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Receptive Field Properties of Color Opponent Neurons in the Cat Lateral Geniculate Nucleus

机译:猫外侧膝状核中颜色对手神经元的感受野特性

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摘要

Most nonprimate mammals possess dichromatic (“red–green color blind”) color vision based on short-wavelength-sensitive (S) and medium/long-wavelength-sensitive (ML) cone photoreceptor classes. However, the neural pathways carrying signals underlying the primitive “blue–yellow” axis of color vision in nonprimate mammals are largely unexplored. Here, we have characterized a population of color opponent (blue-ON) cells in recordings from the dorsal lateral geniculate nucleus of anesthetized cats. We found five points of similarity to previous descriptions of primate blue-ON cells. First, cat blue-ON cells receive ON-type excitation from S-cones, and OFF-type excitation from ML-cones. We found no blue-OFF cells. Second, the S- and ML-cone-driven receptive field regions of cat blue-ON cells are closely matched in size, consistent with specialization for detecting color contrast. Third, the receptive field center diameter of cat blue-ON cells is approximately three times larger than the center diameter of non-color opponent receptive fields at any eccentricity. Fourth, S- and ML-cones contribute weak surround inhibition to cat blue-ON cells. These data show that blue-ON receptive fields in cats are functionally very similar to blue-ON type receptive fields previously described in macaque and marmoset monkeys. Finally, cat blue-ON cells are found in the same layers as W-cells, which are thought to be homologous to the primate koniocellular system. Based on these data, we suggest that cat blue-ON cells are part of a “blue–yellow” color opponent system that is the evolutionary homolog of the blue-ON division of the koniocellular pathway in primates.
机译:大多数非灵长类哺乳动物具有基于短波长敏感(S)和中/长波长敏感(ML)锥型感光体类别的双色(“红绿色盲”)彩色视觉。然而,在非灵长类哺乳动物中,携带以彩色“蓝色-黄色”原始轴为基础的信号的神经通路尚待探索。在这里,我们从麻醉的猫的背外侧膝状核的记录中表征了一组颜色对抗剂(蓝-ON)细胞。我们发现与灵长类动物蓝ON细胞的先前描述有五个相似点。首先,猫蓝ON电池从S锥接受ON型激励,而从ML锥接受OFF型激励。我们没有发现关闭的电池。其次,猫蓝ON细胞的S和ML锥体驱动的感受野区域在大小上紧密匹配,这与检测颜色对比度的专业化相一致。第三,在任何偏心率下,猫蓝ON细胞的感受野中心直径大约是非彩色对手感受野的中心直径的三倍。第四,S和ML锥对猫蓝ON细胞具有弱的环绕抑制作用。这些数据表明,猫的blue-ON受体场在功能上与之前在猕猴和mar猴中描述的blue-ON类型的受体场非常相似。最后,在与W细胞相同的层中发现了cat blue-ON细胞,这被认为与灵长类动物控动细胞系统同源。根据这些数据,我们认为猫的蓝色ON细胞是“蓝黄色”颜色对立系统的一部分,该系统是灵长类中的动静脉细胞途径的蓝色ON分裂的进化同源物。

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