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Effects of image statistics on stereo coding in human vision

机译:图像统计数据对人类视觉中立体编码的影响

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Biological visual systems continuously optimize themselves to the prevailing image statistics, which gives rise to the phenomenon of adaptation. For example, post-adaptation color appearance can be explained by efficient coding which appropriately combines the input cone channels into various chromatic and achromatic channels with suitable gains that depend on the input statistics [Atick, J.J., Li, Z. a?? Redlich, A.N. (1993). Vision Research, 33, 123-129]. In this study we focus on the ocular channels corresponding to the two eyes. We investigated how image statistics influence the way human vision combines information from the two eyes. Efficient coding in ocular space [Li, Z. a?? Atick, J.J. (1994) Network, 5, 157-174] predicts that the binocularity of neurons should depend on the interocular correlations in the visual environment: As the interocular correlations increase in magnitude, the neurons should become more binocular. In natural viewing conditions, interocular correlations are higher for horizontal than vertical image components, because vertical binocular disparities are generally smaller than horizontal disparities. Thus, adaptation to natural stereo image pairs should lead to a greater level of binocularity for horizontally-tuned neurons than vertically-tuned neurons, whereas adaptation to pairs of identical natural images should not. We used interocular transfer of the tilt illusion as an index of binocularity of neurons with different characteristics. Subjects adapted either to natural stereo pairs or pairs of identical natural images. As predicted, interocular transfer was higher for near-horizontal than near-vertical stimuli after adaptation to natural stereo pairs, but not after adaptation to pairs of identical natural images.
机译:生物视觉系统不断优化自身以适应主流图像统计,这引起了适应现象。例如,自适应后的颜色外观可以通过有效的编码来解释,该编码将输入锥通道适当地组合成具有取决于输入统计量的适当增益的各种色度和消色差通道[Atick,J.J.,Li,Z。亚利桑那州雷德利奇(1993)。视觉研究,33,123-129]。在这项研究中,我们着眼于与两只眼睛相对应的眼部通道。我们调查了图像统计数据如何影响人类视觉结合两只眼睛的信息的方式。眼空间中的有效编码[Li,Z. a ??阿迪克(1994)Network,5,157-174]预测,神经元的双眼性应取决于视觉环境中的眼间相关性:随着眼间相关性幅度的增加,神经元应变得更加双眼。在自然观看条件下,水平方向的眼内相关性高于垂直图像分量,因为垂直双眼视差通常小于水平视差。因此,对自然立体图像对的适应应导致水平调谐神经元的双目水平比对垂直调谐神经元更大的双眼度,而对相同自然图像对的适应则不应如此。我们将眼球错觉错觉作为具有不同特征的神经元的双眼性指标。被摄对象适应于自然立体声对或相同自然图像对。如所预测的,在适应自然立体对之后,近水平刺激的眼内转移高于近垂直刺激,但是在适应相同的自然图像对之后,眼内转移更高。

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