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Effect of asynchronous GABA release on the oscillatory dynamics of inhibitory coupled neurons

机译:异步GABA释放对抑制性耦合神经元振荡动力学的影响

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摘要

Neuronal activities often exhibit rythmic patterns, with a frequency that changes from one band to another. These oscillations can be reproduced in network models of coupled inhibitors. However, the mechanism that controls the period of the oscillations is not fully understood. Recent studies have shown that various types of inhibitory interneurons may release transmitters synchronously or asynchronously. Could this diversity explain changes in the rythm of the oscillation? To answer this, we studied the effect of synchronous versus asynchronous inhibition, in a network of coupled inhibitory neurons. We observed that frequency and synchronization are reduced when release is asynchronous; the standard deviation of activity bursts increases linearly, while their period increases in a sublinear way. A mathematical analysis supports these observations. This suggests that the release mode of inhibition could play an important role in setting up the oscillatory frequency of inhibitory coupled neurons.
机译:神经元活动通常表现出律动模式,频率从一个频带变为另一个频带。这些振荡可以在耦合抑制剂的网络模型中再现。但是,控制振荡周期的机制还不完全清楚。最近的研究表明,各种类型的抑制性中间神经元可以同步或异步释放发射器。这种多样性可以解释振荡节奏的变化吗?为了回答这个问题,我们在耦合抑制神经元网络中研究了同步抑制与异步抑制的作用。我们观察到,异步发布会降低频率和同步。活动爆发的标准偏差线性增加,而活动爆发的周期以亚线性方式增加。数学分析支持这些观察。这表明抑制的释放模式可能在建立抑制性耦合神经元的振荡频率中起重要作用。

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