Effect of Torso Non-Homogeneities in the quasi-static inverse problems arising in electrocardiology
Author:
Affiliation:
1. Institut Mathématiques de Bordeaux , Université de Bordeaux , 351 Cours de la Libération 33400 Talence, France .
2. Universiteitsweg 99, Kamer 0, 3584 CG Utrecht , Holland .
Abstract
Publisher
Walter de Gruyter GmbH
Subject
Applied Mathematics,Control and Optimization,Numerical Analysis,Analysis
Link
https://www.sciendo.com/pdf/10.2478/mjpaa-2019-0017
Reference23 articles.
1. [1] B.E. Ainseba, M. Bendahmane and A. Lopez. Analysis of an inverse problem for the bidomain model of cardiac tissue. Preprint.
2. [2] M. Bendahmane, R. Bürger and R. Ruiz. A finite volume scheme for cardiac propagation in media with isotropic conductivities. Mathematics and Computers in Simulation, (80):1821-1840, 2010.10.1016/j.matcom.2009.12.010
3. [3] M. Bendahmane, R. Bürger and R. Ruiz. A multiresolution space-time adaptive scheme for the bidomain model in electrocardiology. Num. Met. for Part. Diff. Eq., 26, 1377-1404, 2010.10.1002/num.20495
4. [4] M. Bendahmane and K.H. Karlsen, Analysis of a class of degenerate reaction-diffusion systems and the bido-main model of cardiac tissue, Netw. Heterog. Media 1 (2006) 185–218.10.3934/nhm.2006.1.185
5. [5] M. Bendahmane and K.H. Karlsen. Finite volume methods for degenerate reaction-diffusion systems modeling the Cardiac electric field. Applied Numerical Mathematics, (59)9, 2266-2284, 2009.10.1016/j.apnum.2008.12.016
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1. Low-regret optimal control for an inverse electrocardiological problem with incomplete data;International Journal of Control;2022-06-29
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