CARDIAC ELECTROMECHANICS: THE EFFECT OF CONTRACTION MODEL ON THE MATHEMATICAL PROBLEM AND ACCURACY OF THE NUMERICAL SCHEME
Models of cardiac electromechanics usually contain a contraction model determining the active tension induced at the cellular level and the equations of nonlinear elasticity to determine tissue deformation in response to this active tension. All contraction models are dependent on cardiac electrophy...
Principais autores: | , , , |
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Formato: | Journal article |
Publicado em: |
2010
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_version_ | 1826284706794045440 |
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author | Pathmanathan, P Chapman, S Gavaghan, D Whiteley, J |
author_facet | Pathmanathan, P Chapman, S Gavaghan, D Whiteley, J |
author_sort | Pathmanathan, P |
collection | OXFORD |
description | Models of cardiac electromechanics usually contain a contraction model determining the active tension induced at the cellular level and the equations of nonlinear elasticity to determine tissue deformation in response to this active tension. All contraction models are dependent on cardiac electrophysiology but can also be dependent on the stretch and stretch rate in the fibre direction. This fundamentally affects the mathematical problem |
first_indexed | 2024-03-07T01:17:52Z |
format | Journal article |
id | oxford-uuid:8f52d08f-9e74-45f9-acc6-b4dba36640a6 |
institution | University of Oxford |
last_indexed | 2024-03-07T01:17:52Z |
publishDate | 2010 |
record_format | dspace |
spelling | oxford-uuid:8f52d08f-9e74-45f9-acc6-b4dba36640a62022-03-26T23:03:30ZCARDIAC ELECTROMECHANICS: THE EFFECT OF CONTRACTION MODEL ON THE MATHEMATICAL PROBLEM AND ACCURACY OF THE NUMERICAL SCHEMEJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:8f52d08f-9e74-45f9-acc6-b4dba36640a6Department of Computer Science2010Pathmanathan, PChapman, SGavaghan, DWhiteley, JModels of cardiac electromechanics usually contain a contraction model determining the active tension induced at the cellular level and the equations of nonlinear elasticity to determine tissue deformation in response to this active tension. All contraction models are dependent on cardiac electrophysiology but can also be dependent on the stretch and stretch rate in the fibre direction. This fundamentally affects the mathematical problem |
spellingShingle | Pathmanathan, P Chapman, S Gavaghan, D Whiteley, J CARDIAC ELECTROMECHANICS: THE EFFECT OF CONTRACTION MODEL ON THE MATHEMATICAL PROBLEM AND ACCURACY OF THE NUMERICAL SCHEME |
title | CARDIAC ELECTROMECHANICS: THE EFFECT OF CONTRACTION MODEL ON THE MATHEMATICAL PROBLEM AND ACCURACY OF THE NUMERICAL SCHEME |
title_full | CARDIAC ELECTROMECHANICS: THE EFFECT OF CONTRACTION MODEL ON THE MATHEMATICAL PROBLEM AND ACCURACY OF THE NUMERICAL SCHEME |
title_fullStr | CARDIAC ELECTROMECHANICS: THE EFFECT OF CONTRACTION MODEL ON THE MATHEMATICAL PROBLEM AND ACCURACY OF THE NUMERICAL SCHEME |
title_full_unstemmed | CARDIAC ELECTROMECHANICS: THE EFFECT OF CONTRACTION MODEL ON THE MATHEMATICAL PROBLEM AND ACCURACY OF THE NUMERICAL SCHEME |
title_short | CARDIAC ELECTROMECHANICS: THE EFFECT OF CONTRACTION MODEL ON THE MATHEMATICAL PROBLEM AND ACCURACY OF THE NUMERICAL SCHEME |
title_sort | cardiac electromechanics the effect of contraction model on the mathematical problem and accuracy of the numerical scheme |
work_keys_str_mv | AT pathmanathanp cardiacelectromechanicstheeffectofcontractionmodelonthemathematicalproblemandaccuracyofthenumericalscheme AT chapmans cardiacelectromechanicstheeffectofcontractionmodelonthemathematicalproblemandaccuracyofthenumericalscheme AT gavaghand cardiacelectromechanicstheeffectofcontractionmodelonthemathematicalproblemandaccuracyofthenumericalscheme AT whiteleyj cardiacelectromechanicstheeffectofcontractionmodelonthemathematicalproblemandaccuracyofthenumericalscheme |