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Synaptic Convergence Patterns onto Retinal Ganglion Cells Are Preserved despite Topographic Variation in Pre- and Postsynaptic Territories

机译:尽管在突触前和突触后领土的地形变化,保留在视网膜神经节细胞上的突触收敛模式。

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h2 class="section-title"Summary/h2 p id="abspara0010"Sensory processing can be tuned by a neuron’s integration area, the types of inputs, and the proportion and number of connections with those inputs. Integration areas often vary topographically to sample space differentially across regions. Here, we highlight two visual circuits in which topographic changes in the postsynaptic retinal ganglion cell (RGC) dendritic territories and their presynaptic bipolar cell (BC) axonal territories are either matched or unmatched. Despite this difference, in both circuits, the proportion of inputs from each BC type, i.e., synaptic convergence between specific BCs and RGCs, remained constant across varying dendritic territory sizes. Furthermore, synapse density between BCs and RGCs was invariant across topography. Our results demonstrate a wiring design, likely engaging homotypic axonal tiling of BCs, that ensures consistency in synaptic convergence between specific BC types onto their target RGCs while enabling independent regulation of pre- and postsynaptic territory sizes and synapse number between cell pairs.
机译:class =“ section-title”>摘要 id =“ abspara0010”>可以通过神经元的整合区域,输入的类型以及与这些输入的连接比例和数量来调整感测处理。积分区域通常在地形上会发生变化,以跨区域差异地采样空间。在这里,我们重点介绍了两个视觉回路,其中突触后视网膜神经节细胞(RGC)树突区域及其突触前双极细胞(BC)轴突区域的地形变化是匹配的还是不匹配的。尽管存在这种差异,但在两个电路中,每种BC类型的输入比例(即特定BC和RGC之间的突触收敛)在不同的树突区域大小中都保持恒定。此外,BC和RGC之间的突触密度在整个地形中是不变的。我们的研究结果表明,接线设计可能与BC的同型轴突平铺结合,可确保特定BC类型到其目标RGC的突触融合中的一致性,同时能够独立调节突触前和突触后区域的大小以及细胞对之间的突触数量。

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