Uncertainty Quantification of a Multiscale Model for In-Stent Restenosis
Author:
Funder
Netherlands eScience Center
Horizon 2020
Publisher
Springer Science and Business Media LLC
Subject
Cardiology and Cardiovascular Medicine,Biomedical Engineering
Link
http://link.springer.com/article/10.1007/s13239-018-00372-4/fulltext.html
Reference34 articles.
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2. Bal, H., D. Epema, C. de Laat, R. van Nieuwpoort, J. Romein, F. Seinstra, C. Snoek, and H. Wijshoff. A medium-scale distributed system for computer science research: infrastructure for the long term. Computer 49(5):54–63, 2016.
3. Boyle, C. J., A. B. Lennon, and P. J. Prendergast. Application of a mechanobiological simulation technique to stents used clinically. J. Biomech. 46(5):918–924, 2013.
4. Caiazzo, A., D. Evans, J.-L. Falcone, J. Hegewald, E. Lorenz, B. Stahl, D. Wang, J. Bernsdorf, B. Chopard, J. Gunn, R. Hose, M. Krafczyk, P. Lawford, R. Smallwood, D. Walker, and A. G. Hoekstra. Towards a complex automata multiscale model of in-stent restenosis. In: Computational Science—ICCS 2009, edited by G. Allen, J. Nabrzyski, E. Seidel, G. D. van Albada, J. Dongarra, and P. M. A. Sloot. Springer, Berlin, 2009, pp. 705–714.
5. Caiazzo, A., D. Evans, J.-L. Falcone, J. Hegewald, E. Lorenz, B. Stahl, D. Wang, J. Bernsdorf, B. Chopard, J. Gunn, R. Hose, M. Krafczyk, P. Lawford, R. Smallwood, D. Walker, and A. Hoekstra. A complex automata approach for in-stent restenosis: two-dimensional multiscale modelling and simulations. J. Comput. Sci. 2(1):9–17, 2011.
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