Three-Dimensional Drug Release in the Stent-Polymer-Wall-Lumen of a Blood Vessel
DOI10.1137/19M1250923;zbMath1422.92069MaRDI QIDQ5197541
Michel C. Delfour, Steven Lamontagne, André Garon
Publication date: 18 September 2019
Published in: SIAM Journal on Applied Mathematics (Search for Journal in Brave)
Full work available at URL: https://epubs.siam.org/doi/pdf/10.1137/19M1250923
biodegradable polymerspaclitaxelstentingdrug release kineticstime-space partial differential equation
PDEs in connection with biology, chemistry and other natural sciences (35Q92) Kinetics in biochemical problems (pharmacokinetics, enzyme kinetics, etc.) (92C45) Medical applications (general) (92C50)
Related Items
Cites Work
- Unnamed Item
- Drug release kinetics from biodegradable polymers via partial differential equations models
- Representation and control of infinite dimensional systems
- Biology and mechanics of blood flows. Part II: Mechanics and medical aspects
- Shapes and Geometries
- Quadratic Models to Fit Experimental Data of Paclitaxel Release Kinetics from Biodegradable Polymers
- Optimal Distribution of Larvicide in Running Waters
- Methods of Blood Flow Modelling
- Three-Dimensional Quadratic Model of Paclitaxel Release from Biodegradable Polymer Films
- Three-Dimensional Drug Release in the Stent-Polymer-Wall-Lumen of a Blood Vessel
- Modeling and Design of Coated Stents to Optimize the Effect of the Dose
This page was built for publication: Three-Dimensional Drug Release in the Stent-Polymer-Wall-Lumen of a Blood Vessel