American Thoracic Society, American College of Chest Physicians. ATS/ACCP statement on cardiopulmonary exercise testing. Am J Respir Crit Care Med, 2003; 167(2):211–277.
2.
WassermanK, HansenJE, SueDY, StringerWW, WhippBJ. Principles of exercise testing and interpretation. Philadelphia: Lippincott Williams & Wilkins; 2005:94.
3.
ERS Task Force, PalangeP, WardSA, CarlsenKH, CasaburiR, GallagherCG, et al. Recommendations on the use of exercise testing in clinical practice. Eur Respir J, 2007; 29(1):185–209.
4.
MezzaniA, AgostoniP, Cohen-SolalA, CorràU, JegierA, KouidiE, et al. Standards for the use of cardiopulmonary exercise testing for the functional evaluation of cardiac patients: a report from the Exercise Physiology Section of the European Association for Cardiovascular Prevention and Rehabilitation. Eur J Cardiovasc Prev Rehabil, 2009; 16(3):249–267.
5.
BaladyGJ, ArenaR, SietsemaK, MyersJ, CokeL, FletcherGF, et al. Clinician's Guide to cardiopulmonary exercise testing in adults: a scientific statement from the American Heart Association. Circulation, 2010; 122(2):191–225.
6.
WassermanK. Breathing during exercise. N Engl J Med, 1978; 298(14):780–785.
7.
PonikowskiP, FrancisDP, PiepoliMF, DaviesLC, ChuaTP, DavosCH, et 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. Circulation, 2001; 103(7):967–972.
8.
O'DonnellDE, D'ArsignyC, FitzpatrickM, WebbKA. Exercise hypercapnia in advanced chronic obstructive pulmonary disease: the role of lung hyperinflation. Am J Respir Crit Care Med, 2002; 166(5):663–668.
9.
AgostoniP, PellegrinoR, ConcaC, RodarteJR, BrusascoV. Exercise hyperpnea in chronic heart failure: relationships to lung stiffness and expiratory flow limitation. J Appl Physiol, 2002; 92(4):1409–1416.
10.
TeopompiE, TzaniP, AielloM, RamponiS, ViscaD, GioiaMR, et al. Ventilatory response to carbon dioxide output in patients with chronic heart failure and in patients with COPD with comparable exercise capacity. Respir Care, 2014; 59(7):1034–1041.
11.
PaolettiP, De FilippisF, FraioliF, CinquantaA, ValliG, LavenezianaP, et al. Cardiopulmonary exercise testing (CPET) in pulmonary emphysema. Respir Physiol Neurobiol, 2011; 179(2-3):167–173.
12.
PoonCS, TinC. Mechanism of augmented exercise hyperpnea in chronic heart failure and dead space loading. Respir Physiol Neurobiol, 2013; 186(1):114–130.
13.
PoonCS. Ventilatory control in hypercapnia and exercise: optimization hypothesis. J Appl Physiol, 1987; 62(6):2447–2459.
14.
PoonCS, TinC, YuY. Homeostasis of exercise hyperpnea and optimal sensorimotor integration: the internal model paradigm. Respir Physiol Neurobiol, 2007; 159(1):1–13; discussion 14-20.
15.
PoonCS. Optimal interaction of respiratory and thermal regulation at rest and during exercise: role of a serotonin-gated spinoparabrachial thermoafferent pathway. Respir Physiol Neurobiol, 2009; 169(3):234–242.
16.
PoonCS. Evolving paradigms in H+ control of breathing: from homeostatic regulation to homeostatic competition. Respir Physiol Neurobiol, 2011; 179(2-3):122–126.