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运动条纹在动态佐尔纳错觉感知中的作用。

The role of motion streaks in the perception of the kinetic Zollner illusion.

作者信息

Khuu Sieu K

机构信息

The School of Optometry and Vision Science, The University of New South Wales, Sydney, New South Wales.

出版信息

J Vis. 2012 Jun 12;12(6):19. doi: 10.1167/12.6.19.

Abstract

In classic geometric illusions such as the Zollner illusion, vertical lines superimposed on oriented background lines appear tilted in the direction opposite to the background. In kinetic forms of this illusion, an object moving over oriented background lines appears to follow a titled path, again in the direction opposite to the background. Existing literature does not proffer a complete explanation of the effect. Here, it is suggested that motion streaks underpin the illusion; that the effect is a consequence of interactions between detectors tuned to the orientation of background lines and those sensing the motion streaks that arise from fast object motion. This account was examined in the present study by measuring motion-tilt induction under different conditions in which the strength or salience of motion streaks was attenuated: by varying object speed (Experiment 1), contrast (Experiment 2), and trajectory/length by changing the element life-time within the stimulus (Experiment 3). It was predicted that, as motion streaks become less available, background lines would less affect the perceived direction of motion. Consistent with this prediction, the results indicated that, with a reduction in object speed below that required to generate motion streaks (< 1.12°/s), Weber contrast (< 0.125) and motion streak length (two frames) reduced or extinguished the motion-tilt-induction effect. The findings of the present study are consistent with previous reports and computational models that directly combine form and motion information to provide an effective determinant of motion direction.

摘要

在经典的几何错觉中,如佐尔纳错觉,叠加在有方向的背景线上的垂直线条看起来会向与背景相反的方向倾斜。在这种错觉的动态形式中,一个在有方向的背景线上移动的物体似乎会沿着一条倾斜的路径移动,同样是朝着与背景相反的方向。现有文献并未对这种效应给出完整的解释。在此,有人提出运动条纹是这种错觉的基础;这种效应是由调谐到背景线方向的探测器与感知快速物体运动产生的运动条纹的探测器之间相互作用的结果。在本研究中,通过在不同条件下测量运动倾斜诱导来检验这一观点,在这些条件下运动条纹的强度或显著性被减弱:通过改变物体速度(实验1)、对比度(实验2)以及通过改变刺激内元素的寿命来改变轨迹/长度(实验3)。据预测,随着运动条纹变得不那么明显,背景线对感知到的运动方向的影响就会越小。与这一预测一致,结果表明,当物体速度降低到产生运动条纹所需速度以下(<1.12°/秒)、韦伯对比度(<0.125)以及运动条纹长度(两帧)降低或消除时,运动倾斜诱导效应就会减弱或消失。本研究的结果与之前的报告以及直接结合形状和运动信息以提供运动方向有效决定因素的计算模型一致。

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