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Quantitative analysis of illusory movement: spatial filtering and line localization in the human visual system

机译:幻觉运动的定量分析:人类视觉系统中的空间滤波和线条定位

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摘要

A narrow bar or line (width around 1 arcmin) between two fields of which the luminances are sinusoidally and in counterphase modulated in time appears to make an oscillatory movement. It is possible to annihilate this illusory movement with a real movement and thus to analyze this phenomenon quantitatively. Confirming previous studies, the amount of illusory movement (amplitude typically 10 arcsec) was proportional to the modulation depth of the fields and inversely proportional to the line width and the line contrast. The amount of illusory movement increased with defocus, a lower mean luminance, and eccentricity. The experimental results could be explained by a model that includes a linear low-pass spatial filter. For a Gaussian spatial filter, the standard deviation as derived from the experimental results was 1.1 arcmin (1.0-1.3 arcmin) (median with range of four observers) for well-focused, photopic, foveal viewing. We explored various criteria for line localization in the model (extremes and zero-crossings of Gaussian derivatives).
机译:在两个场之间的一条窄条或一条线(宽度大约为1 arcmin),其亮度呈正弦曲线,并在时间上进行反相调制,似乎会产生振荡运动。可以用真实的运动消灭这种虚幻的运动,从而定量地分析这种现象。确认先前的研究,幻觉的运动量(振幅通常为10 arcsec)与场的调制深度成比例,与线宽和线对比度成反比。虚幻的运动量随着散焦,较低的平均亮度和偏心率而增加。实验结果可以通过包含线性低通空间滤波器的模型来解释。对于高斯空间滤波器,对于聚焦良好,明晰,中央凹的观察,从实验结果得出的标准偏差为1.1 arcmin(1.0-1.3 arcmin)(中位值在四个观察者的范围内)。我们探索了模型中线定位的各种标准(高斯导数的极值和零交叉)。

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