Pages that link to "Item:Q2305110"
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The following pages link to A monolithic algorithm for the simulation of cardiac electromechanics in the human left ventricle (Q2305110):
Displaying 26 items.
- A fully implicit finite element method for bidomain models of cardiac electromechanics (Q465807) (← links)
- A coupled 3D-1D numerical monodomain solver for cardiac electrical activation in the myocardium with detailed Purkinje network (Q729457) (← links)
- Isogeometric analysis of the electrophysiology in the human heart: numerical simulation of the bidomain equations on the atria (Q1986437) (← links)
- Machine learning of multiscale active force generation models for the efficient simulation of cardiac electromechanics (Q2020283) (← links)
- An oscillation-free fully staggered algorithm for velocity-dependent active models of cardiac mechanics (Q2020821) (← links)
- Active force generation in cardiac muscle cells: mathematical modeling and numerical simulation of the actin-myosin interaction (Q2022471) (← links)
- A comparative study of fully implicit staggered and monolithic solution methods. I: Coupled bidomain equations of cardiac electrophysiology (Q2075955) (← links)
- Effect of fibre orientation and bulk modulus on the electromechanical modelling of human ventricles (Q2128543) (← links)
- A cardiac electromechanical model coupled with a lumped-parameter model for closed-loop blood circulation (Q2135834) (← links)
- Calibration of a fully coupled electromechanical meshless computational model of the heart with experimental data (Q2180420) (← links)
- An intergrid transfer operator using radial basis functions with application to cardiac electromechanics (Q2205162) (← links)
- A curvilinear isogeometric framework for the electromechanical activation of thin muscular tissues (Q2237275) (← links)
- Mathematical and numerical models for the cardiac electromechanical function (Q2240519) (← links)
- Anatomically accurate high resolution modeling of human whole heart electromechanics: A strongly scalable algebraic multigrid solver method for nonlinear deformation (Q2374953) (← 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)
- ACCURATE COMPUTATION OF ELECTROGRAMS IN THE LEFT VENTRICULAR WALL (Q4798804) (← links)
- A fast cardiac electromechanics model coupling the Eikonal and the nonlinear mechanics equations (Q5045188) (← links)
- Modeling the cardiac electromechanical function: A mathematical journey (Q5081547) (← links)
- A Multiscale Poromechanics Model Integrating Myocardial Perfusion and the Epicardial Coronary Vessels (Q5094397) (← links)
- Scalable Cardiac Electro-Mechanical Solvers and Reentry Dynamics (Q5114523) (← links)
- Cardiac Electromechanics: The Effect of Contraction Model on the Mathematical Problem and Accuracy of the Numerical Scheme (Q5747583) (← links)
- Partitioned and Monolithic Algorithms for the Numerical Solution of Cardiac Fluid-Structure Interaction (Q5878919) (← links)
- A comprehensive and biophysically detailed computational model of the whole human heart electromechanics (Q6094646) (← links)
- A stable loosely-coupled scheme for cardiac electro-fluid-structure interaction (Q6173364) (← links)
- A comparative study of fully implicit staggered and monolithic solution methods. II: Coupled excitation-contraction equations of cardiac electromechanics (Q6489228) (← links)