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Abstract
Originally Published 1 November 1976
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Mitral valve prolapse. Two-dimensional echocardiographic and angiographic correlation.

Abstract

In order to define baseline descriptive criteria for the diagnosis of mitral valve prolapse with cross-sectional echocardiography, 49 patients undergoing catheterization were examined by a real-time, two-dimensional phased array echocardiographic imaging system. Angiography was used to separate patients into two distinct groups: 15 with normal mitral valve function and 34 with definite mitral valve prolapse. Systolic mitral leaflet and annulus motion were then observed in each patient and similarities and differences were noted between the two groups of patients. Correlative M-mode echocardiographic data were available in 37 patients. Certain two-dimensional echocardiographic findings restricted to the angiographically proven mitral valve prolapse group were defined: 1) posteriorly displaced coaptation of the leaflets, 2) systolic superior movement of one or both mitral leaflets above the level of the mitral ring, and 3) a systolic curling motion of the posterior mitral ring on its adjacent myocardium. One or more of these abnormalities were found in all 34 patients with angiographic mitral valve prolapse. When mitral valve prolapse does occur, the results of two-dimensional echocardiography would suggest that both leaflets are usually involved.

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Circulation
Pages: 716 - 723
PubMed: 975465

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Published online: 1 November 1976
Published in print: November 1976

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  1. Mitral Annular Disjunction: An Approximation to the Truth, Journal of the American Society of Echocardiography, 38, 1, (12-15), (2025).https://doi.org/10.1016/j.echo.2024.11.004
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  2. Echocardiographic Assessment of Mitral Valve Prolapse Prevalence before and after the Year 1999: A Systematic Review, Journal of Clinical Medicine, 13, 20, (6160), (2024).https://doi.org/10.3390/jcm13206160
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  3. Prevalence of Mitral Valve Prolapse Among Individuals with Pectus Excavatum: A Systematic Review and Meta-Analysis, Diagnostics, 14, 22, (2488), (2024).https://doi.org/10.3390/diagnostics14222488
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  4. The relationship between mitral valve prolapse and thoracic skeletal abnormalities in clinical practice: a systematic review, Journal of Cardiovascular Medicine, (2024).https://doi.org/10.2459/JCM.0000000000001614
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  5. Arrhythmic Mitral Valve Prolapse: A Comprehensive Review, Diagnostics, 13, 18, (2868), (2023).https://doi.org/10.3390/diagnostics13182868
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  6. Myocardial deformation in malignant mitral valve prolapse: A shifting paradigm to dynamic mitral valve–ventricular interactions, Frontiers in Cardiovascular Medicine, 10, (2023).https://doi.org/10.3389/fcvm.2023.1140216
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  7. Abnormal Mechanics Relate to Myocardial Fibrosis and Ventricular Arrhythmias in Patients With Mitral Valve Prolapse, Circulation: Cardiovascular Imaging, 16, 4, (e014963), (2023)./doi/10.1161/CIRCIMAGING.122.014963
    Abstract
  8. Mitral Annular Disjunction: Review of an Increasingly Recognized Mitral Valve Entity, Radiology: Cardiothoracic Imaging, 5, 6, (2023).https://doi.org/10.1148/ryct.230131
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  9. Arrhythmic Mitral Valve Prolapse and Mitral Annular Disjunction: Clinical Features, Pathophysiology, Risk Stratification, and Management, Journal of Cardiovascular Development and Disease, 9, 2, (61), (2022).https://doi.org/10.3390/jcdd9020061
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  10. Left Ventricular Remodeling in Non-syndromic Mitral Valve Prolapse: Volume Overload or Concomitant Cardiomyopathy?, Frontiers in Cardiovascular Medicine, 9, (2022).https://doi.org/10.3389/fcvm.2022.862044
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Mitral valve prolapse. Two-dimensional echocardiographic and angiographic correlation.
Circulation
  • Vol. 54
  • No. 5

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Circulation
  • Vol. 54
  • No. 5
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