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Towards a Complex Automata multiscale model of in-stent restenosis

Authors :
Alfonso Caiazzo
Evans, David
Falcone, Jean-Lue
Hegewald, Jan
Lorenz, Eric
Stahl, Bernd
Wang, Dinan
Bernsdorf, Joerg
Chopard, Bastien
Gunn, Julian
Hose, Rod
Krafczyk, Manfred
Lawford, Patricia
Smallwood, Rod
Walker, Dawn
Hoekstra, Alfons G.
Allen, G.
Nabrzyski, J.
Seidel, E.
Dongarra, J.
Vanalbada, Gd
Sloot, Pma
Computational Science Lab (IVI, FNWI)
Source :
Computational Science – ICCS 2009: 9th International Conference Baton Rouge, LA, USA, May 25-27, 2009 : proceedings, I, 705-714, Lecture Notes in Computer Science ISBN: 9783642019692, ICCS (1), ResearcherID
Publication Year :
2009
Publisher :
Springer, 2009.

Abstract

In-stent restenosis, the maladaptive response of a blood vessel to injury caused by the deployment of a stent, is a multiscale problem involving a large number of processes. We describe a Complex Automata Model for in-stent restenosis, coupling a bulk flow, drug diffusion, and smooth muscle cell model, all operating on different time scales. Details of the single scale models and of the coupling interfaces are described, together with first simulation results, obtained with a dedicated software environment for Complex Automata simulations. The results show that the model can reproduce growth trends observed in experimental studies.

Details

Language :
English
ISBN :
978-3-642-01969-2
ISBNs :
9783642019692
Database :
OpenAIRE
Journal :
Computational Science – ICCS 2009: 9th International Conference Baton Rouge, LA, USA, May 25-27, 2009 : proceedings, I, 705-714, Lecture Notes in Computer Science ISBN: 9783642019692, ICCS (1), ResearcherID
Accession number :
edsair.doi.dedup.....eb29ac2c8febff2c19a6b3b94ea1475e