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PMID: 18579146 Published · ppublish English Journal Article

Numerical simulation of the dynamics of a bileaflet prosthetic heart valve using a fluid-structure interaction approach.

Journal of biomechanics ·Vol. 41 ·No. 11 ·2008-08-07 ·页码 2539-50

Nobili M, Morbiducci U, Ponzini R, Del Gaudio C, Balducci A, Grigioni M, Maria Montevecchi F, Redaelli A

Abstract

The main purpose of this study is to reproduce in silico the dynamics of a bileaflet mechanical heart valve (MHV; St Jude Hemodynamic Plus, 27mm characteristic size) by means of a fully implicit fluid-structure interaction (FSI) method, and experimentally validate the results using an ultrafast cinematographic technique. The computational model was constructed to realistically reproduce the boundary condition (72 beats per minute (bpm), cardiac output 4.5l/min) and the geometry of the experimental setup, including the valve housing and the hinge configuration. The simulation was carried out coupling a commercial computational fluid dynamics (CFD) package based on finite-volume method with user-defined code for solving the structural domain, and exploiting the parallel performance of the whole numerical setup. Outputs are leaflets excursion from opening to closure and the fluid dynamics through the valve. Results put in evidence a favorable comparison between the computed and the experimental data: the model captures the main features of the leaflet motion during the systole. The use of parallel computing drastically limited the computational costs, showing a linear scaling on 16 processors (despite the massive use of user-defined subroutines to manage the FSI process). The favorable agreement obtained between in vitro and in silico results of the leaflet displacements confirms the consistency of the numerical method used, and candidates the application of FSI models to become a major tool to optimize the MHV design and eventually provides useful information to surgeons.

MeSH 主题词
Blood Flow Velocity/physiology Computer Simulation Heart Valve Prosthesis
作者与单位
共 8 位作者,点击展开单位 / ORCID
Nobili Matteo
Department of Bioengineering, Politecnico di Milano, P.za Leonardo da Vinci, 32, 20133 Milano, Italy.
Morbiducci Umberto
Ponzini Raffaele
Del Gaudio Costantino
Balducci Antonio
Grigioni Mauro
Maria Montevecchi Franco
Redaelli Alberto
Article Info
Journal
Journal of biomechanics
Abbr.
J Biomech
ISSN
0021-9290
Published
2008-08-07
电子出版
2008-00-24
页码
2539-50
Language
English
Country/Region
United States
NLM ID
0157375
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