Tissue Doppler echocardiography in predicting exercise intolerance.
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Biomedical subjects
Publications and source records attributed to Stephane Arques.
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BACKGROUND: Based on the hypothesis that it reflects left ventricular (LV) diastolic pressures, B-type natriuretic peptide (BNP) is largely utilized as first-line diagnostic complement in the emergency diagnosis of congestive heart failure (HF). The incremental diagnostic value of tissue Doppler echocardiography, a reliable noninvasive estimate of LV filling pressures, has been reported in patients with preserved LV ejection fraction and discrepancy between BNP levels and the clinical judgment, however, its clinical validity in such patients in the presence of BNP concentrations in the midrange, which may reflect intermediate, nondiagnostic levels of LV filling pressures, is unknown. METHODS: 34 patients without history of HF, presenting with acute dyspnea at rest, BNP levels of 100-400 pg/ml and normal LV ejection fraction were prospectively enrolled (17 with congestive HF and 17 with noncardiac cause). Tissue Doppler echocardiography was performed within 3 hours after admission. RESULTS: Unlike BNP (P = 0.78), Boston criteria (P = 0.0129), radiographic pulmonary edema (P = 0.0036) and average E/Ea ratio (P = 0.0032) were predictive of congestive HF by logistic regression analysis. In this clinical setting, radiographic pulmonary edema had a positive predictive value of 80% in the diagnosis of congestive HF. In patients without evidence of radiographic pulmonary edema, average E/Ea > 10 was a powerful predictor of congestive HF (area under the ROC curve of 0.886, P < 0.001, sensitivity 100% and specificity 78.6%). CONCLUSION: By better reflecting LV filling pressures, bedside tissue Doppler echocardiography accurately differentiates congestive HF from noncardiac cause in dyspneic patients with intermediate, nondiagnostic BNP levels and normal LV ejection fraction.
The accuracy of the tissue Doppler E/Ea and color M-mode Doppler E/Vp indexes in diagnosing congestive heart failure (HF) was investigated in 20 chronic hypertensive patients with acute dyspnea and normal left ventricular ejection fractions who met Vasan's criteria for definite diastolic HF, compared with 20 gender- and age-matched hypertensive patients with noncardiac cause of acute dyspnea. The E/Ea ratio appeared to be more reproducible (variability 4% to 9% vs 6 to 14%) and more precise (sensitivity 77.8%, specificity 100%, and accuracy 89.5% for the optimal cutoff of 11 vs sensitivity 73.7%, specificity 75%, and accuracy 74.3% for the optimal cutoff of 1.5) than the E/Vp ratio in this clinical setting.
The imbalance of Starling's forces was investigated in 25 elderly patients hospitalized for acute diastolic heart failure. Tissue Doppler evidence of elevated left ventricular filling pressures was present on admission in 17 patients with high B-type natriuretic peptide (BNP) levels. Serum proteins concentrations and colloid osmotic pressure, related to malnutrition and severe sepsis, were significantly less in the 8 patients without tissue Doppler evidence of elevated filling pressures, and a high level of BNP was consistent with paroxysmal elevation in filling pressures in this setting.
BACKGROUND: Tissue Doppler echocardiography provides a reliable noninvasive estimation of left ventricular (LV) filling pressures irrespective of LV ejection fraction. However, the diagnostic accuracy of E/Ea ratio has not been adequately determined in patients with suspected heart failure (HF) with preserved LV systolic function in the acute care setting. OBJECTIVE: To investigate the accuracy of E/Ea ratio in the emergency diagnosis of decompensated HF with preserved LV systolic function. METHODS: Seventy patients with a LV ejection fraction >or=45%, 32 with decompensated HF (77 +/- 12 years of age), and 38 with noncardiac cause of acute dyspnea (74 +/- 12) were enrolled. B-type natriuretic peptide (BNP) was measured on admission; lateral, septal and average E/Ea ratios were calculated within 24 hours. RESULTS: Using receiver-operating characteristic curves to evaluate diagnostic performance, BNP (AUC of 0.875, P < 0.0001) and E/Ea ratios (AUC of 0.90-0.92, P < 0.0001) provided similar accuracy for predicting decompensated HF. Optimal cutoffs were 146 pg/ml for BNP (sensitivity and specificity of 90.6% and 76.3%), 9.8 for lateral E/Ea (83.3% and 88.9%), 12.7 for septal E/Ea (76.7% and 91.4%), and 11.5 for average E/Ea ratio (80% and 94.3%). On multivariate logistic regression analysis, average E/Ea ratio yielded independent additional information to a model based on the clinical judgment and BNP level according to the standard cutoff of 100 pg/ml. CONCLUSIONS: Tissue Doppler echocardiography is accurate for predicting decompensated HF with preserved LV systolic function and may be used as a diagnostic complement to inconclusive BNP level in this setting.
The prevalence of coronary artery disease was investigated in 18 patients hospitalized for acute diastolic heart failure without clinical and electrocardiographic evidence of myocardial ischemia on admission. On the basis of coronary angiography, 7 patients had coronary artery disease and 4 had ischemic heart disease. In addition, besides uncontrolled hypertension and several systemic factors, silent myocardial ischemia potentially contributed to acute exacerbation of heart failure for at least 5 patients with coronary artery disease, according to either elevation in troponin I or segmental wall motion abnormalities.
The aim of this study was to assess the accuracy of flow propagation velocity by color M-mode (Vp) and peak early diastolic mitral annulus velocity by tissue Doppler (Ea) in identifying pseudonormal mitral filling in 25 patients with acute symptoms of heart failure and preserved left ventricular systolic function compared with 25 gender- and age-matched healthy subjects. Although normal velocities for both Vp and Ea were found in 40% of patients, E/Vp and E/Ea ratios were able to differentiate pseudonormal from normal filling irrespective of values for Vp and Ea.
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