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节律性神经网络模型中抑制性突触的活动依赖性修饰

Activity-dependent modification of inhibitory synapses in models of rhythmic neural networks.

作者信息

Soto-Treviño C, Thoroughman K A, Marder E, Abbott L F

机构信息

Volen Center and Biology Department, Brandeis University, Mail Stop 013, 415 South Street, Waltham, Massachusetts 02454-9110, USA.

出版信息

Nat Neurosci. 2001 Mar;4(3):297-303. doi: 10.1038/85147.

Abstract

The faithful production of rhythms by many neural circuits depends critically on the strengths of inhibitory synaptic connections. We propose a model in which the strengths of inhibitory synapses in a central pattern-generating circuit are subject to activity-dependent plasticity. The strength of each synapse is modified as a function of the global activity of the postsynaptic neuron and by correlated activity of the pre- and postsynaptic neurons. This allows the self-assembly, from random initial synaptic strengths, of two cells into reciprocal oscillation and three cells into a rhythmic triphasic motor pattern. This self-assembly illustrates that complex oscillatory circuits that depend on multiple inhibitory synaptic connections can be tuned via simple activity-dependent rules.

摘要

许多神经回路对节律的精确产生严重依赖于抑制性突触连接的强度。我们提出了一个模型,其中中央模式发生器回路中抑制性突触的强度受活动依赖的可塑性影响。每个突触的强度根据突触后神经元的整体活动以及突触前和突触后神经元的相关活动进行调整。这使得从随机的初始突触强度开始,两个细胞能够自组装成相互振荡,三个细胞能够自组装成有节律的三相运动模式。这种自组装表明,依赖多个抑制性突触连接的复杂振荡回路可以通过简单的活动依赖规则进行调节。

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