Modelling the influence of endothelial heterogeneity on the progression of arterial disease: application to abdominal aortic aneurysm evolution

Author:

Aparício P.1,Mandaltsi A.2,Boamah J.2,Chen H.2,Selimovic A.2,Bratby M.3,Uberoi R.3,Ventikos Y.2,Watton P.N.4

Affiliation:

1. Systems Biology Doctoral Training Centre; University of Oxford; Oxford UK

2. Department of Engineering Science; University of Oxford; Oxford UK

3. John Radcliffe Hospital; Oxford UK

4. Department of Computer Science & INSIGNEO Institute of in silico Medicine; University of Sheffield; Sheffield UK

Publisher

Wiley

Subject

Applied Mathematics,Computational Theory and Mathematics,Molecular Biology,Modelling and Simulation,Biomedical Engineering,Software

Reference81 articles.

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2. A 2-D model of flow-induced alterations in the geometry, structure and properties of carotid arteries;Gleason;Journal of Biomechanical Engineering,2004

3. A mixture model of arterial growth and remodeling in hypertension: altered muscle tone and tissue turnover;Gleason;Journal of Vascular Research,2004

4. Effects of a sustained extension on arterial growth and remodeling: a theoretical study;Gleason;Journal of Biomechanical Engineering,2007

5. A computational framework for fluid-solid-growth modeling in cardiovascular simulations;Figueroa;Computational Methods in Applied Mechanics and Engineering,2009

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