A protocol combining current- and voltage-clamp provides a novel and useful three-dimensional representation of cardiac action potential

A compact three-dimensional representation of cardiac action potential (AP) properties in terms of current source is presented here. The experimental protocol used to obtain such representation is based on the measure of instantaneous current-voltage relationships during the course of the AP. The pr...

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Main Authors: Massimiliano Zaniboni, Francesca Cacciani
Format: Article
Language:English
Published: PAGEPress Publications 2014-01-01
Series:Journal of Biological Research
Subjects:
Online Access:http://www.pagepressjournals.org/index.php/jbr/article/view/2134
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spelling doaj-c67412eb951c4c059b4afaff54d777e92020-11-25T02:59:46ZengPAGEPress PublicationsJournal of Biological Research1826-88382284-02302014-01-0187110.4081/jbr.2014.21341427A protocol combining current- and voltage-clamp provides a novel and useful three-dimensional representation of cardiac action potentialMassimiliano Zaniboni0Francesca Cacciani1Department of Biosciences, University of ParmaDepartment of Biosciences, University of ParmaA compact three-dimensional representation of cardiac action potential (AP) properties in terms of current source is presented here. The experimental protocol used to obtain such representation is based on the measure of instantaneous current-voltage relationships during the course of the AP. The procedure, which combines current- and voltage-clamps on patch clamped cardiac myocytes, has been previously applied to real cells, and then extended to computer simulations with cellular ventricular AP models. The three-dimensional AP representation allows to easily estimate membrane resistance during repolarization, a key factor for the modulation of ventricular repolarization. It also shows that, during late ventricular repolarization, membrane conductance becomes negative, <em>i.e.</em> repolarization is auto-regenerative. The novel AP representation is therefore a useful tool for both in vivo and in silico cardiac cellular electrophysiological investigations.http://www.pagepressjournals.org/index.php/jbr/article/view/2134ardiac repolarization, cardiac action potential, membrane resistance, cardiac computational modelling
collection DOAJ
language English
format Article
sources DOAJ
author Massimiliano Zaniboni
Francesca Cacciani
spellingShingle Massimiliano Zaniboni
Francesca Cacciani
A protocol combining current- and voltage-clamp provides a novel and useful three-dimensional representation of cardiac action potential
Journal of Biological Research
ardiac repolarization, cardiac action potential, membrane resistance, cardiac computational modelling
author_facet Massimiliano Zaniboni
Francesca Cacciani
author_sort Massimiliano Zaniboni
title A protocol combining current- and voltage-clamp provides a novel and useful three-dimensional representation of cardiac action potential
title_short A protocol combining current- and voltage-clamp provides a novel and useful three-dimensional representation of cardiac action potential
title_full A protocol combining current- and voltage-clamp provides a novel and useful three-dimensional representation of cardiac action potential
title_fullStr A protocol combining current- and voltage-clamp provides a novel and useful three-dimensional representation of cardiac action potential
title_full_unstemmed A protocol combining current- and voltage-clamp provides a novel and useful three-dimensional representation of cardiac action potential
title_sort protocol combining current- and voltage-clamp provides a novel and useful three-dimensional representation of cardiac action potential
publisher PAGEPress Publications
series Journal of Biological Research
issn 1826-8838
2284-0230
publishDate 2014-01-01
description A compact three-dimensional representation of cardiac action potential (AP) properties in terms of current source is presented here. The experimental protocol used to obtain such representation is based on the measure of instantaneous current-voltage relationships during the course of the AP. The procedure, which combines current- and voltage-clamps on patch clamped cardiac myocytes, has been previously applied to real cells, and then extended to computer simulations with cellular ventricular AP models. The three-dimensional AP representation allows to easily estimate membrane resistance during repolarization, a key factor for the modulation of ventricular repolarization. It also shows that, during late ventricular repolarization, membrane conductance becomes negative, <em>i.e.</em> repolarization is auto-regenerative. The novel AP representation is therefore a useful tool for both in vivo and in silico cardiac cellular electrophysiological investigations.
topic ardiac repolarization, cardiac action potential, membrane resistance, cardiac computational modelling
url http://www.pagepressjournals.org/index.php/jbr/article/view/2134
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