Pneumologie, Table of Contents Pneumologie 2016; 70(06): 368-370DOI: 10.1055/s-0042-108018 Pneumo-Fokus Georg Thieme Verlag KG Stuttgart · New YorkAusgezeichnet – Der Doktorandenpreis 2016 Recommend Article Abstract Full Text References Literatur 1 Amann M. M. Pulmonary system limitations to endurance exercise performance in humans. Exp Physiol 2012; 97: 311-318 2 Amann M, Regan MS, Kobitary M et al. Impact of pulmonary system limitations on locomotor muscle fatigue in patients with COPD. J Physiol Regul Integr Comp Physiol 2010; 299: R314-R324 3 Babcock MA, Johnson BD, Pegelow DF et al. Hypoxic effects on exercise-induced diaphragmatic fatigue in normal healthy humans. J Appl Physiol Bethesda Md 1995; 78: 82-92 4 Babcock MA, Pegelow DF, Harms CA et al. Effects of respiratory muscle unloading on exercise-induced diaphragm fatigue. J Appl Physiol Bethesda Md 2002; 93: 201-206 5 Bark H, Supinski G, Bundy R et al. Effect of hypoxia on diaphragm blood flow, oxygen uptake, and contractility. Am J Respir Crit Care Med 1988; 38: 1535-1541 6 Dempsey JA, Romer L, Romer L, Rodman J et al. Consequences of exercise-induced respiratory muscle work. Respir Physiol Neurobiol 2006; 151: 242-250 7 Fregosi RF, Dempsey JA. Effects of exercise in normoxia and acute hypoxia on respiratory muscle metabolites. J Appl Physiol Bethesda Md 1986; 60: 1274-1283 8 Gudjonsdottir MF, Appendini L, Baderna P et al. Diaphragm fatigue during exercise at high altitude: the role of hypoxia and workload. Eur Respir J Off J Eur Soc Clin Respir Physiol 2001; 17: 674-680 9 Johnson BD, Babcock MA, Suman OE et al. Exercise-induced diaphragmatic fatigue in healthy humans. J Physiol 1993; 460: 385-405 10 Kabitz H-J, Walker DJ, Schwoerer A et al. Biometric approximation of diaphragmatic contractility during sustained hyperpnea. Respir Physiol Neurobiol 2011; 176: 90-97 11 Laghi F, Topeli A, Tobin MJ. Does resistive loading decrease diaphragmatic contractility before task failure?. J Appl Physiol Bethesda Md 1998; 85: 1103-1112 12 McConnell AK, Romer LM. Respiratory muscle training in healthy humans: resolving the controversy. Int J Sports Med 2004; 25: 284-293 13 Renggli AS, Verges S, Notter DA et al. Development of respiratory muscle contractile fatigue in the course of hyperpnoea. Respir Physiol Neurobiol 2008; 164: 366-372 14 Romer LM, Polkey MI. Exercise-induced respiratory muscle fatigue: implications for performance. J Appl Physiol 2008; 104: 879-888 15 Tipton CM. Are The Lung And Chest Wall Buit For Exercise?. In Exercise Physiology 2003; 171-175 16 Verges S, Bachasson D, Wuyam B. Effect of acute hypoxia on respiratory muscle fatigue in healthy humans. Respir Res 2010; 11: 109 17 Vogiatzis I, Georgiadou O, Koskolou M et al. Effects of hypoxia on diaphragmatic fatigue in highly trained athletes. J Physiol 2007; 581: 299-308 18 Amann M et al. Inspiratory muscle work in acute hypoxia influences locomotor muscle fatigue and exercise performance of healthy humans. AJP Regul Integr Comp Physiol 2007; 293: R2036-R2045 19 Amann M, Regan MS, Kobitrary M et al. Impact of pulmonary system limitations on locomotor muscle fatigue in patients with COPD. AJP Regul Integr Comp Physiol 2010; 299: R314-R324 20 Ameer F, Carson KV, Usmani ZA et al. Ambulatory oxygen for people with chronic obstructive pulmonary disease who are not hypoxaemic at rest. In Cochrane Database of Systematic Reviews; 1996 21 Croix CM, Morgan BJ, Wetter TJ et al. Fatiguing inspiratory muscle work causes reflex sympathetic activation in humans. J Physiol 2000; 529: 493-504 22 Dempsey JA. New perspectives concerning feedback influences on cardiorespiratory control during rhythmic exercise and on exercise performance. J Physiol 2012; 590: 4129-4144 23 Duerschmied D, Zhou Q, Rink E et al. Simplified contrast ultrasound accurately reveals muscle perfusion deficits and reflects collateralization in PAD. Atherosclerosi 2009; 202: 505-512 24 Harms CA, Wetter TJ, St Croix CM et al. Effects of respiratory muscle work on exercise performance. J Appl Physiol 2000; 89: 131-138 25 Johnson BD, Babcock MA, Suman OE et al. Exercise-induced diaphragmatic fatigue in healthy humans. J Physiol 1993; 460: 385-405 26 Katayama K, Iwamoto E, Ishida K et al. Inspiratory muscle fatigue increases sympathetic vasomotor outflow and blood pressure during submaximal exercise. Am J Physiol - Regul Integr Comp Physiol 2012; 302: R1167-R1175 27 Miller JD, Smith CA, Hemauer SJ et al. The effects of inspiratory intrathoracic pressure production on the cardiovascular response to submaximal exercise in health and chronic heart failure. AJP Heart Circ Physiol 2006; 292: H580-H592 28 Mirzaaghazadeh M, Bahtouee M et al. The Relationship between Nocturnal Hypoxemia and Left Ventricular Ejection Fraction in Congestive Heart Failure Patients. Sleep Disord 2010; 29 Romer LM, Polkey MI. Exercise-induced respiratory muscle fatigue: implications for performance. J Appl Physiol 2008; 104: 879-888 30 Sheel AW, Derchak PA, Morgan BJ et al. Fatiguing inspiratory muscle work causes reflex reduction in resting leg blood flow in humans. J Physiol 2001; 537: 277-289 31 Stickland MK, Smith CA, Soriano BJ et al. Sympathetic restraint of muscle blood flow during hypoxic exercise. AJP Regul Integr Comp Physiol 2009; 296: R1538-R1546 32 Verges S, Bachasson D et al. Effect of acute hypoxia on respiratory muscle fatigue in healthy humans. Respir Res 2010; 11: 109-109 33 Yoshizawa M, Shimizu-Okuyama S, Kagaya A. Transient increase in femoral arterial blood flow to the contralateral non-exercising limb during one-legged exercise. Eur J Appl Physiol 2008; 103: 509-514