Adjusting exercise ventilation efficiency for age: A step forward for optimizing prediction of outcome especially in heart failure with preserved ejection fraction
Restricted accessEditorialFirst published online May, 2018
Adjusting exercise ventilation efficiency for age: A step forward for optimizing prediction of outcome especially in heart failure with preserved ejection fraction
FrancisDPShamimWDaviesLCet al.Cardiopulmonary exercise testing for prognosis in chronic heart failure: Continuous and independent prognostic value from VE/VCO(2)slope and peak VO(2). Eur Heart J2000; 21: 154–1561.
2.
ArenaRMyersJAbellaJet al.Development of a ventilatory classification system in patients with heart failure. Circulation2007; 115: 2410–2417.
3.
PonikowskiPFrancisDPPiepoliMFet al.Enhanced ventilatory response to exercise in patients with chronic heart failure and preserved exercise tolerance: Marker of abnormal cardiorespiratory reflex control and predictor of poor prognosis. Circulation2001; 103: 967–972.
4.
NadruzWJrWestESengelovMet al.Prognostic value of cardiopulmonary exercise testing in heart failure with reduced, midrange, and preserved ejection fraction. J Am Heart Assoc2017, pp. 6. . doi: 10.1161/JAHA.117.006000.
5.
SatoTYoshihisaAKannoYet 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.
6.
ShafiqABrawnerCAAldredHAet al.Prognostic value of cardiopulmonary exercise testing in heart failure with preserved ejection fraction. The Henry Ford HospITal CardioPulmonary EXercise Testing (FIT-CPX) project. Am Heart J2016; 174: 167–172.
7.
KlaassenSHCLiuLCYHummelYMet al.Clinical and hemodynamic correlates and prognostic value of VE/VCO2 slope in patients with heart failure with preserved ejection fraction and pulmonary hypertension. J Card Fail2017; 23: 777–782.
8.
GuazziMBanderaFOzemekCet al.Cardiopulmonary xercise testing: What is its value?J Am Coll Cardiol2017; 70: 1618–1636.
9.
GuazziMReinaGTumminelloGet al.Exercise ventilation inefficiency and cardiovascular mortality in heart failure: The critical independent prognostic value of the arterial CO2 partial pressure. Eur Heart J2005; 26: 472–480.
10.
KeeKStuart-AndrewsCEllisMJet al.Increased dead space ventilation mediates reduced exercise capacity in systolic heart failure. Am J Respir Crit Care Med2016; 193: 1292–300.
11.
Van ItersonEHJohnsonBDBorlaugBAet al.Physiological dead space and arterial carbon dioxide contributions to exercise ventilatory inefficiency in patients with reduced or preserved ejection fraction heart failure. Eur J Heart Fail2017; 19: 1675–1685.
12.
GuazziM. Exercise VE/VCO2 slope: An endurance marker of prognosis also in patients with HFpEF and pulmonary hypertension, at least!. J Card Fail2017; 23: 783–785.
13.
KatoYSSUejimaTSembaHet al.Relationship between the prognostic value of ventilator efficiency and age in patients with heart failure. Eur J Prev Cardiol.. 2018; 25: 731–739.
14.
Sun XG, Hansen JE, Garatachea N, et al. Ventilatory efficiency during exercise in healthy subjects. Am J Respir Crit Care Med 2002; 166: 1443–1448.
15.
BorlaugBAObokataM. Is it time to recognize a new phenotype? Heart failure with preserved ejection fraction with pulmonary vascular disease. Eur Heart J2017; 38: 2874–2878.
16.
WolskEBakkestromRThomsenJHet al.The influence of age on hemodynamic parameters during rest and exercise in healthy individuals. JACC Heart Fail2017; 5: 337–346.