A multi-order smoothed particle hydrodynamics method for cardiac electromechanics with the purkinje network
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Publication:2693383
DOI10.1016/j.cma.2023.115885OpenAlexW3204963237MaRDI QIDQ2693383
Xiangyu Hu, Chi Zhang, Hao Gao
Publication date: 20 March 2023
Published in: Computer Methods in Applied Mechanics and Engineering (Search for Journal in Brave)
Full work available at URL: https://arxiv.org/abs/2110.02626
Uses Software
Cites Work
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- Multi-resolution flow simulations by smoothed particle hydrodynamics via domain decomposition
- Error estimation in smoothed particle hydrodynamics and a new scheme for second derivatives
- Computational modeling of electrochemical coupling: a novel finite element approach towards ionic models for cardiac electrophysiology
- Computational model of three-dimensional cardiac electromechanics
- 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
- Simulating free surface flows with SPH
- Modeling low Reynolds number incompressible flows using SPH
- Smoothed particle hydrodynamics: Some recent improvements and applications
- Simulations of brittle solids using smooth particle hydrodynamics
- A weakly compressible SPH method based on a low-dissipation Riemann solver
- Piecewise polynomial, positive definite and compactly supported radial functions of minimal degree
- A total Lagrangian upwind smooth particle hydrodynamics algorithm for large strain explicit solid dynamics
- Particle regeneration technique for smoothed particle hydrodynamics in simulation of compressible multiphase flows
- A multi-resolution SPH method for fluid-structure interactions
- A novel interface method for two-dimensional multiphase SPH: interface detection and surface tension formulation
- Calibration of a fully coupled electromechanical meshless computational model of the heart with experimental data
- A weakly compressible SPH method with WENO reconstruction
- A weakly compressible SPH method for violent multi-phase flows with high density ratio
- An integrative smoothed particle hydrodynamics method for modeling cardiac function
- A curvilinear isogeometric framework for the electromechanical activation of thin muscular tissues
- Fluid-structure-electrophysiology interaction (FSEI) in the left-heart: a multi-way coupled computational model
- A new Jameson-Schmidt-Turkel smooth particle hydrodynamics algorithm for large strain explicit fast dynamics
- Isogeometric approximation of cardiac electrophysiology models on surfaces: an accuracy study with application to the human left atrium
- Integrated heart -- coupling multiscale and multiphysics models for the simulation of the cardiac function
- A generalized transport-velocity formulation for smoothed particle hydrodynamics
- Mathematical cardiac electrophysiology
- A multi-phase SPH method for macroscopic and mesoscopic flows
- Constitutive modelling of passive myocardium: a structurally based framework for material characterization
- Smoothed particle hydrodynamics: theory and application to non-spherical stars
- The cardiovascular system: Mathematical modelling, numerical algorithms and clinical applications
- SPH Renormalized Hybrid Methods for Conservation Laws: Applications to Free Surface Flows
- A Bidomain Model of the Ventricular Specialized Conduction System of the Heart
- On the Construction and Comparison of Difference Schemes
- Theory and Applications of Smoothed Particle Hydrodynamics
- SPHinXsys: an open-source multi-physics and multi-resolution library based on smoothed particle hydrodynamics
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