Flow field evolution in a laboratory model of the left ventricle
Author:
Publisher
Springer Science and Business Media LLC
Subject
Electrical and Electronic Engineering,Condensed Matter Physics
Link
http://link.springer.com/content/pdf/10.1007/s12650-013-0179-9.pdf
Reference15 articles.
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3. Espa S, Badas MG, Fortini S, Querzoli G, Cenedese A (2012) A Lagrangian investigation of the flow inside the left ventricle. Eur J Mech B Fluids 35:9–19
4. Garcia MJ, Vandervoort P, Stewart WJ, Lytle BW, Cosgrove DM, Thomas JD, Griffin BP (1996) Mechanisms of hemolysis with mitral prosthetic regurgitation study using transesophageal echocardiography and fluid dynamic simulation. J Am Coll Cardiol 27:399
5. Grigioni M, Daniele C, D’Avenio G, Barbaro V (1999) A discussion on the threshold limit for hemolysis related to Reynolds shear stress”. J Biomech 32:1107
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1. Fluid dynamics and blood damage in the dilated ascending aorta after mechanical prosthetic valve implantation: an in vitro study;Experiments in Fluids;2022-08-29
2. Flow characteristics in a model of a left ventricle in the presence of a dysfunctional mitral mechanical heart valve;Journal of Visualization;2019-11-16
3. The numerical analysis of non-Newtonian blood flow in human patient-specific left ventricle;Computer Methods and Programs in Biomedicine;2016-04
4. 3D Finite Time Lyapunov Exponents in a left ventricle laboratory model;EPJ Web of Conferences;2015
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