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September 24, 2002Circulation52 citations

Mechanistic Insights Into Posterior Mitral Leaflet Inter-Scallop Malcoaptation During Acute Ischemic Mitral Regurgitation

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DLDavid T. LaiFTFrederick A. TibayanTMTruls Myrmel

Key Result

Acute left ventricular ischemia induced by circumflex occlusion caused malcoaptation of posterior leaflet scallops driven by annular dilatation, which drew the individual scallops apart.

Structured PICO

P
Population
13 sheep undergoing open-chest surgery to evaluate 3-D dynamics of posterior mitral leaflet scallops before and during acute ischemic mitral regurgitation.
I
Intervention
Acute ischemic mitral regurgitation produced by occlusion of the left circumflex coronary artery
C
Comparator
Baseline (before occlusion)
O
Outcome
3-D marker coordinates of the 3 individual scallops within the posterior mitral leaflet measured using high-speed biplane videofluoroscopysurrogate

Annular dilatation is the primary geometric mechanism underlying scallop malcoaptation in acute ischemic mitral regurgitation, supporting the use of annular reduction and suture closure of prominent subcommissures during repair.

Main Result

p-value: p=<0.001

Abstract

BACKGROUND: Three-dimensional dynamics of the 3 individual scallops within the posterior mitral leaflet during acute ischemic mitral regurgitations have not been previously measured. METHODS: Radiopaque markers were sutured to the mitral annulus, papillary muscle tips, and leaflet edges in 13 sheep. Immediately postoperatively, under open-chest conditions, 3-D marker coordinates were obtained using high-speed biplane videofluoroscopy before and during echocardiographically verified acute ischemic mitral regurgitation produced by occlusion of the left circumflex coronary artery. RESULTS: During acute ischemic mitral regurgitation, at end systole, the anterolateral edge of the central scallop was displaced 0.8+/-0.9 mm laterally and 0.9+/-0.6 mm apically away from the anterolateral scallop; such displacement correlated with lateral displacement of the lateral annulus (R(2)=0.7, SEE=0.7 mm, P<0.001) and movement of the right lateral annulus away from the nonischemic anterior papillary tip (R(2)=0.6, SEE=0.8 mm, P=0.002), respectively. End-systolic displacement of the posteromedial edge of the central scallop was 1.4+/-0.9 mm anteriorly and 0.9+/-0.6 mm laterally away from the posteromedial scallop, corresponding to anterior displacement of the mid-lateral annulus (R(2)=0.5, SEE=1.0 mm, P<0.001). CONCLUSIONS: Malcoaptation of the scallops within the posterior leaflet during acute left ventricular ischemia is a novel observation. The primary geometric mechanism underlying scallop malcoaptation in acute ischemic mitral regurgitation was annular dilatation, which hindered leaflet coaptation by drawing the individual scallops apart. These findings support the use of annular reduction in the repair of ischemic mitral regurgitation and also suture closure of prominent subcommissures between posterior leaflet scallops.

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Cite This Study

Lai et al. (2002) studied Acute ischemic mitral regurgitation (n=13). Occlusion of the left circumflex coronary artery vs. Before occlusion (baseline) was evaluated on Displacement of the central scallop edges (p=<0.001). Acute left ventricular ischemia induced by circumflex occlusion caused malcoaptation of posterior leaflet scallops driven by annular dilatation, which drew the individual scallops apart.

synapsesocial.com/papers/6a6f259031a3df82432794behttps://doi.org/10.1161/01.cir.0000032874.55215.82
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