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首页> 外文期刊>Neural Networks: The Official Journal of the International Neural Network Society >Effect of inhibitory spike-timing-dependent plasticity on fast sparsely synchronized rhythms in a small-world neuronal network
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Effect of inhibitory spike-timing-dependent plasticity on fast sparsely synchronized rhythms in a small-world neuronal network

机译:抑制穗定时依赖性可塑性对小世界网络中快速稀疏同步节奏的影响

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摘要

We consider the Watts-Strogatz small-world network (SWN) consisting of inhibitory fast spiking Izhikevich interneurons. This inhibitory neuronal population has adaptive dynamic synaptic strengths governed by the inhibitory spike-timing-dependent plasticity (iSTDP). In previous works without iSTDP, fast sparsely synchronized rhythms, associated with diverse cognitive functions, were found to appear in a range of large noise intensities for fixed strong synaptic inhibition strengths. Here, we investigate the effect of iSTDP on fast sparse synchronization (FSS) by varying the noise intensity D. We employ an asymmetric anti-Hebbian time window for the iSTDP update rule [which is in contrast to the Hebbian time window for the excitatory STDP (eSTDP)]. Depending on values of D, population-averaged values of saturated synaptic inhibition strengths are potentiated [long-term potentiation (LTP)] or depressed [long-term depression (LTD)] in comparison with the initial mean value, and dispersions from the mean values of LTP/LTD are much increased when compared with the initial dispersion, independently of D. In most cases of LTD where the effect of mean LTD is dominant in comparison with the effect of dispersion, good synchronization (with higher spiking measure) is found to get better via LTD, while bad synchronization (with lower spiking measure) is found to get worse via LTP. This kind of Matthew effect in inhibitory synaptic plasticity is in contrast to that in excitatory synaptic plasticity where good (bad) synchronization gets better (worse) via LTP (LTD). Emergences of LTD and LTP of synaptic inhibition strengths are intensively investigated via a microscopic method based on the distributions of time delays between the pre- and the post-synaptic spike times. Furthermore, we also investigate the effects of network architecture on FSS by changing the rewiring probability p of the SWN in the presence of iSTDP. (C) 2018 Published by Elsevier Ltd.
机译:我们考虑由抑制快速尖刺Izhikevich Interneurons组成的Watts-Strogatz小世界网络(SWN)。该抑制性神经元群具有由抑制尖峰定时依赖性塑性(ISTDP)管辖的适应性动态突触强度。在没有ISTDP的之前的作品中,发现与多样化的认知功能相关的快速稀疏同步节奏,被发现出现在一系列大的噪声强度中,用于固定的强大的突触抑制强度。在这里,我们通过改变噪声强度D来调查ISTDP对快速稀疏同步(FSS)的影响。我们采用了ISTDP更新规则的非对称防生跳时间窗口[兴奋性STDP的Hebbian时间窗口相反(estdp)]。取决于D的值,与初始平均值相比,饱和突触抑制强度的种群平均值是增强的[长期增强(LTP)]或抑制的[长期凹陷(LTD)],以及从平均值的分散与初始分散体相比,LTP / LTD的价值大大增加。在大多数有限公司的情况下,平均效果与分散的效果相比,良好的同步(具有更高的尖峰测量)为了获得更好的通过LTD,虽然发现不良同步(具有较低的尖峰措施)通过LTP变得更糟。这种在抑制突触塑性中的马太福效果与兴奋性突触塑性相反,良好(不良)同步通过LTP(LTD)更好(更差)。 LTD的出现和突触抑制强度的LTP通过基于预突出和突出后峰值时间和突出后峰值时间和后突出的峰值时间之间的时间延迟的分布来集中研究。此外,我们还通过在ISTDP的存在下改变SWN的重新加热概率P来研究网络架构对FSS的影响。 (c)2018由elestvier有限公司出版

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