Pages that link to "Item:Q5137408"
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The following pages link to Influence of myocardial fiber/sheet orientations on left ventricular mechanical contraction (Q5137408):
Displaying 25 items.
- Joint influence of transmural heterogeneities and wall deformation on cardiac bioelectrical activity: a simulation study (Q328866) (← links)
- Stability of active muscle tissue (Q525440) (← links)
- The generalized Hill model: a kinematic approach towards active muscle contraction (Q904802) (← links)
- An edge-based/node-based selective smoothed finite element method using tetrahedrons for cardiovascular tissues (Q1654769) (← links)
- Computational modeling of coupled cardiac electromechanics incorporating cardiac dysfunctions (Q1669471) (← links)
- Thermodynamically consistent orthotropic activation model capturing ventricular systolic wall thickening in cardiac electromechanics (Q1669482) (← links)
- The influence of left ventricle wall thickness and scar fibrosis on pseudo-ECG (Q1980816) (← links)
- A five-field finite element formulation for nearly inextensible and nearly incompressible finite hyperelasticity (Q2007302) (← links)
- Modeling cardiac muscle fibers in ventricular and atrial electrophysiology simulations (Q2020750) (← links)
- Cardiac electro-mechanical activity in a deforming human cardiac tissue: modeling, existence-uniqueness, finite element computation and application to multiple ischemic disease (Q2113516) (← links)
- Effect of fibre orientation and bulk modulus on the electromechanical modelling of human ventricles (Q2128543) (← links)
- Effects of dispersed fibres in myocardial mechanics. I: passive response (Q2130474) (← links)
- Sensitivity analysis of a strongly-coupled human-based electromechanical cardiac model: effect of mechanical parameters on physiologically relevant biomarkers (Q2176945) (← links)
- An intergrid transfer operator using radial basis functions with application to cardiac electromechanics (Q2205162) (← links)
- A hybrid microstructural-continuum multiscale approach for modeling hyperelastic fibrous soft tissue (Q2231118) (← links)
- A computationally efficient physiologically comprehensive 3D-0D closed-loop model of the heart and circulation (Q2246288) (← links)
- A matrix DEIM technique for model reduction of nonlinear parametrized problems in cardiac mechanics (Q2309983) (← links)
- Integrated heart -- coupling multiscale and multiphysics models for the simulation of the cardiac function (Q2310372) (← links)
- Anatomically accurate high resolution modeling of human whole heart electromechanics: A strongly scalable algebraic multigrid solver method for nonlinear deformation (Q2374953) (← links)
- Newton-Krylov-BDDC solvers for nonlinear cardiac mechanics (Q2631461) (← links)
- 3D-0D closed-loop model for the simulation of cardiac biventricular electromechanics (Q2670385) (← links)
- Segregated Algorithms for the Numerical Simulation of Cardiac Electromechanics in the Left Human Ventricle (Q3300479) (← links)
- Scalable Cardiac Electro-Mechanical Solvers and Reentry Dynamics (Q5114523) (← links)
- A stable loosely-coupled scheme for cardiac electro-fluid-structure interaction (Q6173364) (← links)
- An isogeometric analysis framework for ventricular cardiac mechanics (Q6540736) (← links)