首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Connectomic Identification and Three-Dimensional Color Tuning of S-OFF Midget Ganglion Cells in the Primate Retina
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Connectomic Identification and Three-Dimensional Color Tuning of S-OFF Midget Ganglion Cells in the Primate Retina

机译:灵长类动物视网膜中S-OFF侏儒神经节细胞的Connectomic识别和三维色调

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In the trichromatic primate retina, the "midget" retinal ganglion cell is the classical substrate for red-green color signaling, with a circuitry that enables antagonistic responses between long (L)- and medium (M)-wavelength-sensitive cone inputs. Previous physiological studies showed that some OFF midget ganglion cells may receive sparse input from short (S)-wavelength-sensitive cones, but the effect of S-cone inputs on the chromatic tuning properties of such cells has not been explored. Moreover, anatomical evidence for a synaptic pathway from S cones to OFF midget ganglion cells through OFF midget bipolar cells remains ambiguous. In this study, we address both questions for the macaque monkey retina. First, we used serial block-face electron microscopy to show that every S cone in the parafoveal retina synapses principally with a single OFF midget bipolar cell, which in turn forms a private-line connection with an OFF midget ganglion cell. Second, we used patch electrophysiology to characterize the chromatic tuning of OFF midget ganglion cells in the near peripheral retina that receive combined input from L, M, and S cones. These "S-OFF" midget cells have a characteristic S-cone spatial signature, but demonstrate heterogeneous color properties due to the variable strength of L, M, and S cone input across the receptive field. Together, these fmdings strongly support the hypothesis that the OFF midget pathway is the major conduit for S-OFF signals in primate retina and redefines the pathway as a chromatically complex substrate that encodes color signals beyond the classically recognized L versus M and S versus L+M cardinal mechanisms.
机译:在三色灵长类动物视网膜中,“侏儒”视网膜神经节电池是用于红绿色信号的经典基板,具有能够在长(L)和介质(M) - 波长敏锥输入之间的拮抗反应的电路。以前的生理学研究表明,一些偏心神经节细胞可以接收来自短(S) - 波长敏锥的稀疏输入,但是尚未探讨S-CONE输入对这种电池的色调性能的影响。此外,从S锥体通过偏离侏儒双极细胞的突触通路的解剖证据仍然存在含糊不清。在这项研究中,我们解决了猕猴视网膜的两个问题。首先,我们使用串行块面电子显微镜,表明Parafoveal视网膜中的每一个锥体主要用单一的侏儒双极电池突触,这反过来与偏离侏儒神经节细胞形成私下连接。其次,我们使用补丁电生理学来表征近端视网膜中偏心神经节细胞的色调,从L,M和S锥体接收组合输入。这些“S-OFF”侏儒细胞具有特征S-CONE空间签名,但由于L,M和S锥体的可变强度,在接收领域输入的可变强度,表现出异构的颜色特性。这些FMDINGS强烈支持假设,即侏儒途径是灵长类动物视网膜中的S-OFF信号的主要导管,并将途径重新定义为色度复杂的基板,该基板编码超出经典识别的L的彩色信号,而s与s与l +相比。 m红衣主教机制。

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