Mechanism of incomplete mitral leaflet coaptation: Interaction of chordal restraint and changes in mitral leaflet coaptation geometry insight from in vitro validation of the premise of force equilibrium

Clinically observed incomplete mitral leaflet coaptation was reproduced in vitro by altering the balance of the chordal tethering and chordal coapting force components. Mitral leaflet coaptation geometry was distorted by changes of the spatial relations between the papillary muscles and the mitral v...

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Veröffentlicht in:Journal of biomechanical engineering 2002-10, Vol.124 (5), p.596-608
Hauptverfasser: NIELSER, Sten Lyager, NYGAARD, Hans, MANDRUP, Lars, FONTAINE, Arnold A, HASENKAM, J. Michael, SHENGQUI HE, YOGANATHAN, Ajit P
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Sprache:eng
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Zusammenfassung:Clinically observed incomplete mitral leaflet coaptation was reproduced in vitro by altering the balance of the chordal tethering and chordal coapting force components. Mitral leaflet coaptation geometry was distorted by changes of the spatial relations between the papillary muscles and the mitral valve as well as hemodynamics. Mitral leaflet malalignment was accentuated by a redistribution of the chordal tethering and coapting force components. For the overall assessment of systolic mitral leaflet configuration in functional mitral regurgitation it is important to consider the interaction between chordal restraint and an altered mitral leaflet coaptation geometry.
ISSN:0148-0731
1528-8951
DOI:10.1115/1.1500741