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Finite element modelling of contracting skeletal muscle
C.W.J. Oomens
*
, M. Maenhout
, C.H. van Oijen
, W.A. Bemelman
, F.P.T. Baaijens
*
Corresponding author for this work
NUTRIM - Institute of Nutrition and Translational Research in Metabolism
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Keyphrases
Skeletal muscle
100%
Finite Element Modeling
100%
Eindhoven
66%
Mechanical Behavior
66%
Biological Tissue
66%
Finite Element Method
66%
Netherlands
33%
Two-state
33%
Energy Conservation
33%
Tibialis Anterior
33%
Complex Geometry
33%
Highly Nonlinear
33%
Finite Element
33%
Active Part
33%
Approximate Solution
33%
Partial Differential Equations
33%
University of Technology
33%
Nonlinear Material Behavior
33%
Biomedical Engineering
33%
Conservation Laws
33%
Measured Strain
33%
Continuum Model
33%
Mass Conservation
33%
Material Behavior
33%
Nonlinear Partial Differential Equations
33%
Momentum Equation
33%
Inhomogeneous Properties
33%
Nearly Incompressible
33%
Momentum Conservation
33%
Transport Processes
33%
Closed-form Analytical Solution
33%
Biological Transport
33%
Equation Set
33%
Huxley
33%
Tissue Conservation
33%
INIS
muscles
100%
modeling
100%
finite element method
100%
nonlinear problems
60%
strains
60%
tissues
40%
solutions
40%
equations
40%
partial differential equations
40%
rats
20%
comparative evaluations
20%
netherlands
20%
geometry
20%
energy
20%
constraints
20%
transport
20%
universities
20%
approximations
20%
surfaces
20%
engineering
20%
analytical solution
20%
conservation laws
20%
Engineering
Finite Element Analysis
100%
Fem Model
100%
Material Behavior
66%
Biological Tissue
66%
Conservation of Mass
33%
Measured Strain
33%
Closed Form
33%
Transport Process
33%
Nonlinear Partial Differential Equation
33%
Huxley Model
33%
Continuum Model
33%
Momentum Equation
33%
Good Agreement
33%
Conservation of Energy
33%
Approximate Solution
33%
Biomedical Engineering
33%
Conservation Law
33%
Partial Differential Equation
33%