanism suggested by Todd and Bressan (1990). Experiments 2 and 3, in which a continuous dot surface was substituted for the triangle, showed that polar projection information from a relatively large visual angle, 17.40 degrees, as compared with a small visual angle, 4.35 degrees, facilitated discrimination of depth. Produced height:width ratios were consistently related to simulated shape, although the depth dimension was underestimated. Finally, Experiment 4 showed significant correlations between simulated and produced height:width ratios that could be accounted for only by an analysis in which X and Y velocities were treated independently. As in previous experiments, the variation in the depth dimension was underestimated. It was concluded that the visual system utilizes the additional information that is available in polar projection when recovering structure from motion, but that for different reasons the perceived structure does not become euclidean. These reasons are discussed briefly.

摘要

本研究的目的是检验在极坐标投影下,欧几里得结构是否能够从表观运动序列中恢复。在实验1中,对一个在深度上旋转的模拟三角形的两条边的长度判断,并未揭示极坐标投影或平行投影类型对欧几里得结构感知的影响。然而,模拟倾斜度与产生的倾斜度之间存在显著相关性。结果还表明,绝对深度判断不能用托德和布雷桑(1990)提出的随机机制来解释。在实验2和3中,用连续的点表面代替了三角形,结果表明,与4.35度的小视角相比,来自17.40度相对大视角的极坐标投影信息有助于深度辨别。产生的高宽比始终与模拟形状相关,尽管深度维度被低估。最后,实验4表明,模拟高宽比与产生的高宽比之间存在显著相关性,这只能通过独立处理X和Y速度的分析来解释。与之前的实验一样,深度维度的变化被低估了。研究得出结论,视觉系统在从运动中恢复结构时利用了极坐标投影中可用的额外信息,但由于不同原因,感知到的结构并未成为欧几里得结构。这些原因将简要讨论。

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引用本文的文献

1
Perceiving motion and rigid structure from optic flow: a combined weak-perspective and polar-perspective approach.从光流中感知运动和刚体结构:一种结合弱透视和极透视的方法。
Percept Psychophys. 1996 Oct;58(7):1085-102. doi: 10.3758/bf03206835.

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Perceiving motion and rigid structure from optic flow: a combined weak-perspective and polar-perspective approach.从光流中感知运动和刚体结构:一种结合弱透视和极透视的方法。
Percept Psychophys. 1996 Oct;58(7):1085-102. doi: 10.3758/bf03206835.
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