Pages that link to "Item:Q2494894"
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The following pages link to A generalized finite difference method for modeling cardiac electrical activation on arbitrary, irregular computational meshes (Q2494894):
Displaying 14 items.
- High-order spectral/\(hp\) element discretisation for reaction-diffusion problems on surfaces: application to cardiac electrophysiology (Q348514) (← links)
- A meshfree method for simulating myocardial electrical activity (Q454755) (← links)
- Modeling impulse propagation and extracellular potential distributions in anisotropic cardiac tissue using a finite volume element discretization (Q699659) (← links)
- A coupled 3D-1D numerical monodomain solver for cardiac electrical activation in the myocardium with detailed Purkinje network (Q729457) (← links)
- Towards accurate numerical method for monodomain models using a realistic heart geometry (Q839149) (← links)
- Stability analysis of the POD reduced order method for solving the bidomain model in cardiac electrophysiology (Q905830) (← links)
- A numerically efficient model for simulation of defibrillation in an active bidomain sheet of myocardium (Q1582567) (← links)
- Generalized finite difference method for solving two-dimensional non-linear obstacle problems (Q2451034) (← links)
- C <scp>haste</scp> : incorporating a novel multi-scale spatial and temporal algorithm into a large-scale open source library (Q3559832) (← links)
- Simulation of cardiac electrophysiology on next-generation high-performance computers (Q3559835) (← links)
- Sharp Interface and Voltage Conservation in the Phase Field Method: Application to Cardiac Electrophysiology (Q3617191) (← links)
- Solving anisotropic elliptic and parabolic equations by a meshless method: simulation of the electrical conductivity of a tissue (Q4903478) (← links)
- Simulation of Electrophysiological Waves with an Unstructured Finite Element Method (Q5465531) (← links)
- A positive cell vertex Godunov scheme for a Beeler–Reuter based model of cardiac electrical activity (Q6088450) (← links)