In vivo degradation of silicone rubber poppets in prosthetic heart valves
- 30 April 1976
- journal article
- research article
- Published by Wiley in Journal of Biomedical Materials Research
- Vol. 10 (3) , 471-481
- https://doi.org/10.1002/jbm.820100314
Abstract
Dynamic shear modulus G′ was measured throughout the volume of three nonvariant silicone rubber poppets which were recovered from aortic prosthetic heart valves that had been implanted for 4 days, 52 days, and 8 years. Similar measurements were obtained for two unused silicone rubber poppets. Although the recovered poppets exhibited no obvious physical evidence of damage, the silicone rubber had undergone in vivo degradation throughout the poppet volume as indicated by decreases in modulus. The measurements also indicate that the poppet surface degrades at a rate faster than the core. Further, comparison with data reported in the literature suggests that the surfaces of variant poppets degrade at a rate faster than the surfaces of nonvariant poppets.This publication has 10 references indexed in Scilit:
- Prediction of Lipid Uptake by Prosthetic Heart Valve Poppets from Solubility ParametersBiomaterials, Medical Devices, and Artificial Organs, 1973
- Lipid absorption by silicone heart valve poppets—in‐vivo and in‐vitro resultsJournal of Biomedical Materials Research, 1972
- Poppet Wear in Cardiac Valvular ProsthesesVascular Surgery, 1971
- Lethal ball variance in the Starr-Edwards prosthetic mitral valveArchives of internal medicine (1960), 1970
- Aortic Ball Variance: Diagnosis and TreatmentAnnals of Internal Medicine, 1970
- Fatal degeneration of the silicone rubber ball of the Starr-Edwards prosthetic aortic valveThe American Journal of Cardiology, 1968
- Death Due to Swelling of Ball Component of Aortic Ball-Valve ProsthesisNew England Journal of Medicine, 1967
- Elastomers for Use in Heart ValvesRubber Chemistry and Technology, 1966
- Death Due to Migration of the Ball From an Aortic-Valve ProsthesisPublished by American Medical Association (AMA) ,1965