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存在阈下离子电流引起的非线性效应时突触电导的估计

Estimation of Synaptic Conductances in Presence of Nonlinear Effects Caused by Subthreshold Ionic Currents.

作者信息

Vich Catalina, Berg Rune W, Guillamon Antoni, Ditlevsen Susanne

机构信息

Departament de Matemàtiques i Informàtica, Universitat de les Illes BalearsPalma, Spain.

Center for Neuroscience, University of CopenhagenCopenhagen, Denmark.

出版信息

Front Comput Neurosci. 2017 Jul 25;11:69. doi: 10.3389/fncom.2017.00069. eCollection 2017.

Abstract

Subthreshold fluctuations in neuronal membrane potential traces contain nonlinear components, and employing nonlinear models might improve the statistical inference. We propose a new strategy to estimate synaptic conductances, which has been tested using data and applied to recordings. The model is constructed to capture the nonlinearities caused by subthreshold activated currents, and the estimation procedure can discern between excitatory and inhibitory conductances using only one membrane potential trace. More precisely, we perform second order approximations of biophysical models to capture the subthreshold nonlinearities, resulting in quadratic integrate-and-fire models, and apply approximate maximum likelihood estimation where we only suppose that conductances are stationary in a 50-100 ms time window. The results show an improvement compared to existent procedures for the models tested here.

摘要

神经元膜电位轨迹中的阈下波动包含非线性成分,采用非线性模型可能会改善统计推断。我们提出了一种估计突触电导的新策略,该策略已通过数据进行测试并应用于记录。构建该模型是为了捕捉阈下激活电流引起的非线性,并且估计过程仅使用一条膜电位轨迹就能区分兴奋性和抑制性电导。更确切地说,我们对生物物理模型进行二阶近似以捕捉阈下非线性,从而得到二次积分发放模型,并应用近似最大似然估计,其中我们仅假设电导在50 - 100毫秒的时间窗口内是平稳的。结果表明,与这里测试的模型的现有程序相比有了改进。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3859/5524927/dd40e938c0df/fncom-11-00069-g0001.jpg

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