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Pathophysiology, diagnosis and new therapeutic approaches for ischemic mitral regurgitation Transcatheter Interventions for Tricuspid Valve Disease: What to Do and Who to Do it On Italian Society of Interventional Cardiology (GIse) Registry Of Transcatheter Treatment of Mitral Valve RegurgitaTiOn (GIOTTO): Impact of Valve Disease Etiology and Residual Mitral Regurgitation after MitraClip Implantation Novel Transcatheter Mitral Valve Prosthesis for Patients With Severe Mitral Annular Calcification The management of secondary mitral regurgitation in patients with heart failure: a joint position statement from the Heart Failure Association (HFA), European Association of Cardiovascular Imaging (EACVI), European Heart Rhythm Association (EHRA), and European Association of Percutaneous Cardiovascular Interventions (EAPCI) of the ESC Prospective Evaluation of Transseptal TMVR for Failed Surgical Bioprostheses: MITRAL Trial Valve-in-Valve Arm 1-Year Outcomes MITRA-FR vs. COAPT: Lessons from two trials with diametrically opposed results Current Status and Future Prospects of Transcatheter Mitral Valve Replacement: JACC State-of-the-Art Review Functional Mitral Regurgitation Outcome and Grading in Heart Failure With Reduced Ejection Fraction Incidence and Standardized Definitions of Mitral Valve Leaflet Adverse Events After Transcatheter Mitral Valve Repair: the EXPAND Study
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Review Article2020 May 27.

JOURNAL:JAMA Cardiol. Article Link

Association Between Malignant Mitral Valve Prolapse and Sudden Cardiac Death: A Review

L Muthukumar, A Jahangir, MF Jan et al. Keywords: malignant arrhythmic mitral valve prolapse; sudden cardiac death

ABSTRACT

IMPORTANCE - Malignant arrhythmic mitral valve prolapse (MVP) phenotype poses a substantial risk of sudden cardiac death (SCD), and an estimated 26 000 individuals in the United States are at risk of SCD per year. Thus, identifying risk-stratification strategies for SCD is imperative.

 

OBSERVATIONS - Patients with MVP have a heterogenous clinical spectrum, ranging from a benign course to a devastating complication such as SCD. Some of the high-risk markers of MVP, which are identified electrocardiographically, include inverted or biphasic T waves, QT dispersion, QT prolongation, and premature ventricular contractions originating from the left ventricular outflow tract and papillary muscles. Morphofunctional characteristics of SCD are leaflet thickness of 5 mm or greater, mitral annulus disjunction, paradoxical systolic increase of the mitral annulus diameter, increased tissue Doppler velocity of the mitral annulus, and higher mechanical dispersion on echocardiography and fibrosis identified by late gadolinium enhancement on cardiac magnetic resonance imaging.

 

CONCLUSIONS AND RELEVANCE - Findings from this review suggest that SCD can occur earlier in the course of MVP from complex arrhythmias that are triggered by the repeated tugging and traction of the chordopapillary muscle unit and basal mid-myocardium, even before macrofibrosis can be identified in these regions by late gadolinium enhancement on cardiac magnetic resonance imaging. Some of the newer markers identified by speckle-tracking Doppler, such as mechanical dispersion, myocardial work index, and postsystolic shortening, need further validation in a larger population.