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[刺激配置和几何变换作为二维和三维频闪运动的决定因素]

[Stimulus configuration and geometric transformation as determinants in two- and three-dimensional stroboscopic motion].

作者信息

Ohmura H

出版信息

Shinrigaku Kenkyu. 1983 Apr;54(1):15-21.

PMID:6674660
Abstract

Geometric transformation theory which claims the correspondence between the stroboscopic motion and the geometric transformation of stimulus-figures in two- or three-dimensional rotation was examined from the viewpoint of stimulus configurational feature theory which stresses the role of parallel lines for three-dimensional stroboscopic rotation. It was found that the two theories were compatible to the extent that the "equality in length" of adjacent parallel elements powerfully contributes to the formation of an axis for three-dimensional rotation. This was true even in the case where there was no three-dimensional rotation in its geometry. The "inequality of length" of parallel lines lost the power to generate three-dimensional stroboscopic rotation but did not affect two-dimensional rotation at all. In all cases the angle of rotation in either two-dimensional or three-dimensional geometric rotation did not play any role as determinants of the types of stroboscopic rotation.

摘要

几何变换理论声称频闪运动与二维或三维旋转中刺激图形的几何变换之间存在对应关系,本研究从强调平行线在三维频闪旋转中作用的刺激构型特征理论的角度对其进行了检验。结果发现,这两种理论在一定程度上是兼容的,即相邻平行元素的“长度相等”有力地促进了三维旋转轴的形成。即使在其几何结构中不存在三维旋转的情况下,也是如此。平行线的“长度不等”失去了产生三维频闪旋转的能力,但对二维旋转完全没有影响。在所有情况下,二维或三维几何旋转中的旋转角度作为频闪旋转类型的决定因素均不起任何作用。

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