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HORIZONTAL CELLS OF THE PRIMATE RETINA - CONE SPECIFICITY WITHOUT SPECTRAL OPPONENCY

机译:原发性视网膜水平细胞-锥体特异性无频谱对抗性。

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摘要

The chromatic dimensions of human color vision have a neural basis in the retina. Ganglion cells, the output neurons of the retina, exhibit spectral opponency; they are excited by some wavelengths and inhibited by others. The hypothesis that the opponent circuitry emerges from selective connections between horizontal cell interneurons and cone photoreceptors sensitive to long, middle, and short wavelengths (L-, M-, and S-cones) was tested by physiologically and anatomically characterizing cone connections of horizontal cell mosaics in macaque monkeys. H1 horizontal cells received input only from L- and M-cones, whereas H2 horizontal cells received a strong input from S-cones and a weaker input from L- and M-cones. All cone inputs were the same sign, and both horizontal cell types lacked opponency. Despite cone type selectivity, the horizontal cell cannot be the locus of an opponent transformation in primates, including humans.
机译:人类彩色视觉的色度维度在视网膜中具有神经基础。神经节细胞是视网膜的输出神经元,表现出频谱上的对立。它们被某些波长激发而被其他波长抑制。通过生理和解剖学表征水平细胞的锥体连接,检验了反对者电路是由水平细胞中间神经元和对长,中和短波长(L,M和S锥)敏感的视锥细胞感光器之间的选择性连接产生的假设。猕猴的马赛克。 H1水平单元仅从L-和M-圆锥接收输入,而H2水平单元从S-圆锥接收强输入,而L-和M-圆锥输入较弱。所有视锥细胞输入都具有相同的符号,并且两种水平细胞类型都缺乏对立性。尽管具有锥型选择性,但水平细胞不能成为灵长类动物(包括人类)中对手转化的场所。

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