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Spatiotemporal characteristics of synaptic EPSP summation on the dendritic trees of hippocampal CA1 pyramidal neurons as revealed by laser uncaging stimulation

机译:激光解笼刺激揭示的海马CA1锥体神经元树突树突触EPSP总和的时空特征

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摘要

Synaptic strength is modified by the temporal coincidence of synaptic inputs without back-propagating action potentials (BPAPs) in CA1 pyramidal neurons. In order to clarify the interactive mechanisms of associative long-term potentiation (LTP) without BPAPs, local paired stimuli were applied to the dendrites using high-speed laser uncaging stimulation equipment. When the spatial distance between the paired stimuli was <10 micrometer, nonlinear amplification in excitatory postsynaptic potential summation was observed. In the time window from −20 to 20 ms, supralinear amplification was observed. Supralinear amplification was modulated by antagonist of voltage-gated Na+/Ca2+ channels and NMDA-type glutamate receptors. These results are closely related to the spatiotemporal-characteristics of associative LTP without BPAPs. This study proposes an essential aspect of dendritic information processing.
机译:突触强度通过突触输入的时间重合来修改,而在CA1锥体神经元中没有反向传播的动作电位(BPAP)。为了阐明没有BPAP的联想长期增强(LTP)的相互作用机制,使用高速激光解笼刺激设备对树突施加了局部配对刺激。当配对刺激之间的空间距离小于10微米时,观察到兴奋性突触后电位总和的非线性放大。在-20到20毫秒的时间窗口中,观察到超线性放大。超线性扩增受电压门控的Na + / Ca 2 + 通道和NMDA型谷氨酸受体的拮抗剂调控。这些结果与没有BPAP的联想LTP的时空特性密切相关。这项研究提出了树突信息处理的一个基本方面。

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