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Variation of Input-Output Properties along the Somatodendritic Axis of Pyramidal Neurons

机译:金字塔形神经元沿体树突状轴的输入输出特性的变化

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摘要

The firing evoked by injection of simulated barrages of EPSCs into the proximal dendrite of layer 5 pyramidal neurons is greater than when comparable inputs are injected into the soma. This boosting is mediated by dendritic Na+ conductances. However, the presence of other active conductances in the dendrites, some of which are nonuniformly distributed, suggests that the degree of boosting may differ along the somatodendritic axis. Here, we injected EPSC barrages at the soma and at the proximal, middle, and distal segments of the apical dendrite and measured boosting of subthreshold and suprathreshold responses. We found that although boosting was maintained throughout the apical dendrite, the degree of boosting changed nonmonotonically with distance from the soma. Boosting dipped in the middle dendritic segments as a result of the deactivation of the hyperpolarization-activated cation current, Ih, but increased in the distal dendrites as a result of the activation of Ca2+ conductances. In the distal dendrites, EPSC barrages evoked repetitive bursts of action potentials, and the bursting pattern changed systematically with the magnitude of the input barrages. The quantitative changes in boosting along the somatodendritic axis suggest that inputs from different classes of presynaptic cells are weighted differently, depending on the location of the synaptic contacts. Moreover, the tight coupling between burst characteristics and stimulus parameters indicate that the distal dendrites can support a coding scheme that is different from that at sites closer to the soma, consistent with the notion of a separate dendritic integration site.
机译:通过将模拟的EPSC弹幕注入第5层锥体神经元的近端树突所诱发的放电比当将可比较的输入注入到体中时更大。这种增强作用是由树突状Na + 电导介导的。但是,树突中存在其他活性电导,其中一些不均匀分布,这表明增强的程度可能沿着体树突轴不同。在这里,我们在躯体以及顶端树突的近端,中间和远端部分注入了EPSC弹幕,并测量了阈下和阈上响应的增强。我们发现,尽管在整个根尖树突中都保持了增强,但是增强的程度会随着与躯体距离的增加而非单调变化。超极化激活的阳离子电流Ih失活导致增强作用浸入中间树突节段,而Ca 2 + 电导率激活则增强了远端树突段。在远侧树突中,EPSC弹幕引起动作电位的重复爆发,并且爆发模式随输入弹幕的大小而系统地改变。沿体树突状轴增强的数量变化表明,来自不同类别突触前细胞的输入的权重不同,具体取决于突触接触的位置。此外,爆发特征和刺激参数之间的紧密耦合表明,远端树突可以支持与靠近体的部位不同的编码方案,这与单独的树突整合部位的概念一致。

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