Evaluation of a computational model for drug action on cardiac tissue
R. Frotscher, J. Koch, H. Raatschen, and M. Staat. 11th World Congress on Computational Mechanics (WCCM XI), 5th European Conference on Computational Mechanics (ECCM V), 6th European Conference on Computational Fluid Dynamics (ECFD VI) July 20-25, 2014, Barcelona, Spain, page 1425--1436. European Community on Computational Methods in Applied Sciences (ECCOMAS), (2014)
Abstract
In this paper an electromechanical finite element model of cardiac tissue is evaluated with respect to its ability to simulate drug action. We compare experimental mechanical data of our partners with corresponding simulation results.
11th World Congress on Computational Mechanics (WCCM XI), 5th European Conference on Computational Mechanics (ECCM V), 6th European Conference on Computational Fluid Dynamics (ECFD VI) July 20-25, 2014, Barcelona, Spain
year
2014
organization
European Community on Computational Methods in Applied Sciences (ECCOMAS)
%0 Conference Paper
%1 frotscher2014evaluation
%A Frotscher, Ralf
%A Koch, Jan-Peter
%A Raatschen, Hans-Jürgen
%A Staat, Manfred
%B 11th World Congress on Computational Mechanics (WCCM XI), 5th European Conference on Computational Mechanics (ECCM V), 6th European Conference on Computational Fluid Dynamics (ECFD VI) July 20-25, 2014, Barcelona, Spain
%D 2014
%E Oñate, E
%E J. Oliver, J
%E Huerta, A
%K Cardiac Element Method Modeling,Finite Models,Drug Tissue,Cell
%P 1425--1436
%T Evaluation of a computational model for drug action on cardiac tissue
%U /brokenurl#opus.bibliothek.fh-aachen.de/opus4/files/6505/Barcelona\_2014-p633.pdf
%X In this paper an electromechanical finite element model of cardiac tissue is evaluated with respect to its ability to simulate drug action. We compare experimental mechanical data of our partners with corresponding simulation results.
@inproceedings{frotscher2014evaluation,
abstract = {In this paper an electromechanical finite element model of cardiac tissue is evaluated with respect to its ability to simulate drug action. We compare experimental mechanical data of our partners with corresponding simulation results.},
added-at = {2019-12-23T09:34:32.000+0100},
author = {Frotscher, Ralf and Koch, Jan-Peter and Raatschen, Hans-J{\"{u}}rgen and Staat, Manfred},
biburl = {https://www.bibsonomy.org/bibtex/2435834d4a1cdf6d8ee61c3ab1b7b7ea0/staat},
booktitle = {11th World Congress on Computational Mechanics (WCCM XI), 5th European Conference on Computational Mechanics (ECCM V), 6th European Conference on Computational Fluid Dynamics (ECFD VI) July 20-25, 2014, Barcelona, Spain},
editor = {O{\~{n}}ate, E and {J. Oliver}, J and Huerta, A},
interhash = {ea3025376011a45d7f940a3369705741},
intrahash = {435834d4a1cdf6d8ee61c3ab1b7b7ea0},
keywords = {Cardiac Element Method Modeling,Finite Models,Drug Tissue,Cell},
organization = {European Community on Computational Methods in Applied Sciences (ECCOMAS)},
pages = {1425--1436},
timestamp = {2019-12-23T09:34:32.000+0100},
title = {{Evaluation of a computational model for drug action on cardiac tissue}},
url = {/brokenurl#opus.bibliothek.fh-aachen.de/opus4/files/6505/Barcelona{\_}2014-p633.pdf},
year = 2014
}