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促性腺激素释放激素神经元的霍奇金-赫胥黎类型建模与参数估计

Hodgkin-Huxley type modelling and parameter estimation of GnRH neurons.

作者信息

Csercsik Dávid, Farkas Imre, Szederkényi Gábor, Hrabovszky Erik, Liposits Zsolt, Hangos Katalin M

机构信息

Process Control Research Group, Computer and Automation Research Institute, Hungarian Academy of Sciences, Budapest, Hungary.

出版信息

Biosystems. 2010 Jun;100(3):198-207. doi: 10.1016/j.biosystems.2010.03.004. Epub 2010 Mar 17.

Abstract

In this paper a simple one compartment Hodgkin-Huxley type electrophysiological model of GnRH neurons is presented, that is able to reasonably reproduce the most important qualitative features of the firing pattern, such as baseline potential, depolarization amplitudes, sub-baseline hyperpolarization phenomenon and average firing frequency in response to excitatory current. In addition, the same model provides an acceptable numerical fit of voltage clamp (VC) measurement results. The parameters of the model have been estimated using averaged VC traces, and characteristic values of measured current clamp traces originating from GnRH neurons in hypothalamic slices. The resulting parameter values show a good agreement with literature data in most of the cases. Applying parametric changes, which lead to the increase of baseline potential and enhance cell excitability, the model becomes capable of bursting. The effects of various parameters to burst length have been analyzed by simulation.

摘要

本文提出了一种简单的单室促性腺激素释放激素(GnRH)神经元霍奇金-赫胥黎型电生理模型,该模型能够合理地重现放电模式的最重要定性特征,如基线电位、去极化幅度、基线以下超极化现象以及对兴奋性电流的平均放电频率。此外,同一模型对电压钳(VC)测量结果提供了可接受的数值拟合。该模型的参数已使用平均VC迹线以及源自下丘脑切片中GnRH神经元的测量电流钳迹线的特征值进行了估计。在大多数情况下,所得参数值与文献数据显示出良好的一致性。通过应用参数变化,导致基线电位增加并增强细胞兴奋性,该模型能够产生爆发式放电。通过模拟分析了各种参数对爆发长度的影响。

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