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A Computational Model of Afterimage Rotation in the Peripheral Drift Illusion Based on Retinal ON/OFF Responses

机译:基于视网膜开/关响应的周边漂移幻觉中残像旋转的计算模型

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摘要

Human observers perceive illusory rotations after the disappearance of circularly repeating patches containing dark-to-light luminance. This afterimage rotation is a very powerful phenomenon, but little is known about the mechanisms underlying it. Here, we use a computational model to show that the afterimage rotation can be explained by a combination of fast light adaptation and the physiological architecture of the early visual system, consisting of ON- and OFF-type visual pathways. In this retinal ON/OFF model, the afterimage rotation appeared as a rotation of focus lines of retinal ON/OFF responses. Focus lines rotated clockwise on a light background, but counterclockwise on a dark background. These findings were consistent with the results of psychophysical experiments, which were also performed by us. Additionally, the velocity of the afterimage rotation was comparable with that observed in our psychophysical experiments. These results suggest that the early visual system (including the retina) is responsible for the generation of the afterimage rotation, and that this illusory rotation may be systematically misinterpreted by our high-level visual system.
机译:观察者看到圆形重复的包含暗到亮亮度的斑块消失后,就会感觉到幻觉的旋转。残像旋转是一种非常有力的现象,但对其背后的机理知之甚少。在这里,我们使用一个计算模型来显示残像旋转可以通过快速光适应和早期视觉系统的生理结构(由ON型和OFF型视觉路径组成)的组合来解释。在该视网膜ON / OFF模型中,残像旋转表现为视网膜ON / OFF响应的聚焦线的旋转。聚焦线在浅色背景上顺时针旋转,但在深色背景上逆时针旋转。这些发现与我们进行的心理物理实验的结果一致。此外,残像旋转的速度与我们的心理物理实验中观察到的速度相当。这些结果表明,早期的视觉系统(包括视网膜)是造成残像旋转的原因,而这种错觉的旋转可能会被我们的高级视觉系统系统地误解。

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