突触
突触后电位
突触可塑性
兴奋性突触
神经传递
突触后电流
稳态可塑性
长时程增强
谷氨酸的
突触药理学
突触后密度
作者
Daniel Maxim Iascone,Yang Li,Uygar Sümbül,Michael Doron,Hanbo Chen,Andreu,Goudy F,Idan Segev,Hanchuan Peng,Franck Polleux
出处
期刊:bioRxiv
日期:2018-08-19
卷期号:: 395384-
被引量:8
摘要
The balance between excitatory and inhibitory (E and I) synaptic inputs is thought to be critical for information processing in neural circuits. However, little is known about the principles of spatial organization of E and I synapses across the entire dendritic tree of mammalian neurons. We developed a new, open-source, reconstruction platform for mapping the size and spatial distribution of E and I synapses received by individual, genetically-labeled, layer 2/3 cortical pyramidal neurons (PNs) in vivo. We mapped over 90,000 E and I synapses across twelve L2/3 PNs and uncovered structured organization of E and I synapses across dendritic domains as well as within individual dendritic segments in these cells. Despite significant, domain-specific, variations in the absolute density of E and I synapses, their ratio is strikingly balanced locally across dendritic segments. Computational modeling indicates that this spatially-precise E/I balance dampens dendritic voltage fluctuations and strongly impacts neuronal firing output.
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