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Prognostic Importance of Left Ventricular Mechanical Dyssynchrony in Predicting Cardiovascular Death in the General
Daniel Modin1, Sofie Reumert Biering-Sørensen1, Rasmus Møgelvang1
1Department of Cardiology, Herlev & Gentofte Hospital (D.M., S.R.B.-S., R.M., J.S.J., T.B.-S.), University of Copenhagen, Denmark.
Insights
Left ventricular mechanical dyssynchrony (LVMD) predicts cardiovascular death in the general population. This finding adds valuable prognostic information beyond existing risk factors for cardiovascular outcomes.
Area of Science:
- Cardiology
- Echocardiography
- Preventive Medicine
Background:
- Cardiovascular death (CVD) is a leading cause of mortality globally.
- Left ventricular mechanical dyssynchrony (LVMD) is a potential predictor of cardiovascular outcomes.
- The prognostic value of LVMD in the general population remains largely unknown.
Purpose of the Study:
- To investigate the prognostic value of LVMD in predicting CVD in the general population.
- To determine if LVMD provides additional predictive information beyond established risk factors.
Main Methods:
- 1138 participants underwent echocardiography with speckle tracking analysis to calculate LVMD.
- Participants were followed for a median of 11.1 years for cardiovascular death (primary endpoint) and noncardiovascular death (secondary endpoint).
- Competing risk regression was used to analyze the association between LVMD and CVD, adjusting for multiple variables.
Main Results:
- LVMD was an independent predictor of CVD (HR, 1.04 per 10-ms increase; P=0.004) after multivariable adjustment.
- LVMD did not predict noncardiovascular death.
- LVMD provided incremental prognostic information beyond the Systematic Coronary Risk Evaluation and the Pooled Cohort Equations.
Conclusions:
- LVMD is a significant independent predictor of cardiovascular death in the general population.
- LVMD offers added prognostic value for CVD prediction beyond established risk factors.
- These findings are relevant for individuals without atrial fibrillation or significant valvular disease.
Background:
Cardiovascular death (CVD) is a leading cause of death and constitutes a major burden on society. Left ventricular mechanical dyssynchrony (LVMD), evaluated as SD of time to peak regional longitudinal strain, is a capable predictor of many cardiovascular outcomes related to CVD, including ventricular arrhythmias, but the prognostic utility of LVMD in the general population is unknown. Hence, this study sought to determine the prognostic value of LVMD in the general population in predicting CVD.
Methods And Results:
A total of 1138 participants underwent a general health examination and an echocardiographic examination including speckle tracking analysis with subsequent calculation of LVMD from time-to-peak regional strain. Primary end point was CVD, and secondary end point was noncardiovascular death. Follow-up was 100%. During a median follow-up of 11.1 years (interquartile range: 10.2-11.3 years), 62 participants suffered CVD (5.5%) while 131 participants experienced noncardiovascular death (11.5%). LVMD was an independent predictor of CVD (subdistribution hazard ratio, 1.04; 95% CI, 1.01-1.06; P=0.004, per 10-ms increase) in competing risk regression treating noncardiovascular death as a competing risk and retained prognostic capability after extensive multivariable adjustment. LVMD was not a significant predictor of noncardiovascular death. LVMD added incremental prognostic information in predicting CVD beyond the Systematic Coronary Risk Evaluation risk chart and a modified version of the American College of Cardiology/American Heart Association Pooled Cohort Equation.
Conclusions:
Left ventricular mechanical dyssynchrony adds incremental prognostic information in addition to established risk factors in prediction of CVD in individuals from the general population without atrial fibrillation and significant valvular disease.
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