Excitation-Inhibition Balance, Neural Criticality, and Activities in Neuronal Circuits.

IF 3.5 3区 医学 Q1 CLINICAL NEUROLOGY
Junhao Liang, Zhuda Yang, Changsong Zhou
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引用次数: 0

Abstract

Neural activities in local circuits exhibit complex and multilevel dynamic features. Individual neurons spike irregularly, which is believed to originate from receiving balanced amounts of excitatory and inhibitory inputs, known as the excitation-inhibition balance. The spatial-temporal cascades of clustered neuronal spikes occur in variable sizes and durations, manifested as neural avalanches with scale-free features. These may be explained by the neural criticality hypothesis, which posits that neural systems operate around the transition between distinct dynamic states. Here, we summarize the experimental evidence for and the underlying theory of excitation-inhibition balance and neural criticality. Furthermore, we review recent studies of excitatory-inhibitory networks with synaptic kinetics as a simple solution to reconcile these two apparently distinct theories in a single circuit model. This provides a more unified understanding of multilevel neural activities in local circuits, from spontaneous to stimulus-response dynamics.

神经元回路中的兴奋抑制平衡、神经临界和活动。
局部回路中的神经活动呈现出复杂和多层次的动态特征。单个神经元会不规则地激增,这被认为是由于接受了均衡的兴奋性和抑制性输入,即所谓的兴奋-抑制平衡。集群神经元尖峰的时空级联在大小和持续时间上各不相同,表现为具有无尺度特征的神经雪崩。神经临界假说认为,神经系统是在不同的动态状态之间的转换过程中运行的。在此,我们总结了兴奋-抑制平衡和神经临界的实验证据和基本理论。此外,我们还回顾了最近对具有突触动力学的兴奋-抑制网络的研究,这是一种在单一电路模型中调和这两种看似不同理论的简单解决方案。这使我们对局部电路中从自发到刺激-反应动力学的多层次神经活动有了更统一的认识。
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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来源期刊
Neuroscientist
Neuroscientist 医学-临床神经学
CiteScore
11.50
自引率
0.00%
发文量
68
期刊介绍: Edited by Stephen G. Waxman, The Neuroscientist (NRO) reviews and evaluates the noteworthy advances and key trends in molecular, cellular, developmental, behavioral systems, and cognitive neuroscience in a unique disease-relevant format. Aimed at basic neuroscientists, neurologists, neurosurgeons, and psychiatrists in research, academic, and clinical settings, The Neuroscientist reviews and updates the most important new and emerging basic and clinical neuroscience research.
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