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首页> 外文期刊>Neuron >Variable dendritic integration in hippocampal CA3 pyramidal neurons
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Variable dendritic integration in hippocampal CA3 pyramidal neurons

机译:海马CA3锥体神经元的可变树突整合

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摘要

The hippocampal CA3 region is essential for pattern completion and generation of sharp-wave ripples. During these operations, coordinated activation of ensembles of CA3 pyramidal neurons produces spatiotemporally structured input patterns arriving onto dendrites of recurrently connected CA3 neurons. To understand how such input patterns are translated into specific output patterns, we characterized dendritic integration in CA3 pyramidal cells using two-photon imaging and glutamate uncaging. We found that thin dendrites of CA3 pyramidal neurons integrate synchronous synaptic input in a highly supralinear fashion. The amplification was primarily mediated by NMDA receptor activation and was present over a relatively broad range of spatiotemporal input patterns. The decay of voltage responses, temporal summation, and action potential output was regulated in a compartmentalized fashion mainly by a G-protein-activated inwardly rectifying K+ current. Our results suggest that plastic dendritic integrativemechanisms may support ensemble behavior in pyramidal neurons of the hippocampal circuitry.
机译:海马CA3区对于模式完成和产生尖波波纹至关重要。在这些操作中,CA3锥体神经元集合的协调激活会产生时空结构的输入模式,该输入模式到达循环连接的CA3神经元的树突上。要了解如何将这些输入模式转换为特定的输出模式,我们使用双光子成像和谷氨酸解笼表征了CA3锥体细胞中的树突整合。我们发现,CA3锥体神经元的细树突以高度超线性的方式整合了同步突触输入。扩增主要由NMDA受体激活介导,并存在于相对广泛的时空输入模式中。电压响应,时间总和和动作电位输出的衰减主要通过G蛋白激活的向内整流K +电流以分隔的方式进行调节。我们的研究结果表明,塑料树突整合机制可能支持海马电路的锥体神经元的合奏行为。

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