Development of an anatomically detailed MRI−derived rabbit ventricular model and assessment of its impact on simulations of electrophysiological function

Bibliographic Details
Main Author: Grau, K
Format: Journal article
Published: 2010
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author Grau, K
author_facet Grau, K
author_sort Grau, K
collection OXFORD
description
first_indexed 2024-03-06T23:48:14Z
format Journal article
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institution University of Oxford
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publishDate 2010
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spelling oxford-uuid:71b2091c-251c-421c-80ed-95b29ce736982022-03-26T19:45:17ZDevelopment of an anatomically detailed MRI−derived rabbit ventricular model and assessment of its impact on simulations of electrophysiological functionJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:71b2091c-251c-421c-80ed-95b29ce73698Department of Computer Science2010Grau, K
spellingShingle Grau, K
Development of an anatomically detailed MRI−derived rabbit ventricular model and assessment of its impact on simulations of electrophysiological function
title Development of an anatomically detailed MRI−derived rabbit ventricular model and assessment of its impact on simulations of electrophysiological function
title_full Development of an anatomically detailed MRI−derived rabbit ventricular model and assessment of its impact on simulations of electrophysiological function
title_fullStr Development of an anatomically detailed MRI−derived rabbit ventricular model and assessment of its impact on simulations of electrophysiological function
title_full_unstemmed Development of an anatomically detailed MRI−derived rabbit ventricular model and assessment of its impact on simulations of electrophysiological function
title_short Development of an anatomically detailed MRI−derived rabbit ventricular model and assessment of its impact on simulations of electrophysiological function
title_sort development of an anatomically detailed mri derived rabbit ventricular model and assessment of its impact on simulations of electrophysiological function
work_keys_str_mv AT grauk developmentofananatomicallydetailedmriderivedrabbitventricularmodelandassessmentofitsimpactonsimulationsofelectrophysiologicalfunction