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PMID: 12695004 Published · ppublish English Comparative Study Evaluation Study Journal Article Validation Study

Ventricular mechanics in diastole: material parameter sensitivity.

Journal of biomechanics ·Vol. 36 ·No. 5 ·2003-05-00 ·Pages 737-48

Stevens C, Remme E, LeGrice I, Hunter P

Abstract

Models of ventricular mechanics have been developed over the last 20 years to include finite deformation theory, anisotropic and inhomogeneous material properties and an accurate representation of ventricular geometry. As computer performance and the computational efficiency of the models improve, clinical application of these heart mechanics models is becoming feasible. One such application is to estimate myocardial material properties by adjusting the constitutive parameters to match wall deformation from MRI or ultrasound measurements, together with a measurement (or estimate) of ventricular pressure. Pigs are now the principal large animal model for these studies and in this paper we present the development of a new three-dimensional finite element model of the heart based on measurements of the geometry and the fibre and sheet orientations of pig hearts. The end-diastolic deformation of the model is computed using the "pole-zero" constitutive law which we have previously used to model the mechanics of passive myocardial tissue specimens. The sensitivities of end-diastolic fibre-sheet material strains and heart shape to changes in the material parameters are computed for the parameters of the pole-zero law in order to assess the utility of the models for inverse material property determination.

MeSH Terms
Animals Computer Simulation Diastole/physiology Elasticity Finite Element Analysis Heart Septum/physiology Models, Cardiovascular Myocytes, Cardiac/physiology Reproducibility of Results Sensitivity and Specificity Stress, Mechanical Stroke Volume/physiology Swine Ventricular Function
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Stevens Carey
Faculty of Engineering, Bioengineering Institute, University of Auckland, Private Bag 92019, Auckland, New Zealand.
Remme Espen
LeGrice Ian
Hunter Peter
Article Info
Journal
Journal of biomechanics
Abbr.
J Biomech
ISSN
0021-9290
Published
2003-05-00
Pages
737-48
Language
English
Region
United States
NLM ID
0157375
Subset
IM
Analysis Services
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