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Computational Study on the Effects of Valve Orientation on the Hemodynamics and Leaflet Dynamics of Bioprosthetic Pulmonary Valves.

Authors :
Ko KB
Seo JH
Doshi A
Sen DG
Mittal R
Source :
Journal of biomechanical engineering [J Biomech Eng] 2024 Dec 01; Vol. 146 (12).
Publication Year :
2024

Abstract

Pulmonary valves do not display a fibrous annulus as do other valves in the heart; thus, pulmonary valves can be implanted at multiple orientations and locations within the right ventricular outflow tract (RVOT). This gives surgeons more freedom when implanting the valve but it also results in uncertainties regarding placement, particularly with respect to valve orientation. We investigate the pulmonary artery hemodynamics and valve leaflet dynamics of pulmonary valve replacements (PVRs) with various orientations via fluid-structure interaction (FSI) models. A canonical model of the branching pulmonary artery is coupled with a dynamic model of a pulmonary valve, and from this we quantify the effect of valve implant orientation on the postvalvular hemodynamics and leaflet dynamics. Metrics such as turbulent kinetic energy (TKE), branch pulmonary artery flow distributions, projected valve opening area (PVOA), and pressure differentials across the valve leaflets are analyzed. Our results indicate that off-axis orientation results in higher pressure forces and flow and energy asymmetry, which potentially have implications for long-term durability of implanted bioprosthetic valves.<br /> (Copyright © 2024 by ASME.)

Details

Language :
English
ISSN :
1528-8951
Volume :
146
Issue :
12
Database :
MEDLINE
Journal :
Journal of biomechanical engineering
Publication Type :
Academic Journal
Accession number :
39109664
Full Text :
https://doi.org/10.1115/1.4066178