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

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 in silico data and applied to in vivo recordi...

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Autores principales: Vich, Catalina, Berg, Rune W., Guillamon, Antoni, Ditlevsen, Susanne
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5524927/
https://www.ncbi.nlm.nih.gov/pubmed/28790909
http://dx.doi.org/10.3389/fncom.2017.00069
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author Vich, Catalina
Berg, Rune W.
Guillamon, Antoni
Ditlevsen, Susanne
author_facet Vich, Catalina
Berg, Rune W.
Guillamon, Antoni
Ditlevsen, Susanne
author_sort Vich, Catalina
collection PubMed
description 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 in silico data and applied to in vivo 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.
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spelling pubmed-55249272017-08-08 Estimation of Synaptic Conductances in Presence of Nonlinear Effects Caused by Subthreshold Ionic Currents Vich, Catalina Berg, Rune W. Guillamon, Antoni Ditlevsen, Susanne Front Comput Neurosci Neuroscience 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 in silico data and applied to in vivo 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. Frontiers Media S.A. 2017-07-25 /pmc/articles/PMC5524927/ /pubmed/28790909 http://dx.doi.org/10.3389/fncom.2017.00069 Text en Copyright © 2017 Vich, Berg, Guillamon and Ditlevsen. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) or licensor are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Neuroscience
Vich, Catalina
Berg, Rune W.
Guillamon, Antoni
Ditlevsen, Susanne
Estimation of Synaptic Conductances in Presence of Nonlinear Effects Caused by Subthreshold Ionic Currents
title Estimation of Synaptic Conductances in Presence of Nonlinear Effects Caused by Subthreshold Ionic Currents
title_full Estimation of Synaptic Conductances in Presence of Nonlinear Effects Caused by Subthreshold Ionic Currents
title_fullStr Estimation of Synaptic Conductances in Presence of Nonlinear Effects Caused by Subthreshold Ionic Currents
title_full_unstemmed Estimation of Synaptic Conductances in Presence of Nonlinear Effects Caused by Subthreshold Ionic Currents
title_short Estimation of Synaptic Conductances in Presence of Nonlinear Effects Caused by Subthreshold Ionic Currents
title_sort estimation of synaptic conductances in presence of nonlinear effects caused by subthreshold ionic currents
topic Neuroscience
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5524927/
https://www.ncbi.nlm.nih.gov/pubmed/28790909
http://dx.doi.org/10.3389/fncom.2017.00069
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