A fully implicit finite element method for bidomain models of cardiac electromechanics.
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The Generalized Hill Model: A Kinematic Approach Towards Active Muscle ContractionThe Living Heart Project: A robust and integrative simulator for human heart functionComputational modeling of chemo-electro-mechanical coupling: a novel implicit monolithic finite element approach.Generating Purkinje networks in the human heart.Modeling electrical power absorption and thermally-induced biological tissue damage.The importance of mechano-electrical feedback and inertia in cardiac electromechanics.An orthotropic viscoelastic material model for passive myocardium: theory and algorithmic treatment.A physically motivated constitutive model for 3D numerical simulation of skeletal muscles.A Numerical Study of Scalable Cardiac Electro-Mechanical Solvers on HPC Architectures.
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P2860
A fully implicit finite element method for bidomain models of cardiac electromechanics.
description
2012 nî lūn-bûn
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2012年の論文
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name
A fully implicit finite element method for bidomain models of cardiac electromechanics.
@ast
A fully implicit finite element method for bidomain models of cardiac electromechanics.
@en
type
label
A fully implicit finite element method for bidomain models of cardiac electromechanics.
@ast
A fully implicit finite element method for bidomain models of cardiac electromechanics.
@en
prefLabel
A fully implicit finite element method for bidomain models of cardiac electromechanics.
@ast
A fully implicit finite element method for bidomain models of cardiac electromechanics.
@en
P2860
P1476
A fully implicit finite element method for bidomain models of cardiac electromechanics
@en
P2093
Michael Kaliske
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P304
P356
10.1016/J.CMA.2012.07.004
P577
2012-07-24T00:00:00Z