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An analytical, mathematical annuloplasty ring curvature model for planning of valve-in-ring transcatheter mitral valve replacement

OBJECTIVES: An increasing number of high-risk patients with previous mitral valve annuloplasty require transcatheter mitral valve replacement due to recurrent regurgitation. Annulus dilation with a transcatheter balloon is often performed before valve-in-ring transcatheter mitral valve replacement,...

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Autores principales: Park, Matthew H., Marin-Cuartas, Mateo, Sellke, Mark, Pandya, Pearly K., Zhu, Yuanjia, Wilkerson, Robert J., Holzhey, David M., Borger, Michael A., Woo, Y. Joseph
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10405166/
https://www.ncbi.nlm.nih.gov/pubmed/37555034
http://dx.doi.org/10.1016/j.xjtc.2023.03.022
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author Park, Matthew H.
Marin-Cuartas, Mateo
Sellke, Mark
Pandya, Pearly K.
Zhu, Yuanjia
Wilkerson, Robert J.
Holzhey, David M.
Borger, Michael A.
Woo, Y. Joseph
author_facet Park, Matthew H.
Marin-Cuartas, Mateo
Sellke, Mark
Pandya, Pearly K.
Zhu, Yuanjia
Wilkerson, Robert J.
Holzhey, David M.
Borger, Michael A.
Woo, Y. Joseph
author_sort Park, Matthew H.
collection PubMed
description OBJECTIVES: An increasing number of high-risk patients with previous mitral valve annuloplasty require transcatheter mitral valve replacement due to recurrent regurgitation. Annulus dilation with a transcatheter balloon is often performed before valve-in-ring transcatheter mitral valve replacement, which is believed to reduce misalignment and paravalvular leakage, yet little evidence exists to support this practice. Our objective was to generate intuitive annuloplasty ring analyses for improved valve-in-ring transcatheter mitral valve replacement planning. METHODS: We generated a mathematical model that calculates image-tracked differential ring curvature to build quantifications for improved planning for valve-in-ring procedures. Carpentier-Edwards Physio M24 and M30 (n = 2 each), Physio II M24 and M26 (n = 3 each), LivaNova AnnuloFlex M26 (n = 2), and Edwards Geoform M28 (n = 2) rings were tested with a 30-mm Toray Inoue balloon inflated to maximum rated pressures. RESULTS: Curvature variance reduces with larger ring sizes, indicating that larger rings are initially more circular than smaller ones. Evaluated semi-rigid and rigid rings showed little to no difference between pre- and post-dilation states. Annuloflex rings (flexible band) showed a postdilation variance reduction of 32.83% (P < .001) followed by an increase after 10 minutes of relaxation that was still reduced by 19.62% relative to the initial state (P < .001). CONCLUSIONS: We discovered that balloon dilation does not significantly deform evaluated semi-rigid or rigid rings at maximum rated balloon pressures. This may mean that dilation for these conditions before valve-in-ring transcatheter mitral valve replacement is unnecessary. Our mathematical approach creates a foundation for extended classification of this practice, providing meaningful quantification of ring geometry.
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spelling pubmed-104051662023-08-08 An analytical, mathematical annuloplasty ring curvature model for planning of valve-in-ring transcatheter mitral valve replacement Park, Matthew H. Marin-Cuartas, Mateo Sellke, Mark Pandya, Pearly K. Zhu, Yuanjia Wilkerson, Robert J. Holzhey, David M. Borger, Michael A. Woo, Y. Joseph JTCVS Tech Adult: Mitral Valve OBJECTIVES: An increasing number of high-risk patients with previous mitral valve annuloplasty require transcatheter mitral valve replacement due to recurrent regurgitation. Annulus dilation with a transcatheter balloon is often performed before valve-in-ring transcatheter mitral valve replacement, which is believed to reduce misalignment and paravalvular leakage, yet little evidence exists to support this practice. Our objective was to generate intuitive annuloplasty ring analyses for improved valve-in-ring transcatheter mitral valve replacement planning. METHODS: We generated a mathematical model that calculates image-tracked differential ring curvature to build quantifications for improved planning for valve-in-ring procedures. Carpentier-Edwards Physio M24 and M30 (n = 2 each), Physio II M24 and M26 (n = 3 each), LivaNova AnnuloFlex M26 (n = 2), and Edwards Geoform M28 (n = 2) rings were tested with a 30-mm Toray Inoue balloon inflated to maximum rated pressures. RESULTS: Curvature variance reduces with larger ring sizes, indicating that larger rings are initially more circular than smaller ones. Evaluated semi-rigid and rigid rings showed little to no difference between pre- and post-dilation states. Annuloflex rings (flexible band) showed a postdilation variance reduction of 32.83% (P < .001) followed by an increase after 10 minutes of relaxation that was still reduced by 19.62% relative to the initial state (P < .001). CONCLUSIONS: We discovered that balloon dilation does not significantly deform evaluated semi-rigid or rigid rings at maximum rated balloon pressures. This may mean that dilation for these conditions before valve-in-ring transcatheter mitral valve replacement is unnecessary. Our mathematical approach creates a foundation for extended classification of this practice, providing meaningful quantification of ring geometry. Elsevier 2023-04-18 /pmc/articles/PMC10405166/ /pubmed/37555034 http://dx.doi.org/10.1016/j.xjtc.2023.03.022 Text en © 2023 The Author(s) https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Adult: Mitral Valve
Park, Matthew H.
Marin-Cuartas, Mateo
Sellke, Mark
Pandya, Pearly K.
Zhu, Yuanjia
Wilkerson, Robert J.
Holzhey, David M.
Borger, Michael A.
Woo, Y. Joseph
An analytical, mathematical annuloplasty ring curvature model for planning of valve-in-ring transcatheter mitral valve replacement
title An analytical, mathematical annuloplasty ring curvature model for planning of valve-in-ring transcatheter mitral valve replacement
title_full An analytical, mathematical annuloplasty ring curvature model for planning of valve-in-ring transcatheter mitral valve replacement
title_fullStr An analytical, mathematical annuloplasty ring curvature model for planning of valve-in-ring transcatheter mitral valve replacement
title_full_unstemmed An analytical, mathematical annuloplasty ring curvature model for planning of valve-in-ring transcatheter mitral valve replacement
title_short An analytical, mathematical annuloplasty ring curvature model for planning of valve-in-ring transcatheter mitral valve replacement
title_sort analytical, mathematical annuloplasty ring curvature model for planning of valve-in-ring transcatheter mitral valve replacement
topic Adult: Mitral Valve
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10405166/
https://www.ncbi.nlm.nih.gov/pubmed/37555034
http://dx.doi.org/10.1016/j.xjtc.2023.03.022
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