Skip to main content
Top
Published in: European Journal of Applied Physiology 5/2010

01-07-2010 | Original Article

Influence of cerebral and muscle oxygenation on repeated-sprint ability

Authors: Kurt J. Smith, François Billaut

Published in: European Journal of Applied Physiology | Issue 5/2010

Login to get access

Abstract

The study examined the influence of cerebral (prefrontal cortex) and muscle (vastus lateralis) oxygenation on the ability to perform repeated, cycling sprints. Thirteen team-sport athletes performed ten, 10-s sprints (with 30 s of rest) under normoxic (FIO2 0.21) and acute hypoxic (FIO2 0.13) conditions in a randomised, single-blind fashion and crossover design. Mechanical work was calculated and arterial O2 saturation (SpO2) was estimated via pulse oximetry for every sprint. Cerebral and muscle oxy-(O2Hb), deoxy-(HHb), and total haemoglobin (THb) were monitored continuously by near-infrared spectroscopy. Compared with normoxia, hypoxia induced larger decrements in SpO2 and work (11.6 and 7.6%, respectively; P < 0.05). In the muscle, we observed a fairly constant level of deoxygenation across sprints, with no effect of the condition. In normoxia, regional cerebral oxygenation increased during the first two sprints and slightly fluctuated thereafter. In contrast, this initial cerebral hyper-oxygenation was attenuated in hypoxia. Changes in [O2Hb] and [HHb] occurred earlier and were larger in hypoxia compared with normoxia (P < 0.05), while regional blood volume (Δ[THb]) remained unaffected by the condition. Changes in cerebral [HHb] and mechanical work were strongly correlated in normoxia and hypoxia (R 2 = 0.81 and R 2 = 0.85, respectively; P < 0.05), although the slope of this relationship differed (normoxia, −351.3 ± 183.3 vs. hypoxia, −442.4 ± 227.2; P < 0.05). The results of this NIRS study show that O2 availability influences prefrontal cortex, but not muscle, oxygenation during repeated, short sprints. By using a hypoxia paradigm, the study suggests that cerebral oxygenation contributes to the impairment of repeated-sprint ability.
Literature
go back to reference Ainslie PN, Barach A, Cummings KJ, Murrell C, Hamlin M, Hellemans J (2007) Cardiorespiratory and cerebrovascular responses to acute poikilocapnic hypoxia following intermittent and continuous exposure to hypoxia in humans. J Appl Physiol 102:1953–1961CrossRefPubMed Ainslie PN, Barach A, Cummings KJ, Murrell C, Hamlin M, Hellemans J (2007) Cardiorespiratory and cerebrovascular responses to acute poikilocapnic hypoxia following intermittent and continuous exposure to hypoxia in humans. J Appl Physiol 102:1953–1961CrossRefPubMed
go back to reference Amann M, Kayser B (2009) Nervous system function during exercise in hypoxia. High Alt Med Biol 10:149–164CrossRefPubMed Amann M, Kayser B (2009) Nervous system function during exercise in hypoxia. High Alt Med Biol 10:149–164CrossRefPubMed
go back to reference Amann M, Romer LM, Subudhi AW, Pegelow DF, Dempsey JA (2007) Severity of arterial hypoxaemia affects the relative contributions of peripheral muscle fatigue to exercise performance in healthy humans. J Physiol 581:389–403CrossRefPubMed Amann M, Romer LM, Subudhi AW, Pegelow DF, Dempsey JA (2007) Severity of arterial hypoxaemia affects the relative contributions of peripheral muscle fatigue to exercise performance in healthy humans. J Physiol 581:389–403CrossRefPubMed
go back to reference Balsom PD, Gaitanos GC, Ekblom B, Sjodin B (1994) Reduced oxygen availability during high intensity intermittent exercise impairs performance. Acta Physiol Scand 152:279–285CrossRefPubMed Balsom PD, Gaitanos GC, Ekblom B, Sjodin B (1994) Reduced oxygen availability during high intensity intermittent exercise impairs performance. Acta Physiol Scand 152:279–285CrossRefPubMed
go back to reference Bigland-Ritchie BR, Dawson NJ, Johansson RS, Lippold OC (1986) Reflex origin for the slowing of motoneurone firing rates in fatigue of human voluntary contractions. J Physiol 379:451–459PubMed Bigland-Ritchie BR, Dawson NJ, Johansson RS, Lippold OC (1986) Reflex origin for the slowing of motoneurone firing rates in fatigue of human voluntary contractions. J Physiol 379:451–459PubMed
go back to reference Billaut F, Smith K (2009) Sex alters impact of repeated bouts of sprint exercise on neuromuscular activity in trained athletes. Appl Physiol Nutr Metab 34:689–699CrossRefPubMed Billaut F, Smith K (2009) Sex alters impact of repeated bouts of sprint exercise on neuromuscular activity in trained athletes. Appl Physiol Nutr Metab 34:689–699CrossRefPubMed
go back to reference Billaut F, Smith KJ (2010) Prolonged repeated-sprint ability is related to arterial O2 desaturation in man. Int J Sports Physiol Perform (in press) Billaut F, Smith KJ (2010) Prolonged repeated-sprint ability is related to arterial O2 desaturation in man. Int J Sports Physiol Perform (in press)
go back to reference Bishop D, Lawrence S, Spencer M (2003) Predictors of repeated-sprints ability in elite female hockey players. J Sci Med Sport 6:199–209CrossRefPubMed Bishop D, Lawrence S, Spencer M (2003) Predictors of repeated-sprints ability in elite female hockey players. J Sci Med Sport 6:199–209CrossRefPubMed
go back to reference Buchheit M, Cormie P, Abbiss CR, Ahmaidi S, Nosaka KK, Laursen PB (2009) Muscle deoxygenation during repeated sprint running: effect of active vs. passive recovery. Int J Sports Med 30:418–425CrossRefPubMed Buchheit M, Cormie P, Abbiss CR, Ahmaidi S, Nosaka KK, Laursen PB (2009) Muscle deoxygenation during repeated sprint running: effect of active vs. passive recovery. Int J Sports Med 30:418–425CrossRefPubMed
go back to reference Calbet JA, De Paz JA, Garatachea N, Cabeza de Vaca S, Chavarren J (2003) Anaerobic energy provision does not limit Wingate exercise performance in endurance-trained cyclists. J Appl Physiol 94:268–276 Calbet JA, De Paz JA, Garatachea N, Cabeza de Vaca S, Chavarren J (2003) Anaerobic energy provision does not limit Wingate exercise performance in endurance-trained cyclists. J Appl Physiol 94:268–276
go back to reference Calbet JA, Radegran G, Boushel R, Saltin B (2009) On the mechanisms that limit oxygen uptake during exercise in acute and chronic hypoxia: role of muscle mass. J Physiol 587:477–490CrossRefPubMed Calbet JA, Radegran G, Boushel R, Saltin B (2009) On the mechanisms that limit oxygen uptake during exercise in acute and chronic hypoxia: role of muscle mass. J Physiol 587:477–490CrossRefPubMed
go back to reference Chance B, Dait MT, Zhang C, Hamaoka T, Hagerman F (1992) Recovery from exercise-induced desaturation in the quadriceps muscles of elite competitive rowers. Am J Physiol 262:C766–C775PubMed Chance B, Dait MT, Zhang C, Hamaoka T, Hagerman F (1992) Recovery from exercise-induced desaturation in the quadriceps muscles of elite competitive rowers. Am J Physiol 262:C766–C775PubMed
go back to reference De Blasi RA, Cope M, Elwell C, Safoue F, Ferrari M (1993) Noninvasive measurement of human forearm oxygen consumption by near infrared spectroscopy. Eur J Appl Physiol Occup Physiol 67:20–25CrossRefPubMed De Blasi RA, Cope M, Elwell C, Safoue F, Ferrari M (1993) Noninvasive measurement of human forearm oxygen consumption by near infrared spectroscopy. Eur J Appl Physiol Occup Physiol 67:20–25CrossRefPubMed
go back to reference Dillon GH, Waldrop TG (1992) In vitro responses of caudal hypothalamic neurons to hypoxia and hypercapnia. Neuroscience 51:941–950CrossRefPubMed Dillon GH, Waldrop TG (1992) In vitro responses of caudal hypothalamic neurons to hypoxia and hypercapnia. Neuroscience 51:941–950CrossRefPubMed
go back to reference Duncan A, Meek JH, Clemence M, Elwell CE, Tyszczuk L, Cope M, Delpy DT (1995) Optical pathlength measurements on adult head, calf and forearm and the head of the newborn infant using phase resolved optical spectroscopy. Phys Med Biol 40:295–304CrossRefPubMed Duncan A, Meek JH, Clemence M, Elwell CE, Tyszczuk L, Cope M, Delpy DT (1995) Optical pathlength measurements on adult head, calf and forearm and the head of the newborn infant using phase resolved optical spectroscopy. Phys Med Biol 40:295–304CrossRefPubMed
go back to reference Duncan A, Meek JH, Clemence M, Elwell CE, Fallon P, Tyszczuk L, Cope M, Delpy DT (1996) Measurement of cranial optical path length as a function of age using phase resolved near infrared spectroscopy. Pediatr Res 39:889–894CrossRefPubMed Duncan A, Meek JH, Clemence M, Elwell CE, Fallon P, Tyszczuk L, Cope M, Delpy DT (1996) Measurement of cranial optical path length as a function of age using phase resolved near infrared spectroscopy. Pediatr Res 39:889–894CrossRefPubMed
go back to reference Esaki K, Hamaoka T, Radegran G, Boushel R, Hansen J, Katsumura T, Haga S, Mizuno M (2005) Association between regional quadriceps oxygenation and blood oxygen saturation during normoxic one-legged dynamic knee extension. Eur J Appl Physiol 95:361–370CrossRefPubMed Esaki K, Hamaoka T, Radegran G, Boushel R, Hansen J, Katsumura T, Haga S, Mizuno M (2005) Association between regional quadriceps oxygenation and blood oxygen saturation during normoxic one-legged dynamic knee extension. Eur J Appl Physiol 95:361–370CrossRefPubMed
go back to reference Ferrari M, Mottola L, Quaresima V (2004) Principles, techniques, and limitations of near infrared spectroscopy. Can J Appl Physiol 29:463–487PubMed Ferrari M, Mottola L, Quaresima V (2004) Principles, techniques, and limitations of near infrared spectroscopy. Can J Appl Physiol 29:463–487PubMed
go back to reference Gaitanos GC, Williams C, Boobis LH, Brooks S (1993) Human muscle metabolism during intermittent maximal exercise. J Appl Physiol 75:712–719PubMed Gaitanos GC, Williams C, Boobis LH, Brooks S (1993) Human muscle metabolism during intermittent maximal exercise. J Appl Physiol 75:712–719PubMed
go back to reference Gonzalez-Alonso J, Dalsgaard MK, Osada T, Volianitis S, Dawson EA, Yoshiga CC, Secher NH (2004) Brain and central haemodynamics and oxygenation during maximal exercise in humans. J Physiol 557:331–342CrossRefPubMed Gonzalez-Alonso J, Dalsgaard MK, Osada T, Volianitis S, Dawson EA, Yoshiga CC, Secher NH (2004) Brain and central haemodynamics and oxygenation during maximal exercise in humans. J Physiol 557:331–342CrossRefPubMed
go back to reference Grassi B, Pogliaghi S, Rampichini S, Quaresima V, Ferrari M, Marconi C, Cerretelli P (2003) Muscle oxygenation and pulmonary gas exchange kinetics during cycling exercise on-transitions in humans. J Appl Physiol 95:149–158PubMed Grassi B, Pogliaghi S, Rampichini S, Quaresima V, Ferrari M, Marconi C, Cerretelli P (2003) Muscle oxygenation and pulmonary gas exchange kinetics during cycling exercise on-transitions in humans. J Appl Physiol 95:149–158PubMed
go back to reference Hamlin MJ, Marshall HC, Hellemans J, Ainslie PN, Anglem N (2009) Effect of intermittent hypoxic training on 20 km time trial and 30 s anaerobic performance. Scand J Med Sci Sports Hamlin MJ, Marshall HC, Hellemans J, Ainslie PN, Anglem N (2009) Effect of intermittent hypoxic training on 20 km time trial and 30 s anaerobic performance. Scand J Med Sci Sports
go back to reference Leon-Carrion J, Damas-Lopez J, Martin-Rodriguez JF, Dominguez-Roldan JM, Murillo-Cabezas F, Barroso YMJM, Dominguez-Morales MR (2008) The hemodynamics of cognitive control: the level of concentration of oxygenated hemoglobin in the superior prefrontal cortex varies as a function of performance in a modified Stroop task. Behav Brain Res 193:248–256CrossRefPubMed Leon-Carrion J, Damas-Lopez J, Martin-Rodriguez JF, Dominguez-Roldan JM, Murillo-Cabezas F, Barroso YMJM, Dominguez-Morales MR (2008) The hemodynamics of cognitive control: the level of concentration of oxygenated hemoglobin in the superior prefrontal cortex varies as a function of performance in a modified Stroop task. Behav Brain Res 193:248–256CrossRefPubMed
go back to reference Matsushita KHS, Okada E (1998) Influence of adipose tissue on muscle oxygenation measurement with NIRS instrument. Proc SPIE 3194:159–165CrossRef Matsushita KHS, Okada E (1998) Influence of adipose tissue on muscle oxygenation measurement with NIRS instrument. Proc SPIE 3194:159–165CrossRef
go back to reference Mendez-Villanueva A, Hamer P, Bishop D (2007) Fatigue responses during repeated sprints matched for initial mechanical output. Med Sci Sports Exerc 39:2219–2225CrossRefPubMed Mendez-Villanueva A, Hamer P, Bishop D (2007) Fatigue responses during repeated sprints matched for initial mechanical output. Med Sci Sports Exerc 39:2219–2225CrossRefPubMed
go back to reference Nielsen HB, Boushel R, Madsen P, Secher NH (1999) Cerebral desaturation during exercise reversed by O2 supplementation. Am J Physiol 277:H1045–H1052PubMed Nielsen HB, Boushel R, Madsen P, Secher NH (1999) Cerebral desaturation during exercise reversed by O2 supplementation. Am J Physiol 277:H1045–H1052PubMed
go back to reference Nybo L, Rasmussen P (2007) Inadequate cerebral oxygen delivery and central fatigue during strenuous exercise. Exerc Sport Sci Rev 35:110–118CrossRefPubMed Nybo L, Rasmussen P (2007) Inadequate cerebral oxygen delivery and central fatigue during strenuous exercise. Exerc Sport Sci Rev 35:110–118CrossRefPubMed
go back to reference Racinais S, Bishop D, Denis R, Lattier G, Mendez-Villaneuva A, Perrey S (2007) Muscle deoxygenation and neural drive to the muscle during repeated sprint cycling. Med Sci Sports Exerc 39:268–274CrossRefPubMed Racinais S, Bishop D, Denis R, Lattier G, Mendez-Villaneuva A, Perrey S (2007) Muscle deoxygenation and neural drive to the muscle during repeated sprint cycling. Med Sci Sports Exerc 39:268–274CrossRefPubMed
go back to reference Romer LM, Haverkamp HC, Lovering AT, Pegelow DF, Dempsey JA (2006) Effect of exercise-induced arterial hypoxemia on quadriceps muscle fatigue in healthy humans. Am J Physiol Regul Integr Comp Physiol 290:R365–R375PubMed Romer LM, Haverkamp HC, Lovering AT, Pegelow DF, Dempsey JA (2006) Effect of exercise-induced arterial hypoxemia on quadriceps muscle fatigue in healthy humans. Am J Physiol Regul Integr Comp Physiol 290:R365–R375PubMed
go back to reference Romer LM, Haverkamp HC, Amann M, Lovering AT, Pegelow DF, Dempsey JA (2007) Effect of acute severe hypoxia on peripheral fatigue and endurance capacity in healthy humans. Am J Physiol Regul Integr Comp Physiol 292:R598–R606PubMed Romer LM, Haverkamp HC, Amann M, Lovering AT, Pegelow DF, Dempsey JA (2007) Effect of acute severe hypoxia on peripheral fatigue and endurance capacity in healthy humans. Am J Physiol Regul Integr Comp Physiol 292:R598–R606PubMed
go back to reference Shibuya K, Tanaka J, Kuboyama N, Murai S, Ogaki T (2004a) Cerebral cortex activity during supramaximal exhaustive exercise. J Sports Med Phys Fitness 44:215–219PubMed Shibuya K, Tanaka J, Kuboyama N, Murai S, Ogaki T (2004a) Cerebral cortex activity during supramaximal exhaustive exercise. J Sports Med Phys Fitness 44:215–219PubMed
go back to reference Shibuya K, Tanaka J, Kuboyama N, Ogaki T (2004b) Cerebral oxygenation during intermittent supramaximal exercise. Respir Physiol Neurobiol 140:165–172CrossRefPubMed Shibuya K, Tanaka J, Kuboyama N, Ogaki T (2004b) Cerebral oxygenation during intermittent supramaximal exercise. Respir Physiol Neurobiol 140:165–172CrossRefPubMed
go back to reference Smielewski P, Kirkpatrick P, Minhas P, Pickard JD, Czosnyka M (1995) Can cerebrovascular reactivity be measured with near-infrared spectroscopy? Stroke 26:2285–2292PubMed Smielewski P, Kirkpatrick P, Minhas P, Pickard JD, Czosnyka M (1995) Can cerebrovascular reactivity be measured with near-infrared spectroscopy? Stroke 26:2285–2292PubMed
go back to reference Subudhi AW, Dimmen AC, Roach RC (2007) Effects of acute hypoxia on cerebral and muscle oxygenation during incremental exercise. J Appl Physiol 103:177–183CrossRefPubMed Subudhi AW, Dimmen AC, Roach RC (2007) Effects of acute hypoxia on cerebral and muscle oxygenation during incremental exercise. J Appl Physiol 103:177–183CrossRefPubMed
go back to reference Subudhi AW, Miramon BR, Granger ME, Roach RC (2009) Frontal and motor cortex oxygenation during maximal exercise in normoxia and hypoxia. J Appl Physiol 106(4):1153−1158 Subudhi AW, Miramon BR, Granger ME, Roach RC (2009) Frontal and motor cortex oxygenation during maximal exercise in normoxia and hypoxia. J Appl Physiol 106(4):1153−1158
go back to reference Szubski C, Burtscher M, Loscher WN (2006) The effects of short-term hypoxia on motor cortex excitability and neuromuscular activation. J Appl Physiol 101:1673–1677CrossRefPubMed Szubski C, Burtscher M, Loscher WN (2006) The effects of short-term hypoxia on motor cortex excitability and neuromuscular activation. J Appl Physiol 101:1673–1677CrossRefPubMed
go back to reference Tran TK, Sailasuta N, Kreutzer U, Hurd R, Chung Y, Mole P, Kuno S, Jue T (1999) Comparative analysis of NMR and NIRS measurements of intracellular PO2 in human skeletal muscle. Am J Physiol 276:R1682–R1690PubMed Tran TK, Sailasuta N, Kreutzer U, Hurd R, Chung Y, Mole P, Kuno S, Jue T (1999) Comparative analysis of NMR and NIRS measurements of intracellular PO2 in human skeletal muscle. Am J Physiol 276:R1682–R1690PubMed
go back to reference Van Beekvelt MC, Colier WN, Wevers RA, Van Engelen BG (2001) Performance of near-infrared spectroscopy in measuring local O(2) consumption and blood flow in skeletal muscle. J Appl Physiol 90:511–519PubMed Van Beekvelt MC, Colier WN, Wevers RA, Van Engelen BG (2001) Performance of near-infrared spectroscopy in measuring local O(2) consumption and blood flow in skeletal muscle. J Appl Physiol 90:511–519PubMed
Metadata
Title
Influence of cerebral and muscle oxygenation on repeated-sprint ability
Authors
Kurt J. Smith
François Billaut
Publication date
01-07-2010
Publisher
Springer-Verlag
Published in
European Journal of Applied Physiology / Issue 5/2010
Print ISSN: 1439-6319
Electronic ISSN: 1439-6327
DOI
https://doi.org/10.1007/s00421-010-1444-4

Other articles of this Issue 5/2010

European Journal of Applied Physiology 5/2010 Go to the issue