Electrical coupling between pyramidal cells in adult cortical regions.

Brain cell biology Pub Date : 2006-02-01 Epub Date: 2007-02-27 DOI:10.1007/s11068-006-9005-9
Audrey Mercer, A Peter Bannister, Alex M Thomson
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引用次数: 88

Abstract

Recently, intense interest has focussed on electrical coupling between interneurones in cortical regions and their contributions towards oscillatory network activity. Despite mounting circumstantial evidence that pyramidal cells are also coupled, the paucity of direct evidence has made this controversial. Dual intracellular recordings from pairs of cortical and hippocampal pyramids demonstrated strong, but sparse coupling. Approximately 70% of CA1 pyramids close to the stratum radiatum border were coupled to another pyramid, but only to one or two of their very closest neighbours. On average 25% of the steady state and 10% of the peak action potential voltage change in one cell transferred to the other, supporting synchrony and promoting burst firing. The very high incidence of convergent inputs from coupled pyramids onto single targets provided additional evidence that 'spikelets' reflected full action potentials in a coupled cell, since the EPSPs activated by APs and by 'spikelets' had significantly different amplitude distributions.

成人皮层锥体细胞间的电偶联。
最近,人们对皮层区域间神经元之间的电耦合及其对振荡网络活动的贡献产生了浓厚的兴趣。尽管有越来越多的间接证据表明锥体细胞也是偶联的,但直接证据的缺乏使这一观点备受争议。来自皮质和海马金字塔对的双重细胞内记录显示出强烈但稀疏的耦合。接近地层辐射体边界的大约70%的CA1金字塔与另一个金字塔相连,但只与它们最近邻的一两个金字塔相连。平均25%的稳态和10%的峰值动作电位电压变化在一个细胞转移到另一个细胞,支持同步和促进突发放电。从耦合金字塔到单个靶标的高发生率的收敛输入提供了额外的证据,表明“小穗”反映了耦合细胞中的全部动作电位,因为APs和“小穗”激活的epsp具有显著不同的振幅分布。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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