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Random wiring in the midget pathway of primate retina.

机译:灵长类动物视网膜的侏儒途径中的随机布线。

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The present study addresses the questions of how topographically organized neuronal populations are connected, and whether there is anatomical evidence for color-selective wiring in retinal pathways for red-green color vision. The connectivity of OFF midget bipolar and OFF midget ganglion cells was studied in the peripheral retina of dichromatic ("red-green color blind") and trichromatic ("color normal") marmosets (Callithrix jacchus). Midget bipolar cells were identified immunohistochemically. Midget ganglion cells were retrogradely labeled from the lateral geniculate nucleus and photofilled. Comparable results were obtained from all retinas studied. Between 3 and 16 bipolar terminals converge onto each ganglion cell. Nearly all bipolar terminals investigated show regions of colocalization (areas of presumed synaptic contacts) with ganglion cell dendrites. This contact area makes up approximately 14% of the axon surface area for a typical midget bipolar cell. The output from individual midget bipolar axons is often shared between midget ganglion cells so that, on average, <70% of the axon terminal area of a midget bipolar cell shows overlap with the dendritic field of a given midget ganglion cell. We conclude that there is no morphological evidence of red-green color selectivity in the connections between midget bipolar and midget ganglion cell mosaics. Furthermore, the results suggest that convergence is based on local interactions between axons and dendrites rather than cell-by-cell recognition between members of each mosaic.
机译:本研究解决了以下问题:如何将拓扑结构化的神经元群体连接起来,以及是否有解剖学证据表明视网膜通路中的红绿颜色视觉可进行颜色选择布线。在双色(“红绿盲”)和三色(“正常色”)mar猴(Callithrix jacchus)的周围视网膜中研究了OFF侏儒双极和OFF侏儒神经节细胞的连通性。侏儒双极细胞通过免疫组织化学鉴定。从外侧膝状核逆行标记小神经节细胞并进行光填充。从所有研究的视网膜获得了可比的结果。 3至16个双极末端会聚到每个神经节细胞上。几乎所有研究的双极末端显示与神经节细胞树突的共定位区域(假定的突触接触区域)。对于典型的侏儒双极型细胞,该接触面积约占轴突表面积的14%。个别的侏儒双极轴突的输出通常在侏儒神经节细胞之间共享,因此平均而言,侏儒双极细胞的轴突末端区域的<70%显示与给定的侏儒神经节细胞的树突区域重叠。我们得出的结论是,在侏儒双极型和侏儒神经节细胞镶嵌体之间的连接中没有红色-绿色选择性的形态学证据。此外,结果表明,收敛是基于轴突和树突之间的局部相互作用,而不是每个镶嵌图成员之间的逐细胞识别。

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