Pages that link to "Item:Q1802918"
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The following pages link to Spreading of excitation in 3-D models of the anisotropic cardiac tissues. I: Validation of the eikonal model (Q1802918):
Displaying 36 items.
- A meshfree method for simulating myocardial electrical activity (Q454755) (← links)
- Exploring anodal and cathodal make and break cardiac excitation mechanisms in a 3D anisotrop\-ic bidomain model (Q532442) (← links)
- Substructuring preconditioners for mortar discretization of a degenerate evolution problem (Q618396) (← links)
- An effective algorithm for the generation of patient-specific Purkinje networks in computational electrocardiology (Q728953) (← links)
- A coupled 3D-1D numerical monodomain solver for cardiac electrical activation in the myocardium with detailed Purkinje network (Q729457) (← links)
- Algebraic multigrid preconditioners for the bidomain reaction-diffusion system (Q731969) (← links)
- Wavefront propagation in an activation model of the anisotropic cardiac tissue: Asymptotic analysis and numerical simulations (Q810399) (← links)
- Mathematical model of signal propagation in excitable media (Q830015) (← links)
- Reaction-diffusion systems for the macroscopic bidomain model of the cardiac electric field (Q837676) (← links)
- Effects of transmural electrical heterogeneities and electrotonic interactions on the dispersion of cardiac repolarization and action potential duration: A simulation study (Q868208) (← links)
- Existence and uniqueness of the solution for the bidomain model used in cardiac electrophysiology (Q1003293) (← links)
- An eikonal-curvature equation for action potential propagation in myocardium (Q1177001) (← links)
- Spread of excitation in 3-D models of the anisotropic cardiac tissue. III: Effects of ventricular geometry and fiber structure on the potential distribution (Q1307006) (← links)
- Spread of excitation in 3-D models of the anisotropic cardiac tissue. II: Effects of fiber architecture and ventricular geometry (Q1381027) (← links)
- A cylindrical model for studying subendocardial ischaemia in the left ventricle (Q1412721) (← links)
- Modeling ventricular excitation: Axial and orthotropic anisotropy effects on wavefronts and potentials. (Q1427618) (← links)
- Computational biology of propagation in excitable media models of cardiac tissue (Q1610093) (← links)
- Efficient algebraic solution of reaction-diffusion systems for the cardiac excitation process (Q1612386) (← links)
- Space-time multilevel Monte Carlo methods and their application to cardiac electrophysiology (Q2120754) (← links)
- An inverse eikonal method for identifying ventricular activation sequences from epicardial activation maps (Q2125469) (← links)
- Graph-based homogenisation for modelling cardiac fibrosis (Q2137926) (← links)
- Differences between models of partial thickness and subendocardial ischaemia in terms of sensitivity analyses of ST-segment epicardial potential distributions (Q2173879) (← links)
- High-dimensional and higher-order multifidelity Monte Carlo estimators (Q2220612) (← links)
- A generalized finite difference method for modeling cardiac electrical activation on arbitrary, irregular computational meshes (Q2494894) (← links)
- Simulating patterns of excitation, repolarization and action potential duration with cardiac bidomain and monodomain models (Q2573507) (← links)
- Source and metric estimation in the eikonal equation using optimization on a manifold (Q2697372) (← links)
- DYNAMICAL EFFECTS OF MYOCARDIAL ISCHEMIA IN ANISOTROPIC CARDIAC MODELS IN THREE DIMENSIONS (Q3502916) (← links)
- (Q4289105) (← links)
- The cardiovascular system: Mathematical modelling, numerical algorithms and clinical applications (Q4594245) (← links)
- Computational electrocardiology: mathematical and numerical modeling (Q4638233) (← 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)
- A PARALLEL SOLVER FOR REACTION–DIFFUSION SYSTEMS IN COMPUTATIONAL ELECTROCARDIOLOGY (Q5315606) (← links)
- Finite volume method with the Soner boundary condition for computing the signed distance function on polyhedral meshes (Q6089288) (← links)
- Laplacian regularized eikonal equation with Soner boundary condition on polyhedral meshes (Q6149062) (← links)
- CarNum: parallel numerical framework for computational cardiac electromechanics (Q6173758) (← links)