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先前的深度信息会使运动感知产生偏差。

Prior depth information can bias motion perception.

作者信息

Graf Erich W, Adams Wendy J, Lages Martin

机构信息

Department of Psychology, University of Southampton, Southampton, UK.

出版信息

J Vis. 2004 May 19;4(6):427-33. doi: 10.1167/4.6.2.

Abstract

Previous studies of the motion aperture problem have shown that the direction of grating motion can be biased by using binocular disparity to designate borders of the aperture as intrinsic (belonging to the grating) or extrinsic (resulting from occlusion of the grating). Observers report motion in the direction of the extrinsic border, as if the grating was extended and moving underneath an occluding surface. Here we investigate whether prior information about depth ordering, given by structure-from-motion, can bias the perceived motion direction of a subsequent moving grating in a similar manner. We presented an aperture stimulus that rotated about its vertical and horizontal axes, revealing the depth relationships (intrinsic and extrinsic) of the aperture borders. The grating then translated within the aperture and observers reported the direction of perceived motion. The test stimulus contained no information about the depth ordering of the scene. We found that observers' reported motion shifted toward the direction of the occluding edges, consistent with the intrinsic-extrinsic border predictions. These results indicate that prior scene information, not just depth information explicitly defined in the test stimulus, is used to help solve the motion aperture problem.

摘要

以往关于运动孔径问题的研究表明,通过利用双眼视差将孔径边界指定为内在的(属于光栅)或外在的(由光栅遮挡产生),光栅运动的方向可能会产生偏差。观察者报告的运动方向是外在边界的方向,就好像光栅在遮挡表面下方延伸并移动一样。在这里,我们研究由运动视差提供的关于深度排序的先验信息是否能以类似的方式使后续移动光栅的感知运动方向产生偏差。我们呈现了一个绕其垂直轴和水平轴旋转的孔径刺激,揭示了孔径边界的深度关系(内在和外在)。然后光栅在孔径内平移,观察者报告感知到的运动方向。测试刺激不包含关于场景深度排序的信息。我们发现观察者报告的运动朝着遮挡边缘的方向偏移,这与内在 - 外在边界预测一致。这些结果表明,不仅是测试刺激中明确界定的深度信息,先验场景信息也被用于帮助解决运动孔径问题。

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