AgostoniPWassermanKPeregoGB, et al.Oxygen transport to muscle during exercise in chronic congestive heart failure secondary to idiopathic dilated cardiomyopathy. Am J Cardiol1997; 79: 1120–1124.
2.
SatoTYoshihisaAKannoY, et al.Cardiopulmonary exercise testing as prognostic indicators: comparisons among heart failure patients with reduced, mid-range and preserved ejection fraction. Eur J Prev Cardiol2017; 24: 1979–1987.
3.
GargiuloPOllaSBoitiC, et al.Predicted values of exercise capacity in heart failure: where we are, where to go. Heart Fail Rev2014; 19: 645–653.
4.
HansenJESueDYWassermanK. Predicted values for clinical exercise testing. Am Rev Respir Dis1984; 129: S49–S55.
5.
ChiarandaGMyersJArenaR, et al.Prognostic comparison of the FRIEND and Wasserman/Hansen peak VO2 equations applied to a submaximal walking test in outpatients with cardiovascular disease. Eur J Prev Cardiol Epub ahead of print 26 August 2019. DOI: 10.1177/2047487319871728.
6.
MoneghettiKJHockJKaminskyL, et al.Applying current normative data to prognosis in heart failure: the Fitness Registry and the Importance of Exercise National Database (FRIEND). Int J Cardiol2018; 263: 75–79.
7.
LaukkanenJAAraújoCGSKurlS, et al.Relative peak exercise oxygen pulse is related to sudden cardiac death, cardiovascular and all-cause mortality in middle-aged men. Eur J Prev Cardiol2018; 25: 772–782.
8.
CattadoriGSchmidJPBruggerN, et al.Hemodynamic effects of exercise training in heart failure. J Cardiac Fail2011; 17: 916–922.
9.
AgostoniPDumitrescuD. How to perform and report a cardiopulmonary exercise test in patients with chronic heart failure. Int J Cardiol2019; 288: 107–113.
10.
PaolilloSVegliaFSalvioniE, et al.Heart failure prognosis over time: how the prognostic role of oxygen consumption and ventilatory efficiency during exercise has changed in the last 20 years. Eur J Heart Fail2019; 21: 208–217.