A fast cardiac electromechanics model coupling the Eikonal and the nonlinear mechanics equations
From MaRDI portal
Publication:5045188
DOI10.1142/S021820252250035XzbMath1503.92017OpenAlexW4281386614MaRDI QIDQ5045188
Francesco Regazzoni, Luca Dedè, Simone Stella, Christian Vergara, Alfio M. Quarteroni
Publication date: 4 November 2022
Published in: Mathematical Models and Methods in Applied Sciences (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1142/s021820252250035x
Related Items
A comprehensive and biophysically detailed computational model of the whole human heart electromechanics, A stable loosely-coupled scheme for cardiac electro-fluid-structure interaction, CarNum: parallel numerical framework for computational cardiac electromechanics, Preserving the positivity of the deformation gradient determinant in intergrid interpolation by combining RBFs and SVD: Application to cardiac electromechanics
Uses Software
Cites Work
- Unnamed Item
- Unnamed Item
- Unnamed Item
- An effective algorithm for the generation of patient-specific Purkinje networks in computational electrocardiology
- A coupled 3D-1D numerical monodomain solver for cardiac electrical activation in the myocardium with detailed Purkinje network
- Wavefront propagation in an activation model of the anisotropic cardiac tissue: Asymptotic analysis and numerical simulations
- Spreading of excitation in 3-D models of the anisotropic cardiac tissues. I: Validation of the eikonal model
- Machine learning of multiscale active force generation models for the efficient simulation of cardiac electromechanics
- Modeling cardiac muscle fibers in ventricular and atrial electrophysiology simulations
- Active force generation in cardiac muscle cells: mathematical modeling and numerical simulation of the actin-myosin interaction
- An intergrid transfer operator using radial basis functions with application to cardiac electromechanics
- Mathematical and numerical models for the cardiac electromechanical function
- The deal.II library, Version 9.1
- Anatomically accurate high resolution modeling of human whole heart electromechanics: A strongly scalable algebraic multigrid solver method for nonlinear deformation
- Simulating patterns of excitation, repolarization and action potential duration with cardiac bidomain and monodomain models
- Bioelectrical effects of mechanical feedbacks in a strongly coupled cardiac electro-mechanical model
- p4est: Scalable Algorithms for Parallel Adaptive Mesh Refinement on Forests of Octrees
- The vectorization of ITPACK 2C
- A computational strategy for prestressing patient-specific biomechanical problems under finite deformation
- Numerical solution of saddle point problems
- GMRES: A Generalized Minimal Residual Algorithm for Solving Nonsymmetric Linear Systems
- Mathematical Modelling of the Human Cardiovascular System
- Computational electrocardiology: mathematical and numerical modeling
- Implicit-Explicit Methods for Time-Dependent Partial Differential Equations
- Personalization of electro-mechanical models of the pressure-overloaded left ventricle: fitting of Windkessel-type afterload models
- Multiscale computational modelling of the heart
- Multiscale Heart Simulation with Cooperative Stochastic Cross-Bridge Dynamics and Cellular Structures
- The Mathematical Theory of Finite Element Methods