Key result
Echo profiling of LV forward flow, filling pressure, and RV function predicts mortality independently of LVEF.
Why the study?
Does echocardiographic-derived profiling of LV forward flow, filling pressure, and RV function better predict all-cause mortality than LVEF in patients hospitalized with heart failure?
Cohort (n=603)
Does echocardiographic-derived profiling of LV forward flow, filling pressure, and RV function better predict all-cause mortality than LVEF in patients hospitalized with heart failure?
p-value: p=<0.001
A novel echocardiographic profiling combining LV forward flow, filling pressure, and RV function predicts all-cause mortality in hospitalized HF patients independently of LVEF.
May aid risk stratification beyond LVEF in hospitalized HF; hypothesis-generating and requires prospective validation before practice change.
Background: Although in clinical practice heart failure (HF) patients are classified using left ventricular ejection fraction (LVEF), this categorization is insufficient for prognosis, especially when LVEF is preserved or there is a concomitant right ventricular (RV) dysfunction. We hypothesized that a combined noninvasive evaluation of LV forward flow, filling pressure, and RV function would be better than LVEF in predicting all-cause mortality of hospitalized patients with HF. Methods: Transthoracic echocardiographic examinations of 603 patients hospitalized with HF were analyzed. In a subsample of 200 patients with HF, LV stroke volume index, LV filling pressure estimation, tricuspid annular plane systolic excursion, and systolic pulmonary artery pressure were combined to determine 4 hemodynamic profiles: normal flow-normal pressure, normal flow-high pressure, low flow without RV dysfunction, and low flow with RV dysfunction profile. This model was then applied in a validation cohort (n=403). Results: Prognosis worsened from the normal flow-normal pressure profile to the low flow with right ventricular dysfunction profile. At the multivariate survival analysis, the model showed independent high risk-stratification capability ( P <0.001), even in subgroups of patients with LVEF < or ≥50% ( P =0.011 and P <0.001, respectively) and < or ≥40% ( P =0.044 and P <0.001, respectively). LVEF and HF classification based on LVEF did not predict outcome. Conclusions: Echocardiographic-derived profiling of LV forward flow, filling pressure, and RV function allowed categorization of patients hospitalized with HF and predicted all-cause mortality independently of LVEF. This model is based on conventional echocardiography, is easy to apply, and is, therefore, suggested for clinical practice.
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Mele et al. (2020) conducted a cohort in Heart failure (n=603). Echocardiographic-derived hemodynamic profiling (LV forward flow, filling pressure, and RV function) vs. Left ventricular ejection fraction (LVEF) classification was evaluated on All-cause mortality (p=<0.001). Echocardiographic-derived profiling of LV forward flow, filling pressure, and RV function predicted all-cause mortality independently of LVEF (P<0.001).
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