Literature DB >> 9386087

Geometric determinants of ischemic mitral regurgitation.

M Komeda1, J R Glasson, A F Bolger, G T Daughters, A MacIsaac, S N Oesterle, N B Ingels, D C Miller.   

Abstract

BACKGROUND: The precise geometric determinants of ischemic mitral regurgitation (MR) are incompletely understood, although such knowledge is important to improve mitral valve reparative techniques. METHODS AND
RESULTS: The three-dimensional geometry of the mitral apparatus was studied using radiopaque markers in eight closed-chest dogs with acute posterior left ventricular wall ischemia either with (MR) or without (no-MR) MR as assessed by using color Doppler. Using a cylindrical coordinate system (origin at the midpoint between the mitral annulus commissures [anterolateral and posteromedial] and z-axis directed toward the left ventricular apex), we measured the distance to the midpoint (z, in millimeters), radial distance from the z-axis (r, in millimeters), and angle from the intercommissural line (theta) of each marker. A multivariate analysis of variance showed the following differences (P < .005) between the MR and the no-MR groups: 1) markedly increased r of the posterior papillary muscle tip (10.3 versus 6.4 mm, MR versus no-MR, at end-systole) and increased r of the anterior papillary muscle tip; 2) dilation (in the septal-lateral direction) of the midpart of the mitral annulus and near the anterolateral region; 3) increased posterior mitral leaflet r near both commissures (eg, 8.3 versus 6.2 mm on the posteromedial side) and increased z (ie, shifted toward the left ventricular apex) of the posterior leaflet on the anterolateral side (eg, 7.0 versus 6.2 mm), which is analogous to restricted (or type III) leaflet motion.
CONCLUSIONS: These findings indicate that the geometric determinants of ischemic MR in dogs are complex and involve many parts of the mitral valve apparatus. This complexity suggests that surgical attention to the entire annulus and excursion of the posterior leaflet may be helpful when annuloplasty alone is inadequate.

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Year:  1997        PMID: 9386087

Source DB:  PubMed          Journal:  Circulation        ISSN: 0009-7322            Impact factor:   29.690


  17 in total

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4.  Geometric perturbations in multiheaded papillary tip positions associated with acute ovine ischemic mitral regurgitation.

Authors:  Tomasz A Timek; David T Lai; Wolfgang Bothe; David Liang; George T Daughters; Neil B Ingels; D Craig Miller
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5.  Mitral regurgitation after anteroapical myocardial infarction: new mechanistic insights.

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6.  On the effects of leaflet microstructure and constitutive model on the closing behavior of the mitral valve.

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7.  Effect of anterior strut chordal transection on the force distribution on the marginal chordae of the mitral valve.

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8.  Ovine Model of Ischemic Mitral Regurgitation.

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Journal:  Methods Mol Biol       Date:  2018

9.  Acute geometric changes of the mitral annulus after coronary occlusion: a real-time 3D echocardiographic study.

Authors:  Jun Kwan; Beom Woo Yeom; Michael Jones; Jian Xin Qin; Arthur D Zetts; James D Thomas; Takahiro Shiota
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10.  Assessment of mitral valve adaptation with gated cardiac computed tomography: validation with three-dimensional echocardiography and mechanistic insight to functional mitral regurgitation.

Authors:  Jonathan Beaudoin; Wai-Ee Thai; Bryan Wai; Mark D Handschumacher; Robert A Levine; Quynh A Truong
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