Medical-image-based aorta modeling with zero-stress-state estimation
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Publication:1999569
DOI10.1007/s00466-019-01669-4zbMath1469.74085OpenAlexW2916202789WikidataQ113327156 ScholiaQ113327156MaRDI QIDQ1999569
Kenji Takizawa, Takafumi Sasaki, Tayfun E. Tezduyar
Publication date: 27 June 2019
Published in: Computational Mechanics (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1007/s00466-019-01669-4
patient-specific geometryisogeometric wall discretizationKirchhoff-Love shell modelT-spline basis function
Fluid-solid interactions (including aero- and hydro-elasticity, porosity, etc.) (74F10) Biomechanics (92C10) Biomechanical solid mechanics (74L15) Isogeometric methods applied to problems in solid mechanics (74S22)
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Cites Work
- Engineering analysis and design with ALE-VMS and space-time methods
- Patient-specific computational analysis of the influence of a stent on the unsteady flow in cerebral aneurysms
- Isogeometric boundary element analysis using unstructured T-splines
- Estimation of element-based zero-stress state for arterial FSI computations
- Computation of residence time in the simulation of pulsatile ventricular assist devices
- Shape optimization of pulsatile ventricular assist devices using FSI to minimize thrombotic risk
- Space-time interface-tracking with topology change (ST-TC)
- Space-time fluid mechanics computation of heart valve models
- A matrix-form GSM-CFD solver for incompressible fluids and its application to hemodynamics
- FSI analysis of the blood flow and geometrical characteristics in the thoracic aorta
- Coronary arterial dynamics computation with medical-image-based time-dependent anatomical models and element-based zero-stress state estimates
- Fluid-structure interaction analysis of bioprosthetic heart valves: significance of arterial wall deformation
- Space-time and ALE-VMS techniques for patient-specific cardiovascular fluid-structure interaction modeling
- Isogeometric fluid-structure interaction: Theory, algorithms, and computations
- A fully-coupled fluid-structure interaction simulation of cerebral aneurysms
- Multiscale sequentially-coupled arterial FSI technique
- Wall shear stress calculations in space-time finite element computation of arterial fluid-structure interactions
- Full Eulerian simulations of biconcave neo-Hookean particles in a Poiseuille flow
- Fluid-structure interaction modeling of aneurysmal conditions with high and normal blood pressures
- Isogeometric fluid-structure interaction analysis with applications to arterial blood flow
- Sequentially-coupled arterial fluid-structure interaction (SCAFSI) technique
- Patient-specific isogeometric fluid-structure interaction analysis of thoracic aortic blood flow due to implantation of the Jarvik 2000 left ventricular assist device
- Computational fluid-structure interaction: methods and application to a total cavopulmonary connection
- Streamline upwind/Petrov-Galerkin formulations for convection dominated flows with particular emphasis on the incompressible Navier-Stokes equations
- Space-time method for flow computations with slip interfaces and topology changes (ST-SI-TC)
- Turbocharger flow computations with the space-time isogeometric analysis (ST-IGA)
- Heart valve flow computation with the integrated space-time VMS, slip interface, topology change and isogeometric discretization methods
- Space-time VMS computational flow analysis with isogeometric discretization and a general-purpose NURBS mesh generation method
- Mesh refinement influence and cardiac-cycle flow periodicity in aorta flow analysis with isogeometric discretization
- Frontiers in computational fluid-structure interaction and flow simulation. Research from lead investigators under forty -- 2018
- An immersogeometric variational framework for fluid-structure interaction: application to bioprosthetic heart valves
- Patient-specific computer modeling of blood flow in cerebral arteries with aneurysm and stent
- Immersed smoothed finite element method for fluid-structure interaction simulation of aortic valves
- Computer modeling of cardiovascular fluid-structure interactions with the deforming-spatial-domain/stabilized space-time formulation
- Isogeometric hyperelastic shell analysis with out-of-plane deformation mapping
- Space-time computations in practical engineering applications: a summary of the 25-year history
- Aorta zero-stress state modeling with T-spline discretization
- Fluid-structure interaction simulation of pulsatile ventricular assist devices
- A new preconditioning technique for implicitly coupled multidomain simulations with applications to hemodynamics
- Dynamic and fluid-structure interaction simulations of bioprosthetic heart valves using parametric design with T-splines and Fung-type material models
- Space-time fluid-structure interaction modeling of patient-specific cerebral aneurysms
- New Directions in Space–Time Computational Methods
- A Geometrical-Characteristics Study in Patient-Specific FSI Analysis of Blood Flow in the Thoracic Aorta
- Patient-specific arterial fluid-structure interaction modeling of cerebral aneurysms
- SPACE–TIME FLUID–STRUCTURE INTERACTION METHODS
- ST and ALE-VMS methods for patient-specific cardiovascular fluid mechanics modeling
- Space-time finite element computation of arterial fluid-structure interactions with patient-specific data
- New directions and challenging computations in fluid dynamics modeling with stabilized and multiscale methods
- Space–time VMS method for flow computations with slip interfaces (ST-SI)
- Arterial fluid mechanics modeling with the stabilized space–time fluid–structure interaction technique
- Stabilized Finite Element Formulations for Incompressible Flow Computations
- Computation of moving boundaries and interfaces and stabilization parameters
- Computational Fluid–Structure Interaction
- CHALLENGES AND DIRECTIONS IN COMPUTATIONAL FLUID–STRUCTURE INTERACTION
- YZβ discontinuity capturing for advection‐dominated processes with application to arterial drug delivery
- Modelling of fluid–structure interactions with the space–time finite elements: Arterial fluid mechanics
- Modelling of fluid–structure interactions with the space–time finite elements: Arterial fluid mechanics (Int. J. Numer. Meth. Fluids (in press) (DOI:10.1002/fld.1443))