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Illusory Oscillation of the Central Rotation Axis

机译:中心旋转轴的虚假振动

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In this study, we report a novel visual illusion for rotational motion, in which the central rotation axis of a partially invisible (apparent) square is perceived as exhibiting oscillatory rotation. To investigate the cause of this illusion, we measured the central position of a static apparent shape using an adjustment method (Experiment 1) and manipulated the speed of the rotating apparent square to test whether the illusion could be cancelled out by counteracting rotation using a constant method (Experiment 2). The results revealed that the perceived central position of a static apparent shape was shifted toward the outside. The shifted position depended on the orientation of the stimulus, and its position was arranged as if it was moving in a circular trajectory. In addition, the cancellation technique using counteracting rotation was successful, and cancellation of faster rotation required a greater radius of counteracting rotation. These results indicated that the illusion is induced by an interaction between illusory shifts of the central position of the static shape and the summation of motion vectors or motion momentum (e.g., centrifugal force) derived from shape representation by perceptual completion.
机译:在这项研究中,我们报告了一种新颖的旋转运动的视觉错觉,其中部分不可见(视在)正方形的中心旋转轴被感知为表现出振荡旋转。为了调查这种错觉的原因,我们使用一种调整方法(实验1)测量了静态视在形状的中心位置,并操纵了旋转视在正方形的速度,以测试是否可以通过使用常数抵消旋转来消除这种错觉方法(实验2)。结果表明,静态表观形状的感知中心位置向外部偏移。移位的位置取决于刺激的方向,并且其位置被安排为好像它沿圆形轨迹运动。另外,使用抵消旋转的消除技术是成功的,并且更快旋转的抵消需要更大的抵消旋转半径。这些结果表明,错觉是由静态形状的中心位置的错觉位移与通过感知完成从形状表示中得出的运动矢量或运动动量(例如离心力)之和之间的相互作用引起的。

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