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Emitting waves from defects in network with autapses

机译:具有自支撑的网络中的缺陷发出的波

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Autapse is an unusual type of synapse generated by a neuron on itself. The effect of autapse connected to a neuron is often described by using a self-feedback forcing current in a close loop, and the electric activities of neuron can be regulated by the autapse greatly. Generally, positive feedback in the autapse can excite the quiescent neuron while negative feedback often calms down the excitable neuron. In this paper, the Hindmarsh-Rose neuron model is used to define the local kinetics of each node in the neuronal network, and the distribution of autapses in the network is considered to investigate the emergence of emitting wave induced by autapse (in electrical type) with negative feedback. In the case of ring network, it is found that pulse can be blocked by the neurons with negative feedback in autapse, and the pulse also can keep alive in the ring network stably under appropriate coupling intensity. Furthermore, target wave can be induced in the two-dimensional square array, and the nodes adjusted by negative electrical feedback type in autapses can emit target-like waves to regulate the collective behaviors of neurons, this is a new type of wave formation results from diffraction. It concludes that local distribution of autapse with negative feedback type can generate 'defects' in the network, the diversity in excitability accounts for the emergence of emitting wave from these defects. Finally, the functional switch between negative and positive feedback in autapse is discussed, it is claimed that positive feedback autapse plays an important role in cheering up quiescent neurons, while the negative feedback in electric autapse can contribute to slow down the excitable neurons. (C) 2014 Elsevier B.V. All rights reserved.
机译:Autapse是神经元自身产生的一种异常突触。通常通过使用闭环中的自反馈强迫电流来描述与神经元连接的自发神经的作用,并且神经元的电活动可以由自发神经很大程度上调节。通常,耳垂中的正反馈可以激发静止的神经元,而负反馈通常可以使可兴奋的神经元平静下来。在本文中,Hindmarsh-Rose神经元模型用于定义神经元网络中每个节点的局部动力学,并且考虑了网络中原子簇的分布,以研究由原子簇诱发的发射波的出现(电学类型)负面反馈。在环形网络的情况下,发现脉冲可以被具有负反馈的神经元阻滞,并且在适当的耦合强度下,脉冲也可以在环形网络中稳定地存活。此外,可以在二维正方形阵列中感应目标波,并且通过负电反馈类型调整的结点可以发射类似目标的波来调节神经元的集体行为,这是一种新的波形成结果,它来自衍射。结论是具有负反馈类型的原子簇的局部分布会在网络中产生“缺陷”,兴奋性的多样性解释了这些缺陷产生的发射波。最后,讨论了在自闭症中负反馈与正反馈之间的功能转换,声称正反馈自律在振奋静态神经元中起重要作用,而在电自负症中的负反馈可以减慢兴奋性神经元的速度。 (C)2014 Elsevier B.V.保留所有权利。

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