A computational method to assess the in vivo stresses and unloaded configuration of patient-specific blood vessels

Author:

Bols J.,Degroote J.,Trachet B.,Verhegghe B.,Segers P.,Vierendeels J.

Funder

Special Research Fund of the Ghent University

Research Foundation—Flanders (FWO)

post-doctoral fellowship of the Research Foundation—Flanders (FWO)

Flemish government agency for Innovation by Science and Technology (IWT)

Publisher

Elsevier BV

Subject

Applied Mathematics,Computational Mathematics

Reference19 articles.

1. Inverse modelling of an aneurysm’s stiffness using surrogate-based optimization and fluid–structure interaction simulations;Degroote;Structural and Multidisciplinary Optimization,2012

2. Inverse elastostatic stress analysis in pre-deformed biological structures: demonstration using abdominal aortic aneurysms;Lu;Journal of Biomechanics,2007

3. Patient-specific initial wall stress in abdominal aortic aneurysms with a backward incremental method;de Putter;Journal of Biomechanics,2007

4. Prestressing in finite deformation abdominal aortic aneurysm simulation;Gee;Journal of Biomechanics,2009

5. Initial stress and nonlinear material behavior in patient-specific AAA wall stress analysis;Speelman;Journal of Biomechanics,2009

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