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Bifurcations of enhanced neuronal bursting activities induced by the negative current mediated by inhibitory autapse

机译:抑制抑制介导的负电流引起的增强神经元爆破活性的分叉

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摘要

In contrast to the traditional viewpoint that inhibitory effect can often induce the reduction of neural firing activities, negative self-feedback current mediated by inhibitory autapse is identified to enhance neuronal bursting activities in the Chay model composed of fast and slow subsystems. With increasing autaptic strength of the autapse, bursting patterns exhibit period-adding bifurcations, which leads to the increase in the mean firing frequency. Such a phenomenon can be well interpreted with fast-slow variable dissection and bifurcation analysis to the bursting patterns. The initial and termination phases of the burst correspond to a saddle-node bifurcation and a saddle-homoclinic (SH) bifurcation of the fast subsystem, respectively. With increasing the autaptic strength, the termination phase of the burst delays and the initial phase remains nearly unchanged. Therefore, the width of the burst becomes wider to contain more spikes, which leads to the period-adding bifurcations and the increases of mean firing frequency. The detailed relationship between the delay of termination phase (SH point) and the characteristic of the inhibitory autaptic current is identified. Moreover, the distinction between the present paper and the previous investigations of the enhancement of bursting activities induced by inhibitory current with time delay is discussed. Based on the results that inhibitory autapse without time delay can enhance bursting activities via bifurcation mechanism, a novel case of nonlinear dynamics in contrast to the traditional viewpoint of the inhibitory effect, a possible function of the autapse, a novel potential measure to modulate bursting activities are present.
机译:与抑制效果通常可以诱导神经烧制活动的减少的传统观点相反,鉴定了通过抑制性自闭式介导的负自我反馈电流,以增强由快速和慢速子系统组成的恙核模型中的神经元爆破活动。随着自闭症的自闭症强度的增加,突发模式表现出时期添加分叉分叉,这导致平均烧制频率的增加。这种现象可以利用快速缓慢的可变解剖和分叉分析来解释为爆破模式。突发的初始和终端相分别对应于Saddle节点分叉和快速子系统的马鞍 - 同型(SH)分叉。随着自拔强度的增加,突发延迟的终止阶段和初始相位几乎不变。因此,突发的宽度变宽容纳更多的尖峰,这导致周期增加的分叉和平均烧制频率的增加。鉴定了终止阶段(SH点)延迟与抑制自触发电流的特性之间的详细关系。此外,讨论了本文的区分和对随着时间延迟抑制电流引起的突出活性提高的先前研究。基于抑制不断延迟的抑制抑制的结果可以通过分叉机制来增强爆破活动,与抑制效果的传统观点相比,一种新的非线性动力学的案例,其自闭式的可能功能,一种新的调节爆破活动的潜在措施存在。

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