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A tale of two retinal domains: Near-Optimal sampling of achromatic contrasts in natural scenes through asymmetric photoreceptor distribution

机译:关于两个视网膜区域的故事:通过不对称的感光体分布,自然场景中消色差对比度的近乎最佳采样

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摘要

For efficient coding, sensory systems need to adapt to the distribution of signals to which they are exposed. In vision, natural scenes above and below the horizon differ in the distribution of chromatic and achromatic features. Consequently, many species differentially sample light in the sky and on the ground using an asymmetric retinal arrangement of short- (S, "blue") and medium- (M, "green") wavelength-sensitive photoreceptor types. Here, we show that in mice this photoreceptor arrangement provides for near-optimal sampling of natural achromatic contrasts. Two-photon population imaging oflight-driven calcium signals in the synaptic terminals of cone-photoreceptors expressing a calcium biosensor revealed that S, but not M cones, preferred dark over bright stimuli, in agreement with the predominance of dark contrasts in the sky but not on the ground. Therefore, the different cone types do not only form the basis of "color vision," but in addition represent distinct (achromatic) contrast-selective channels.
机译:为了进行有效的编码,感觉系统需要适应它们所暴露的信号的分布。在视觉方面,水平以上和以下的自然场景在色度和消色差特征的分布方面有所不同。因此,许多物种使用短波长(S,“蓝色”)和中波长(M,“绿色”)波长敏感型感光体的不对称视网膜排列,对天空和地面上的光进行差异采样。在这里,我们表明,在小鼠中,这种感光器排列提供了自然消色差对比的近乎最佳的采样。在表达钙生物传感器的锥体感光器的突触末端,光驱动钙信号的两光子种群成像显示,S而不是M锥体更喜欢黑暗而不是明亮刺激,这与天空中暗对比度的优势一致,但不是在地上。因此,不同的视锥类型不仅构成“色觉”的基础,而且还代表不同的(消色差)对比选择通道。

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