Failure and Hydrodynamic Function Testing of Explanted Pericardial and Porcine Bioprosthetic Valves

Author:

Fisher J1,Spyt T J2,Wheatley D J2

Affiliation:

1. Department of Mechanical Engineering, University of Leeds

2. Department of Cardiac Surgery, University of Glasgow

Abstract

The long-term durability and function of cardiac bioprostheses can be affected by both calcification and mechanical failure of the tissue. The mechanisms of failure and hydrodynamic function of 66 explanted bioprostheses have been studied. The majority of porcine valves were heavily calcified with leaflet tears adjacent to the calcification at the commissures. These tears caused prolapsed leaflets and regurgitation of between 30 and 70 per cent. Only three porcine valves had tissue failure in the absence of calcification. The majority of pericardial valves failed due to leaflet tears at the edge of the frame in the absence of macroscopic calcification. These tears also produced prolapsed leaflets and large regurgitation in hydrodynamic tests. Three pericardial valves were heavily calcified and stenotic without leaflet tears. Leaflet dynamics in the pericardial valves were affected by host tissue ingrowth which produced increased pressure drops across the valves, an asymmetrical open position and leaflet flutter. In the absence of calcification and leaflet tears, there was little change in the function of explanted porcine valves.

Publisher

SAGE Publications

Subject

Mechanical Engineering,General Medicine

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1. Bioprosthetic Pulmonary Valve Dysfunction in Congenital Heart Disease;The Annals of Thoracic Surgery;2023-03

2. The influence of leaflet skin friction and stiffness on the performance of bioprosthetic aortic valves;Australasian Physical & Engineering Sciences in Medicine;2013-11-22

3. Biomedical Applications;Modern Tribology Handbook, Two Volume Set;2000-12-28

4. In Vitro Determination of the Curvatures and Bending Strains Acting on the Leaflets of Polyurethane Trileaflet Heart Valves During Leaflet Motion;Proceedings of the Institution of Mechanical Engineers, Part H: Journal of Engineering in Medicine;1995-12

5. Determination of the Curvatures and Bending Strains in Open Trileaflet Heart Valves;Proceedings of the Institution of Mechanical Engineers, Part H: Journal of Engineering in Medicine;1995-06

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