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Spatiochromatic Receptive Field Properties Derived from Information-Theoretic Analyses of Cone Mosaic Responses to Natural Scenes

机译:信息马赛克对自然场景的锥面响应的信息理论分析得出的时空色接收场特性

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Neurons in the early stages of processing in the primate visual system efficiently encode natural scenes. In previous studies of the chromatic properties of natural images, the inputs were sampled on a regular array, with complete color information at every location. However, in the retina cone photoreceptors with different spectral sensitivities are arranged in a mosaic. We used an unsupervised neural network model to analyze the statistical structure of retinal cone mosaic responses to calibrated color natural images. The second-order statistical dependencies derived from the covariance matrix of the sensory signals were removed in the first stage of processing. These decorrelating filters were similar to type Ⅰ receptive fields in parvo- or konio-cellular LGN in both spatial and chromatic characteristics. In the subsequent stage, the decorrelated signals were linearly transformed to make the output as statistically independent as possible, using independent component analysis. The independent component filters showed luminance selectivity with simple-cell-like receptive fields, or had strong color selectivity with large, often double-opponent, receptive fields, both of which were found in the primary visual cortex (V1). These results show that the "form" and "color" channels of the early visual system can be derived from the statistics of sensory signals.
机译:在灵长类动物视觉系统处理的早期阶段,神经元有效地编码了自然场景。在以前对自然图像的色度特性的研究中,输入是在规则的阵列上采样的,每个位置都有完整的颜色信息。但是,在视网膜锥中,具有不同光谱灵敏度的感光体排列成马赛克状。我们使用了无监督的神经网络模型来分析视网膜锥马赛克对校准的彩色自然图像的统计结构。在处理的第一阶段中,删除了从感觉信号的协方差矩阵得出的二阶统计依赖性。这些去相关滤光片在空间和色度特征上均与小细胞或konio细胞LGN中的Ⅰ型感受野相似。在随后的阶段中,使用独立分量分析对去相关信号进行线性变换,以使输出在统计上尽可能独立。独立分量滤光片在像单细胞一样的接收场中表现出亮度选择性,或者在较大的,常常是双对手的感受野中具有很强的颜色选择性,这两种情况都在初级视觉皮层(V1)中发现。这些结果表明,早期视觉系统的“形式”和“颜色”通道可以从感觉信号的统计中得出。

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