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Dendritic relationship between starburst amacrine cells and direction-selective ganglion cells in the rabbit retina

机译:兔视网膜星爆无长突细胞与方向选择神经节细胞的树突关系

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摘要

We investigated the dendritic relationship between starburst amacrine cells (SAs) and morphologically and physiologically characterized ON and ON-OFF direction-selective ganglion cells (DSGCs) in the rabbit retina. ON and ON-OFF DSGCs were found to exhibit tight dendritic cofasciculation with the SA plexus, visualized by immunolabelling of the vesicular acetylcholine transporter (VAChT). The degree of cofasciculation of both types of DSGC dendrites and SA plexus was found to be significant, unlike the relationship between non-DS cells and the SA plexus, which was close to chance distribution. No difference in the degree of cofasciculation in different regions of the DS dendritic field was observed. Individual SAs intracellularly injected both on the ‘preferred’ and ‘null’ side of the DSGCs showed the same degree of cofasciculation with the DSGCs. Therefore, the computation of motion direction is unlikely to result from apparent asymmetry in geometric proximity between SAs and DSGCs. Highly selective synaptic connections between SAs and DSGCs are necessary.
机译:我们调查了星状突突无长突细胞(SAs)与兔视网膜中ON和ON-OFF方向选择性神经节细胞(DSGCs)的形态和生理特征之间的树突关系。发现ON和ON-OFF DSGC与SA丛显示紧密的树突共凝结,通过囊泡乙酰胆碱转运蛋白(VAChT)的免疫标记可见。发现两种类型的DSGC树突和SA丛的共凝结程度均显着,与非DS细胞和SA丛之间的关系接近偶然分布的关系不同。在DS树突场的不同区域中未观察到共凝程度。分别通过细胞内注射在DSGC的“首选”和“空”侧的SA表现出与DSGC相同的共凝程度。因此,运动方向的计算不太可能由SA和DSGC之间的几何接近度的明显不对称引起。 SA和DSGC之间的高度选择性的突触连接是必要的。

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