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海马体CA1锥体神经元远端突触激活后的条件性树突棘信号传播。

Conditional dendritic spike propagation following distal synaptic activation of hippocampal CA1 pyramidal neurons.

作者信息

Jarsky Tim, Roxin Alex, Kath William L, Spruston Nelson

机构信息

Institute for Neuroscience, Department of Neurobiology and Physiology, Northwestern University, 2205 Tech Drive, Evanston, Illinois 60208, USA.

出版信息

Nat Neurosci. 2005 Dec;8(12):1667-76. doi: 10.1038/nn1599. Epub 2005 Nov 20.

Abstract

The perforant-path projection to the hippocampus forms synapses in the apical tuft of CA1 pyramidal neurons. We used computer modeling to examine the function of these distal synaptic inputs, which led to three predictions that we confirmed in experiments using rat hippocampal slices. First, activation of CA1 neurons by the perforant path is limited, a result of the long distance between these inputs and the soma. Second, activation of CA1 neurons by the perforant path depends on the generation of dendritic spikes. Third, the forward propagation of these spikes is unreliable, but can be facilitated by modest activation of Schaffer-collateral synapses in the upper apical dendrites. This 'gating' of dendritic spike propagation may be an important activation mode of CA1 pyramidal neurons, and its modulation by neurotransmitters or long-term, activity-dependent plasticity may be an important feature of dendritic integration during mnemonic processing in the hippocampus.

摘要

穿通通路至海马体的投射在CA1锥体神经元的顶端树突丛中形成突触。我们使用计算机建模来研究这些远端突触输入的功能,这得出了三个预测结果,我们在使用大鼠海马体切片的实验中证实了这些预测。首先,穿通通路对CA1神经元的激活是有限的,这是这些输入与胞体之间距离较长的结果。其次,穿通通路对CA1神经元的激活取决于树突棘的产生。第三,这些棘突的正向传播是不可靠的,但可以通过上顶端树突中适度激活的谢氏侧支突触来促进。树突棘传播的这种“门控”可能是CA1锥体神经元的一种重要激活模式,并且其通过神经递质或长期的、活动依赖的可塑性进行的调节可能是海马体记忆处理过程中树突整合的一个重要特征。

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