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The Flash-Lag Fröhlich and Related Motion Illusions Are Natural Consequences of Discrete Sampling in the Visual System

机译:闪光滞后Fröhlich和相关的运动错觉是视觉系统中离散采样的自然结果

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摘要

The Fröhlich effect and flash-lag effect, in which moving objects appear advanced along their trajectories compared to their actual positions, have defied a simple and consistent explanation. Here, I show that these illusions can be understood as a natural consequence of temporal compression in the human visual system. Discrete sampling at some stage of sensory perception has long been considered, and if it were true, it would necessarily lead to these illusions of motion. I show that the discrete perception hypothesis, with a single free parameter, the perceptual moment or sampling rate, can quantitatively explain all of the scenarios of the Fröhlich and flash-lag effect. I interpret discrete perception as the implementation of data compression in the brain, and our conscious perception as the reconstruction of the compressed input.
机译:Fröhlich效应和闪光滞后效应使运动的物体与实际位置相比沿其轨迹前进,这已经成为一种简单而一致的解释。在这里,我表明这些错觉可以理解为人类视觉系统中时间压缩的自然结果。长期以来,人们一直在考虑在感官感知的某个阶段进行离散采样,如果这是真的,则必然会导致这些运动错觉。我表明,具有单个自由参数,感性矩或采样率的离散感知假设可以定量地解释Fröhlich和闪滞效应的所有情况。我将离散感知解释为大脑中数据压缩的实现,而将我们的有意识感知解释为对压缩输入的重构。

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