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尖峰阈值变异性源于神经元动力学中的分离交点。

Spike-Threshold Variability Originated from Separatrix-Crossing in Neuronal Dynamics.

机构信息

Institute of Theoretical Physics, Lanzhou University, Lanzhou, Gansu 730000, China.

College of Physics and Information Technology, Shaanxi Normal University, Xi'an 710062, China.

出版信息

Sci Rep. 2016 Aug 22;6:31719. doi: 10.1038/srep31719.

Abstract

The threshold voltage for action potential generation is a key regulator of neuronal signal processing, yet the mechanism of its dynamic variation is still not well described. In this paper, we propose that threshold phenomena can be classified as parameter thresholds and state thresholds. Voltage thresholds which belong to the state threshold are determined by the 'general separatrix' in state space. We demonstrate that the separatrix generally exists in the state space of neuron models. The general form of separatrix was assumed as the function of both states and stimuli and the previously assumed threshold evolving equation versus time is naturally deduced from the separatrix. In terms of neuronal dynamics, the threshold voltage variation, which is affected by different stimuli, is determined by crossing the separatrix at different points in state space. We suggest that the separatrix-crossing mechanism in state space is the intrinsic dynamic mechanism for threshold voltages and post-stimulus threshold phenomena. These proposals are also systematically verified in example models, three of which have analytic separatrices and one is the classic Hodgkin-Huxley model. The separatrix-crossing framework provides an overview of the neuronal threshold and will facilitate understanding of the nature of threshold variability.

摘要

动作电位产生的阈电压是神经元信号处理的关键调节因素,但它的动态变化机制仍未得到很好的描述。在本文中,我们提出阈现象可以分为参数阈和状态阈。属于状态阈的电压阈由状态空间中的“一般分离曲面”决定。我们证明了分离曲面在神经元模型的状态空间中普遍存在。假设分离曲面的一般形式是状态和刺激的函数,并且之前假设的随时间演变的阈方程是从分离曲面自然推导出来的。从神经元动力学的角度来看,受不同刺激影响的阈电压变化是由在状态空间中不同点穿越分离曲面决定的。我们认为,状态空间中的分离曲面穿越机制是阈电压和刺激后阈现象的内在动力学机制。这些建议在示例模型中也得到了系统验证,其中三个模型具有解析分离曲面,一个是经典的 Hodgkin-Huxley 模型。分离曲面穿越框架提供了对神经元阈的概述,并将有助于理解阈变异性的本质。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/86db/4992847/00b8daa52ca7/srep31719-f1.jpg

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