Left Ventricular Abnormalities in Prolapsed Mitral Leaflet Syndrome
Author(s) -
Gregory Scampardonis,
Sing San Yang,
Vladir Maranhão,
Harry Goldberg,
Alden S. Gooch
Publication year - 1973
Publication title -
circulation
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 7.795
H-Index - 607
eISSN - 1524-4539
pISSN - 0009-7322
DOI - 10.1161/01.cir.48.2.287
Subject(s) - medicine , cardiology , ventricle , ejection fraction , asynergy , mitral valve prolapse , diastole , isovolumetric contraction , stroke volume , radionuclide ventriculography , mitral valve , blood pressure , heart failure
Eighty-seven patients with proven mitral leaflet prolapse were studied emphasizing cardiodynamics and left ventricular asynergy. Significant associated features were female preponderance (83%), skeletal anomalies (pectus excavatum, straight back, scoliosis, narrow antero-posterior diameter of the chest), and anomalous coronary arteries (cork-screw patterns, short left main coronary artery, anomalous origin of the coronary arteries). Prolapse of the tricuspid leaflets was found in 15 (54%) who had right ventriculography. Five types of abnormal left ventricular systolic contraction patterns were seen in 82% of the cases and these were categorized as: 1) “ballerina foot” pattern (vigorous posteromedial contraction with anterior convexity), 2) “hour glass” pattern (vigorous ring-like contraction involving the middle portion of the left ventricle), 3) inadequate long axis shortening, 4) posterior akinesis, and 5) cavity obliteration pattern. The over-all left ventricular performance was normal generally, as indicated by normal values for functional parameters including left ventricular end-diastolic pressure, cardiac index, ejection fraction, contractility index (stroke work per end-diastolic volume) and pre-ejection period/left ventricular ejection time (PEP/LVET). The myocardial component of the syndrome of prolapsed mitral (and/or tricuspid) leaflets is expressed as asynergistic patterns of ventricular motion and usually does not impair over-all cardiac dynamics.
Accelerating Research
Robert Robinson Avenue,
Oxford Science Park, Oxford
OX4 4GP, United Kingdom
Address
John Eccles HouseRobert Robinson Avenue,
Oxford Science Park, Oxford
OX4 4GP, United Kingdom