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Three Distinct Blue-Green Color Pathways in a Mammalian Retina

机译:哺乳动物视网膜中的三种不同的蓝绿色通道

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摘要

In mammalian retinae, the first steps in the process of discrimination of color are mediated by color-opponent neurons that respond with opposite polarity to signals from short (S, blue) and longer wavelength (M, green or L, red) cones. Primates also contain a second system that is different from M and L cones. Although pathways responding to the onset of S-cone stimulation (S-ON) are well known, the existence of bipolar cells and retinal ganglion cells that respond to the offset of S-cone stimulation (S-OFF) has been controversial. We have recorded from and stained three different types of S/M color-opponent ganglion cells in the rabbit retina that are distinguished by the polarity of their responses to S-cone stimulation, the stratification pattern of their dendrites, and the distinct mechanisms underlying their color-opponent responses. We describe an S-ON and an S-OFF pathway formed by amacrine cells inverting the S-ON signal. Most importantly, we also provide both anatomical and physiological evidence for a direct S-OFF pathway dependent on an S-OFF cone bipolar cell. The results indicate a greater diversity of pathways for processing of signals from S-cones than previously suspected.
机译:在哺乳动物的视网膜中,颜色辨别过程的第一步是由与颜色相反的神经元介导的,它们对来自短(S,蓝色)和较长波长(M,绿色或L,红色)视锥细胞的信号具有相反的极性。灵长类还包含不同于M和L锥的第二个系统。尽管对S-锥体刺激(S-ON)的发作作出反应的途径是众所周知的,但是对S-锥体刺激(S-OFF)的偏移作出响应的双极细胞和视网膜神经节细胞的存在一直是有争议的。我们已经从兔视网膜中记录并染色了三种不同类型的S / M色对手神经节细胞,这些细胞的特征在于它们对S锥刺激的反应极性,其树突的分层模式以及它们背后的不同机制颜色对手的反应。我们描述了由无长突细胞反转S-ON信号形成的S-ON和S-OFF途径。最重要的是,我们还为依赖于S-OFF锥体双极细胞的直接S-OFF途径提供了解剖学和生理学证据。结果表明,与以前怀疑的相比,用于处理S-锥信号的途径的多样性更大。

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