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Excitability inflection for exit problem in Class 1 excitable systems

机译:兴奋性拐点在1级兴奋系统中的退出问题

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摘要

The path from resting to spiking threshold can generate a typical action potential in neurons. For excitable systems with ubiquitous noise, this process can be investigated in the framework of large deviation theory. In this paper, a special position (named as excitability inflection point) of the exit process in the canonical Class 1 excitable system is identified, which is both the extremal position of the dispersion and the momentum. The role of this point is examined by adding a Gaussian white noise and a pulse with a special position into the deterministic system. Surprisingly, by calculating the firing rate, its extremal position can be made closer to the theoretical excitability inflection point with vanishing pulse instead of vanishing noise. The influences of finite noise and pulse are investigated in detail by fixing one of them and changing the other. They showed distinct impacts on the real extremal positions of the firing rate. Finally, some open problems are given. (C) 2019 Elsevier B.V. All rights reserved.
机译:从静止到尖峰阈值的路径可以在神经元中产生典型的动作电位。对于具有无处不在的噪声的兴奋系统,可以在大偏差理论的框架中进行该过程。在本文中,鉴定了规范类别1激发系统中出口过程的特殊位置(命名为兴奋性拐点),这既是分散的极值和动量。通过在确定性系统中添加高斯白噪声和具有特殊位置的脉冲来检查这一点的作用。令人惊讶的是,通过计算射击率,可以使其极端位置与消失脉冲而不是消失噪声的理论激发性拐点。通过固定其中一个并改变另一个,详细研究了有限噪声和脉冲的影响。它们对射击率的真正极值位置表现出不同的影响。最后,给出了一些打开问题。 (c)2019 Elsevier B.v.保留所有权利。

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