Exercise training improves exercise capacity and physical dimensions of QoL in HFpEF. This benefit is associated with atrial reverse remodeling and improved left ventricular diastolic function. (Exercise Training in Diastolic Heart Failure-Pilot Study: A Prospective, Randomised, Controlled Study to Determine the Effects of Physical Training on Exercise Capacity and Quality of Life [Ex-DHF-P]; ISRCTN42524037).
Background-Brain natriuretic peptide (BNP) and N-terminal (NT)-proBNP have recently emerged as promising parameters for risk assessment in acute pulmonary embolism (PE). However, their positive predictive value is low, and the prognostic implications of NT-proBNP or troponin elevation alone are questionable. Methods and Results-To determine whether the combination of NT-proBNP testing with echocardiography may identify both low-risk and high-risk patients with PE, we examined 124 consecutive patients with proved PE. All underwent echocardiography on admission to detect right ventricular dysfunction. NT-proBNP and troponin concentrations were measured in one core laboratory. The primary end point was death or major in-hospital complications. The cutoff level of 1000 pg/mL had a high negative predictive value (95% for a complicated course, 100% for death), but NT-proBNP Ն1000 pg/mL did not independently predict an adverse outcome. Combination of NT-proBNP testing with echocardiography identified 3 major risk groups. A positive echocardiogram was associated with a 12-fold elevation in complication risk compared with patients with low NT-proBNP (Pϭ0.002), whereas NT-proBNP elevation without right ventricular dysfunction on echocardiography only slightly increased the risk of an adverse outcome (Pϭ0.17). The combination of cardiac troponin testing with echocardiography yielded similar complication rates in the lowest-risk group and a similar magnitude of risk elevation for the highest-risk patients, but it also increased the number of intermediate-risk groups. Conclusions-Our results support a simple risk stratification algorithm for patients with PE, with the use of NT-proBNP or troponin testing as an initial step that should be followed by echocardiography if elevated levels of the biomarker are found. (Circulation. 2005;112:1573-1579.)
Our data demonstrate that more than one-third of patients clinically diagnosed as having pulmonary embolism presented with elevated serum troponin I concentrations. Troponin I tests helped to identify patients with RV dilatation who had significantly more segmental defects in lung scans. Thus, troponin I assays are useful to detect minor myocardial damage in pulmonary embolism.
Background-Assessment of risk and appropriate management of patients with acute pulmonary embolism (PE) remains a challenge. Cardiac troponins I (cTnI) and T (cTnT) are reliable indicators of myocardial injury and may be associated with right ventricular dysfunction in PE. Methods and Results-The present prospective study included 106 consecutive patients with confirmed acute PE. cTnI was elevated (Ն0.07 ng/mL) in 43 patients (41%), and cTnT (Ն0.04 ng/mL) was elevated in 39 (37%). Elevation of cTnI or cTnT was significantly associated with echocardiographically detected right ventricular dysfunction (Pϭ0.001 and PϽ0.05, respectively). Moreover, a significant correlation was found between elevation of cTnI or cTnT and the two major end points overall mortality and complicated in-hospital course. The negative predictive value of cardiac troponins for major clinical events was 92% to 93%. Importantly, there was obvious escalation of in-hospital mortality, the rate of complications, and the incidence of recurrent PE, when patients with high troponin concentrations (cTnI Ͼ1.5; cTnT Ͼ0.1 ng/mL) were compared with those with only moderately elevated levels (cTnI, 0.07 to 1.5; cTnT, 0.04 to 0.1 ng/mL). Logistic regression analysis confirmed that the mortality risk (OR) was significantly elevated only in patients with high cTnI (Pϭ0.019) or cTnT (Pϭ0.038) levels. Furthermore, the risk of a complicated in-hospital course was almost 5 times higher (15.47 versus 3.16) in the high-cTnI group compared with patients with moderate cTnI elevation. Conclusions-Our results indicate that cTnI and cTnT may be a novel, particularly useful tool for optimizing the management strategy in patients with acute PE.
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