Key result
Reduced functional capacity in asymptomatic organic MR is linked to ~80% higher clinical event risk.
Why the study?
Evaluation of functional capacity by exercise testing is rarely performed in mitral regurgitation because little is known about its clinical determinants and outcome implications.
Does reduced functional capacity assessed by CPET predict clinical events in asymptomatic patients with organic mitral regurgitation?
Observational (n=134)
Does reduced functional capacity assessed by CPET predict clinical events in asymptomatic patients with organic mitral regurgitation?
Relative Risk: 1.8
Absolute Event Rate: 36% vs 13%
p-value: p=0.02
In asymptomatic organic mitral regurgitation, CPET frequently reveals functional limitations that independently predict increased subsequent clinical events.
OBJECTIVES: This study was designed to evaluate prevalence, determinants, and clinical outcome implications of reduced functional capacity (FC) in patients with organic mitral regurgitation (MR). BACKGROUND: Evaluation of FC by exercise testing is rarely performed in MR because little is known about the clinical determinants and outcome implications of FC. METHODS: Cardiopulmonary exercise testing (CPET) was prospectively performed in 134 asymptomatic patients with organic MR to assess FC (peak oxygen consumption [VO2]) simultaneously to Doppler-echocardiographic quantitation of MR (effective regurgitant orifice [ERO]) and left ventricular (LV) systolic and diastolic function. RESULTS: Peak VO2 was 26 +/- 6 ml/kg/min (96 +/- 16% of age-predicted), but varied widely (57% to 145% of predicted) and was markedly reduced (< or =84% of predicted) in 19% of patients. Although ERO of MR was univariately associated with reduced FC (26 vs. 9% with ERO > or =40 vs. <40 mm2), independent determinants of reduced FC were LV diastolic function (higher E/E' ratio, p = 0.006), atrial fibrillation (p = 0.01), and lower forward stroke volume (p = 0.03). Clinical events (death, heart failure, new atrial fibrillation) and clinical events or surgery were more frequent with than without reduced FC (3 years, 36 +/- 14% vs. 13 +/- 4%, p = 0.02; and 66 +/- 11% vs. 29 +/- 5%, p = 0.001, respectively), even adjusting (risk ratios 1.80 and 1.54 respectively, both p < or = 0.03) for age and ERO. CONCLUSIONS: In asymptomatic organic MR, FC quantitatively assessed by CPET is unexpectedly markedly reduced in one out of every four to five patients. Reduced FC is independently determined by consequences rather than severity of MR and predicts increased subsequent clinical events. Therefore, CPET frequently reveals functional limitations not detected clinically and is an important tool in managing patients with organic MR.
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Messika–Zeitoun et al. (2006) conducted an observational in Asymptomatic organic mitral regurgitation (n=134). Reduced functional capacity vs. Preserved functional capacity was evaluated on Clinical events (death, heart failure, new atrial fibrillation) (RR 1.80, p=0.02). In asymptomatic organic mitral regurgitation, reduced functional capacity was associated with a higher 3-year rate of clinical events (36% vs 13%, P=0.02; adjusted RR 1.80).
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