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

, , , , , and . J. Computational Applied Mathematics, (2013)

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The Quasi-Newton Least Squares Method: A New and Fast Secant Method Analyzed for Linear Systems., , , and . SIAM J. Numerical Analysis, 47 (3): 2347-2368 (2009)Bubble simulations with an interface tracking technique based on a partitioned fluid-structure interaction algorithm., , , and . J. Computational Applied Mathematics, 234 (7): 2303-2310 (2010)Computational aspects of simulating wind induced ovalling vibrations in silo groups., , , , and . J. Computational Applied Mathematics, (2013)Accuracy of Carotid Strain Estimates From Ultrasonic Wall Tracking: A Study Based on Multiphysics Simulations and In Vivo Data., , , , , and . IEEE Trans. Med. Imaging, 31 (1): 131-139 (2012)Extension and comparison of techniques to enforce boundary conditions in Finite Volume POD-Galerkin reduced order models for fluid dynamic problems., , , , and . CoRR, (2019)On the use of gradients in kriging surrogate models., , , , and . Winter Simulation Conference, page 2692-2701. IEEE/ACM, (2014)Mixed impact of torsion on LV hemodynamics: A CFD study based on the Chimera technique., , , , , and . Comp. in Bio. and Med., (2019)A computational method to assess the in vivo stresses and unloaded configuration of patient-specific blood vessels., , , , , and . J. Computational Applied Mathematics, (2013)On the similarity between Dirichlet-Neumann with interface artificial compressibility and Robin-Neumann schemes for the solution of fluid-structure interaction problems.. J. Comput. Physics, 230 (17): 6399-6403 (2011)Performance study of gradient-enhanced Kriging., , , , and . Eng. Comput. (Lond.), 32 (1): 15-34 (2016)