Dacey Dennis M, Packer Orin S
University of Washington, Department of Biological Structure & Washington National Primate Research Centre, HSC G514 Seattle, WA 98195-7420, USA.
Curr Opin Neurobiol. 2003 Aug;13(4):421-7. doi: 10.1016/s0959-4388(03)00103-x.
How is the trichromatic cone mosaic of Old World primates sampled by retinal circuits to create wavelength opponency? Red-green (L versus M cone) opponency appears to be mediated largely by the segregation of L versus M cone signals to the centre versus the surround of the midget ganglion cell receptive field, implying a complex cone type-specific wiring, the basis of which remains mysterious. Blue-yellow (S versus L+M cone) opponency is mediated by a growing family of low-density ganglion types that receive either excitatory or inhibitory input from S cones. Thus, the retinal circuits that underlie colour signalling in primates may be both more complex and more diverse then previously appreciated.
旧世界灵长类动物的三色视锥镶嵌是如何被视网膜回路采样以产生波长拮抗的?红-绿(L视锥细胞与M视锥细胞)拮抗似乎主要是通过L视锥细胞与M视锥细胞信号分别传入侏儒神经节细胞感受野的中心与外周来介导的,这意味着存在一种复杂的视锥细胞类型特异性布线,其基础仍然是个谜。蓝-黄(S视锥细胞与L+M视锥细胞)拮抗是由越来越多的低密度神经节细胞类型介导的,这些细胞从S视锥细胞接收兴奋性或抑制性输入。因此,灵长类动物中颜色信号传导的视网膜回路可能比之前所认识到的更加复杂和多样。