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旋转和平移物体中的感知内部深度。

Perceived internal depth in rotating and translating objects.

作者信息

Braunstein Myron L, Sauer Craig W, Feria Cary Strumpf, Andersen George J

机构信息

Department of Cognitive Sciences, University of California, Irvine, 92697-5100, USA.

出版信息

Perception. 2002;31(8):943-54. doi: 10.1068/p3294.

Abstract

Previous research has indicated that observers use differences between velocities and ratios of velocities to judge the depth within a moving object, although depth cannot in general be determined from these quantities. In four experiments we examined the relative effects of velocity difference and velocity ratio on judged depth within a transparent object that was rotating about a vertical axis and translating horizontally, examined the effects of the velocity difference for pure rotations and pure translations, and examined the effect of the velocity difference for objects that varied in simulated internal depth. Both the velocity difference and the velocity ratio affected judged depth, with difference having the larger effect. The effect of velocity difference was greater for pure rotations than for pure translations. Simulated depth did not affect judged depth unless there was a corresponding change in the projected width of the object. Observers appear to use the velocity difference, the velocity ratio, and the projected width of the object heuristically to judge internal object depth, rather than using image information from which relative depth could potentially be recovered.

摘要

先前的研究表明,观察者利用速度差异和速度比值来判断移动物体的深度,尽管一般而言,深度无法仅从这些量中确定。在四项实验中,我们研究了速度差异和速度比值对围绕垂直轴旋转并水平平移的透明物体中判断深度的相对影响,研究了纯旋转和纯平移时速度差异的影响,还研究了模拟内部深度不同的物体的速度差异的影响。速度差异和速度比值都影响判断深度,其中差异的影响更大。纯旋转时速度差异的影响比纯平移时更大。除非物体的投影宽度有相应变化,否则模拟深度不会影响判断深度。观察者似乎是启发式地利用速度差异、速度比值和物体的投影宽度来判断物体内部深度,而不是利用可能从中恢复相对深度的图像信息。

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