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four-dimensional flow magnetic resonance analysis of the effect of pericardial valve design on aortic flow. | LitMetric

AI Article Synopsis

  • The study examined how different designs of bioprosthetic pericardial valves affect fluid flow patterns using advanced 4D Flow magnetic resonance imaging.
  • Three commercially available valves (Trifecta, Carpentier-Edwards PERIMOUNT Magna, Crown PRT®) were tested under steady flow conditions, focusing on the smallest comparable sizes.
  • Results showed that the Trifecta valve had the best flow characteristics, including the lowest peak velocity and optimal effective orifice area (EOA), whereas the Magna and Crown valves displayed less efficient flow profiles.

Article Abstract

We investigated the effect of the design of bioprosthetic pericardial valves on the downstream fluid flow pattern through four-dimensional flow magnetic resonance imaging (4D Flow). A dedicated test bench, including a paradigmatic aortic root phantom, was used to compare, under steady flow conditions, three commercially used pericardial bioprostheses (Trifecta, Carpentier-Edwards PERIMOUNT Magna, Crown PRT®), selecting the two smallest and comparable valve sizes. In-house 4D Flow post-processing provided the downstream flow pattern of velocity, the velocity profile at vena contracta, its effective orifice area (EOA) and the corresponding hydraulic diameter (D). Trifecta reported the lowest peak of velocity for both the tested sizes, with vena contracta position being the most proximal to the free margin of leaflets. Conversely, in both Crown and Magna, jet flow continued to increase its downstream velocity, resulting in a farther position of vena contracta. EOA shape was trilobal for Magna, triangular for Crown and circular for Trifecta, the last one maximising EOA. The percentage of nominal luminal area effectively exploited by the flow was largely above 80% in Trifecta, below 75% in Crown and below 70% in Magna. Hence, the design of pericardial bioprostheses directly impacts on the downstream flow field pattern and its fluid dynamic performance.

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Source
http://dx.doi.org/10.1080/03091902.2022.2026505DOI Listing

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