索马
神经科学
轴突
枝晶(数学)
树枝状尖峰
海马结构
突触
门控
神经元
涟漪
生物
顶端树突
电生理学
锥体细胞
兴奋性突触后电位
抑制性突触后电位
物理
几何学
数学
量子力学
电压
作者
Alexander Hodapp,Martin E. Kaiser,Christian Thome,Lingjun Ding,Andrei Rozov,Matthias Klumpp,Nikolas A Stevens,Moritz Stingl,Tina Sackmann,Nadja Lehmann,Andreas Draguhn,Andrea Burgalossi,Maren Engelhardt,Martin Both
出处
期刊:Science
[American Association for the Advancement of Science (AAAS)]
日期:2022-09-23
卷期号:377 (6613): 1448-1452
被引量:8
标识
DOI:10.1126/science.abj1861
摘要
Information processing in neuronal networks involves the recruitment of selected neurons into coordinated spatiotemporal activity patterns. This sparse activation results from widespread synaptic inhibition in conjunction with neuron-specific synaptic excitation. We report the selective recruitment of hippocampal pyramidal cells into patterned network activity. During ripple oscillations in awake mice, spiking is much more likely in cells in which the axon originates from a basal dendrite rather than from the soma. High-resolution recordings in vitro and computer modeling indicate that these spikes are elicited by synaptic input to the axon-carrying dendrite and thus escape perisomatic inhibition. Pyramidal cells with somatic axon origin can be activated during ripple oscillations by blocking their somatic inhibition. The recruitment of neurons into active ensembles is thus determined by axonal morphological features.
科研通智能强力驱动
Strongly Powered by AbleSci AI