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Perceptual insensitivity to higher-order statistical moments of coherent random dot motion

机译:对相干随机点运动的高阶统计矩的感知不敏感

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When the visual system analyzes distributed patterns of sensory inputs, what features of those distributions does it use? It has been previously demonstrated that higher-order statistical moments of luminance distributions influence perception of static surfaces and textures. Here, we tested whether the brain also represents higher-order moments of dynamic stimuli. We constructed random dot kinematograms, where dots moved according to probability distributions that selectively differed in terms of their mean, variance, skewness, or kurtosis. When viewing these stimuli, human observers were sensitive to the mean direction of coherent motion and to the variance of dot displacement angles, but they were insensitive to skewness and kurtosis. Observer behavior accorded with a model of directional motion energy, suggesting that information about higher-order moments is discarded early in the visual processing hierarchy. These results demonstrate that use of higher-order moments is not a general property of visual perception.
机译:当视觉系统分析感觉输入的分布模式时,它使用那些分布的哪些特征?先前已经证明,亮度分布的高阶统计矩会影响静态表面和纹理的感知。在这里,我们测试了大脑是否也代表了动态刺激的高阶时刻。我们构建了随机点运动图,其中点根据概率分布移动,这些概率分布在均值,方差,偏度或峰度方面选择性地有所不同。当观察这些刺激时,人类观察者对相干运动的平均方向和点位移角的变化很敏感,但对偏斜和峰度不敏感。观察者的行为符合定向运动能量的模型,这表明有关高阶矩的信息在视觉处理层次结构的早期就被丢弃了。这些结果表明,使用高阶矩并不是视觉感知的一般属性。

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