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A two-phase finite element model of the diastolic left ventricle
Jacques M. Huyghe
, Dick H. van Campen
, Theo Arts
, Robert M. Heethaar
Maastricht University
Eindhoven University of Technology
University of Twente
Research output
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Engineering
Finite Element Modeling
100%
Blood Volume
100%
Nodes
50%
Anisotropic
50%
Residual Stress
50%
Axisymmetric
50%
Fiber Orientation
50%
Pressure Range
50%
Finite Deformation
50%
Opening Angle
50%
Constitutive Relation
50%
Pressure Increase
50%
Angles of Rotation
50%
Passive Filling
50%
Viscoelasticity
50%
Nursing and Health Professions
Blood Volume
100%
Base
100%
Finite Element Analysis
100%
Heart Left Ventricle Volume
50%
Heart Left Ventricle Pressure
50%
Heart Ventricle Pressure
50%
Heart Preload
50%
Porosity
50%
Viscoelasticity
50%
Medicine and Dentistry
Finite Element Analysis
100%
Left Ventricle
100%
Base
66%
Sarcomere
33%
Heart Left Ventricle Pressure
33%
Heart Ventricle Pressure
33%
Heart Preload
33%
Neuroscience
Sarcomere
100%