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Biodegradable magnesium coronary stents: material, design and fabrication.

, , , , , , , , and . Int. J. Comput. Integr. Manuf., 27 (10): 936-945 (2014)

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Modeling stent deployment in realistic arterial segment geometries: The effect of the plaque composition., , , , , , , , , and . BIBE, page 1-4. IEEE Computer Society, (2013)Coronary stenting: From optical coherence tomography to fluid dynamic simulations., , , , and . BIBE, page 1-4. IEEE Computer Society, (2013)Validation evidence with experimental and clinical data to establish credibility of TAVI patient-specific simulations., , , , , , , , , and 2 other author(s). Comput. Biol. Medicine, (2024)A fully coupled computational fluid dynamics - agent-based model of atherosclerotic plaque development: Multiscale modeling framework and parameter sensitivity analysis., , , , , and . Comput. Biol. Medicine, (2020)Patient-specific simulations of transcatheter aortic valve stent implantation., , , , , , , , and . Medical Biol. Eng. Comput., 50 (2): 183-192 (2012)A method for coronary bifurcation centerline reconstruction from angiographic images based on focalization optimization., , , , , , , , , and . EMBC, page 4165-4168. IEEE, (2016)A Multiscale Model of Atherosclerotic Plaque Development: Toward a Coupling Between an Agent-Based Model and CFD Simulations., , , , , and . ICCS (4), volume 11539 of Lecture Notes in Computer Science, page 410-423. Springer, (2019)Biodegradable magnesium coronary stents: material, design and fabrication., , , , , , , , and . Int. J. Comput. Integr. Manuf., 27 (10): 936-945 (2014)A computational optimization study of a self-expandable transcatheter aortic valve., , , , , , and . Comput. Biol. Medicine, (2021)Patient-specific multi-scale design optimization of transcatheter aortic valve stents., , , , , , and . Comput. Methods Programs Biomed., (2022)