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Updated: Jul 2, 2025

Standardized Technique of Aortic Valve Re-implantation for Valve-sparing Aortic Root Replacement
Published on: December 11, 2017
Striving for physiologic coaptation: An experimental and innovative approach towards designing and implanting aortic
Mehar Bijral1, Mannat Rana1, Ignacio Guillermo Berra2
1Medical School of University College London, London, United Kingdom
Abstract:
Aortic valve repair has emerged as the treatment of choice for congenital aortic valvular disease, avoiding the need for a reoperation associated with stented prosthesis overgrowth. The introduction of a leaflet implant represents a recent advancement in a field that originated early techniques, such as simple commissurotomies. In our experimental approach, we assessed two established leaflet-sizing techniques by analysing their resultant coaptation areas. Although both techniques produced competent valves, the large coaptation areas differed significantly from the native aortic valve. This observation prompted us to revisit the functional anatomy of the aortic valve, our goal being to refine leaflet design and implantation for enhanced efficacy and longevity in neo-leaflet procedures. We designed a novel aortic valvar neo-leaflet, utilizing porcine pericardium as our primary source material, and we implanted four tri-leaflet valves in four porcine hearts. All tri-leaflet valves were competent and closely resembled the coaptation area of the native aortic valve. This study serves as a pilot for further experimental aortic valve repair surgery using neo-leaflet implants.

