Representing Cardiac Bidomain Bath−Loading Effects by an Augmented Monodomain Approach: Application to Complex Ventricular Models

Bibliographic Details
Main Author: Bishop MJ and G Plank
Format: Journal article
Published: 2010
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author Bishop MJ and G Plank
author_facet Bishop MJ and G Plank
author_sort Bishop MJ and G Plank
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description
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format Journal article
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spelling oxford-uuid:bfb269a4-7a46-4845-b619-e1de020cf0272022-03-27T05:49:19ZRepresenting Cardiac Bidomain Bath−Loading Effects by an Augmented Monodomain Approach: Application to Complex Ventricular ModelsJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:bfb269a4-7a46-4845-b619-e1de020cf027Department of Computer Science2010Bishop MJ and G Plank
spellingShingle Bishop MJ and G Plank
Representing Cardiac Bidomain Bath−Loading Effects by an Augmented Monodomain Approach: Application to Complex Ventricular Models
title Representing Cardiac Bidomain Bath−Loading Effects by an Augmented Monodomain Approach: Application to Complex Ventricular Models
title_full Representing Cardiac Bidomain Bath−Loading Effects by an Augmented Monodomain Approach: Application to Complex Ventricular Models
title_fullStr Representing Cardiac Bidomain Bath−Loading Effects by an Augmented Monodomain Approach: Application to Complex Ventricular Models
title_full_unstemmed Representing Cardiac Bidomain Bath−Loading Effects by an Augmented Monodomain Approach: Application to Complex Ventricular Models
title_short Representing Cardiac Bidomain Bath−Loading Effects by an Augmented Monodomain Approach: Application to Complex Ventricular Models
title_sort representing cardiac bidomain bath loading effects by an augmented monodomain approach application to complex ventricular models
work_keys_str_mv AT bishopmjandgplank representingcardiacbidomainbathloadingeffectsbyanaugmentedmonodomainapproachapplicationtocomplexventricularmodels