Multiscale Boundary Conditions for Drug Release from Cardiovascular Stents
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Publication:3183335
DOI10.1137/07070214XzbMath1183.93040MaRDI QIDQ3183335
Christian Vergara, Paolo Zunino
Publication date: 19 October 2009
Published in: Multiscale Modeling & Simulation (Search for Journal in Brave)
Control/observation systems governed by partial differential equations (93C20) Medical applications (general) (92C50) Finite element, Rayleigh-Ritz and Galerkin methods for initial value and initial-boundary value problems involving PDEs (65M60) Multiple scale methods for ordinary differential equations (34E13)
Related Items (13)
Application of underdamped Langevin dynamics simulations for the study of diffusion from a drug-eluting stent ⋮ Geometric multiscale modeling of the cardiovascular system, between theory and practice ⋮ Multiscale Boundary Conditions for Non-Fickian Diffusion Applied to Drug-Eluting Stents ⋮ Multiscale Boundary Conditions for Drug Dissolution Applied to Coronary Stents ⋮ Analytical and numerical study of a coupled cardiovascular drug delivery model ⋮ High resolution methods for scalar transport problems in compliant systems of arteries ⋮ A decade of modelling drug release from arterial stents ⋮ Finite-element formulation for advection-reaction equations with change of variable and discontinuity capturing ⋮ A multi-layer porous wall model for coronary drug-eluting stents ⋮ 3D mathematical model for blood flow and non-Fickian mass transport by a coronary drug-eluting stent ⋮ MODELING POLYMERIC CONTROLLED DRUG RELEASE AND TRANSPORT PHENOMENA IN THE ARTERIAL TISSUE ⋮ Mass transfer by advection and diffusion from a drug-eluting stent ⋮ Numerical simulation of drug eluting coronary stents: mechanics, fluid dynamics and drug release
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