Institute of Physiology, Medical School, University of Pécs, 7624 Pécs, Hungary.
J Neurosci. 2013 Jan 23;33(4):1451-61. doi: 10.1523/JNEUROSCI.2844-12.2013.
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.
大多数非灵长类哺乳动物拥有基于短波长敏感(S)和中/长波长敏感(ML)视锥感光细胞类别的二色性(“红绿色盲”)色觉。然而,在非灵长类哺乳动物中,原始“蓝黄”色觉轴背后的神经通路在很大程度上尚未被探索。在这里,我们在麻醉猫的背外侧膝状体核记录中描述了一群对颜色起拮抗作用的(蓝-ON)细胞。我们发现了与之前描述的灵长类蓝-ON 细胞的五个相似点。首先,猫的蓝-ON 细胞从 S-锥体接收 ON 型兴奋,从 ML-锥体接收 OFF 型兴奋。我们没有发现蓝-OFF 细胞。其次,猫的蓝-ON 细胞的 S-和 ML-锥体驱动的感受野区域在大小上非常匹配,这与检测颜色对比的专门化一致。第三,猫的蓝-ON 细胞的感受野中心直径大约是任何偏心度的非颜色拮抗感受野的中心直径的三倍。第四,S-和 ML-锥体对猫的蓝-ON 细胞提供微弱的环绕抑制。这些数据表明,猫的蓝-ON 感受野在功能上与之前在猕猴和狨猴中描述的蓝-ON 型感受野非常相似。最后,猫的蓝-ON 细胞与 W 细胞位于同一层,W 细胞被认为与灵长类 koniocellular 系统同源。基于这些数据,我们认为猫的蓝-ON 细胞是“蓝黄”颜色拮抗系统的一部分,该系统是灵长类 koniocellular 通路中蓝-ON 分支的进化同源物。