Multiscale Boundary Conditions for Non-Fickian Diffusion Applied to Drug-Eluting Stents
DOI10.1137/16M1107577zbMath1368.92041OpenAlexW2742594968MaRDI QIDQ5348483
Cassio M. Oishi, Adélia Sequeira, Elías Gudiño
Publication date: 18 August 2017
Published in: SIAM Journal on Applied Mathematics (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.1137/16m1107577
Flows in porous media; filtration; seepage (76S05) PDEs in connection with biology, chemistry and other natural sciences (35Q92) Finite element, Rayleigh-Ritz and Galerkin methods for initial value and initial-boundary value problems involving PDEs (65M60) Physiological flows (76Z05) Physiological flow (92C35)
Cites Work
- On the role of specific drug binding in modelling arterial eluting stents
- Mathematical modeling of coupled drug and drug-encapsulated nanoparticle transport in patient-specific coronary artery walls
- A decade of modelling drug release from arterial stents
- Cardiovascular mathematics. Modeling and simulation of the circulatory system
- Unsteady, three-dimensional fluid mechanic analysis of blood flow in plaque-narrowed and plaque-free arteries
- Numerical simulation of drug eluting coronary stents: mechanics, fluid dynamics and drug release
- Streamline upwind/Petrov-Galerkin formulations for convection dominated flows with particular emphasis on the incompressible Navier-Stokes equations
- A new look to non-Fickian diffusion
- 3D mathematical model for blood flow and non-Fickian mass transport by a coronary drug-eluting stent
- Robust numerical approximation of coupled Stokes' and Darcy's flows applied to vascular hemodynamics and biochemical transport
- Multiscale Boundary Conditions for Drug Release from Cardiovascular Stents
- A 3D Model for Mechanistic Control of Drug Release
- Model Reduction Strategies Enable Computational Analysis of Controlled Drug Release from Cardiovascular Stents
- A Hybrid Numerical-Analytical Method for Modeling the Viscoelastic Properties of Polymer Nanocomposites
- Sharp Fronts Due to Diffusion and Viscoelastic Relaxation in Polymers
This page was built for publication: Multiscale Boundary Conditions for Non-Fickian Diffusion Applied to Drug-Eluting Stents