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Published in: European Journal of Applied Physiology 5/2012

01-05-2012 | Original Article

Skeletal muscle reoxygenation after high-intensity exercise in mitochondrial myopathy

Authors: Daniela M. Bravo, Ana Cristina Gimenes, Rúbia B. Nascimento, Eloara V. M. Ferreira, Ana Cristina B. Siqueira, Ethiane D. S. Meda, J. Alberto Neder, Luiz Eduardo Nery

Published in: European Journal of Applied Physiology | Issue 5/2012

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Abstract

This study addressed whether O2 delivery during recovery from high-intensity, supra-gas exchange threshold exercise would be matched to O2 utilization at the microvascular level in patients with mitochondrial myopathy (MM). Off-exercise kinetics of (1) pulmonary O2 uptake \( (\dot{V}{\text{O}}_{2} {\text{p}}), \) (2) an index of fractional O2 extraction by near-infrared spectroscopy (Δ[deoxy-Hb + Mb]) in the vastus lateralis and (3) cardiac output (Q T ) by impedance cardiography were assessed in 12 patients with biopsy-proven MM (chronic progressive external ophthalmoplegia) and 12 age- and gender-matched controls. Kinetics of \( \dot{V}{\text{O}}_{2} {\text{p}} \) were significantly slower in patients than controls (τ = 53.8 ± 16.5 vs. 38.8 ± 7.6 s, respectively; p < 0.05). Q T , however, declined at similar rates (τ = 64.7 ± 18.8 vs. 73.0 ± 21.6 s; p > 0.05) being typically slower than \( \dot{V}{\text{O}}_{2} {\text{p}} \) in both groups. Importantly, Δ[deoxy-Hb + Mb] dynamics (MRT) were equal to, or faster than, \( \tau \dot{V}{\text{O}}_{2} {\text{p}} \) in patients and controls, respectively. In fact, there were no between-group differences in \( \tau \dot{V}{\text{O}}_{2} {\text{p}} \)/MRTΔ[deoxy-Hb + Mb] (1.1 ± 0.4 vs. 1.0 ± 0.2, p > 0.05) thereby indicating similar rates of microvascular O2 delivery. These data indicate that the slower rate of recovery of muscle metabolism after high-intensity exercise is not related to impaired microvascular O2 delivery in patients with MM. This phenomenon, therefore, seems to reflect the intra-myocyte abnormalities that characterize this patient population.
Literature
go back to reference Baecke JA, Burema J, Frijters JER (1982) A short questionnaire for the measurement of habitual physical activity in epidemiological studies. Am J Clin Nutr 36(5):936–942PubMed Baecke JA, Burema J, Frijters JER (1982) A short questionnaire for the measurement of habitual physical activity in epidemiological studies. Am J Clin Nutr 36(5):936–942PubMed
go back to reference Bank W, Chance B (1997) Diagnosis of defects in oxidative muscle metabolism by non-invasive tissue oximetry. Mol Cell Biochem 174:7–10PubMedCrossRef Bank W, Chance B (1997) Diagnosis of defects in oxidative muscle metabolism by non-invasive tissue oximetry. Mol Cell Biochem 174:7–10PubMedCrossRef
go back to reference Beaver WL, Wasserman K, Whipp BJA (1986) New method for detecting the anaerobic threshold by gas exchange. J Appl Physiol 60:2020–2027PubMed Beaver WL, Wasserman K, Whipp BJA (1986) New method for detecting the anaerobic threshold by gas exchange. J Appl Physiol 60:2020–2027PubMed
go back to reference Behnke BJ, Ferreira LF, McDonough PJ, Musch TI, Poole DC (2009) Recovery dynamics of skeletal muscle oxygen uptake during the exercise off-transient. Respir Physiol Neurobiol 168(3):254–260PubMedCrossRef Behnke BJ, Ferreira LF, McDonough PJ, Musch TI, Poole DC (2009) Recovery dynamics of skeletal muscle oxygen uptake during the exercise off-transient. Respir Physiol Neurobiol 168(3):254–260PubMedCrossRef
go back to reference Borghi-Silva A, Oliveira CC, Carrascosa C, Maia J, Berton DC, Queiroga F Jr, Ferreira EM, Almeida DR, Nery LE, Neder JA (2008) Respiratory muscle unloading improves leg muscle oxygenation during exercise in patients with COPD. Thorax 63(10):910–915PubMedCrossRef Borghi-Silva A, Oliveira CC, Carrascosa C, Maia J, Berton DC, Queiroga F Jr, Ferreira EM, Almeida DR, Nery LE, Neder JA (2008) Respiratory muscle unloading improves leg muscle oxygenation during exercise in patients with COPD. Thorax 63(10):910–915PubMedCrossRef
go back to reference Burnley M, Jones AM, Carter H, Doust JH (2000) Effects of prior heavy exercise on phase II pulmonary oxygen uptake kinetics during heavy exercise. J Appl Physiol 89:1387–1396PubMed Burnley M, Jones AM, Carter H, Doust JH (2000) Effects of prior heavy exercise on phase II pulmonary oxygen uptake kinetics during heavy exercise. J Appl Physiol 89:1387–1396PubMed
go back to reference Charloux A, Lonsdorfer-Wolf E, Richard R, Lampert E, Oswald-Mammosser M, Mettauer B, Geny B, Lonsdorfer J (2000) A new impedance cardiograph device for the non-invasive evaluation of cardiac output at rest and during exercise: comparison with the “direct” Fick method. Eur J Appl Physiol 82:313–320PubMedCrossRef Charloux A, Lonsdorfer-Wolf E, Richard R, Lampert E, Oswald-Mammosser M, Mettauer B, Geny B, Lonsdorfer J (2000) A new impedance cardiograph device for the non-invasive evaluation of cardiac output at rest and during exercise: comparison with the “direct” Fick method. Eur J Appl Physiol 82:313–320PubMedCrossRef
go back to reference Cleuziou C, Perrey S, Borrani F, Lecoq AM, Candau R, Courteix D, Obert P (2004) Dynamic responses of O2 uptake at the onset and end of exercise in trained subjects. Can J Appl Physiol 28(4):630–641CrossRef Cleuziou C, Perrey S, Borrani F, Lecoq AM, Candau R, Courteix D, Obert P (2004) Dynamic responses of O2 uptake at the onset and end of exercise in trained subjects. Can J Appl Physiol 28(4):630–641CrossRef
go back to reference DeLorey DS, Kowalchuk JM, Paterson DH (2003) Relationship between pulmonary O2 uptake kinetics and muscle deoxygenation during moderate-intensity exercise. J Appl Physiol 95(1):113–120PubMed DeLorey DS, Kowalchuk JM, Paterson DH (2003) Relationship between pulmonary O2 uptake kinetics and muscle deoxygenation during moderate-intensity exercise. J Appl Physiol 95(1):113–120PubMed
go back to reference DeLorey DS, Kowalchuk JM, Paterson DH (2005) Adaptation of pulmonary O2 uptake kinetics and muscle deoxygenation at the onset of heavy-intensity exercise in young and older adults. J Appl Physiol 98:1697–1704PubMedCrossRef DeLorey DS, Kowalchuk JM, Paterson DH (2005) Adaptation of pulmonary O2 uptake kinetics and muscle deoxygenation at the onset of heavy-intensity exercise in young and older adults. J Appl Physiol 98:1697–1704PubMedCrossRef
go back to reference Ellsworth ML, Ellis CG, Goldman D, Stephenson AH, Dietrich HH, Sprague RS (2009) Erythrocytes: oxygen sensors and modulators of vascular tone. Physiology 24:107–116PubMedCrossRef Ellsworth ML, Ellis CG, Goldman D, Stephenson AH, Dietrich HH, Sprague RS (2009) Erythrocytes: oxygen sensors and modulators of vascular tone. Physiology 24:107–116PubMedCrossRef
go back to reference Ferrari M, Mottola L, Quaresima V (2004) Principles, techniques, and limitations of near infrared spectroscopy. Can J Appl Physiol 29:463–487PubMedCrossRef Ferrari M, Mottola L, Quaresima V (2004) Principles, techniques, and limitations of near infrared spectroscopy. Can J Appl Physiol 29:463–487PubMedCrossRef
go back to reference Ferreira LF, Harper AJ, Townsend DK, Lutjemeier BJ, Barstow TJ (2005) Kinetics of estimated human muscle capillary blood flow during recovery from exercise. Exp Physiol 90(5):715–726 Ferreira LF, Harper AJ, Townsend DK, Lutjemeier BJ, Barstow TJ (2005) Kinetics of estimated human muscle capillary blood flow during recovery from exercise. Exp Physiol 90(5):715–726
go back to reference Grassi B, Poole DC, Richardson RS, Knight DR, Erickson BK, Wagner PD (1996) Muscle O2 uptake kinetics in humans: implications for metabolic control. J Appl Physiol 80:988–998PubMed Grassi B, Poole DC, Richardson RS, Knight DR, Erickson BK, Wagner PD (1996) Muscle O2 uptake kinetics in humans: implications for metabolic control. J Appl Physiol 80:988–998PubMed
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 Grassi B, Marzorati M, Lanfranconi F, Ferri A, Longaretti M, Stucchi A, Vago P, Marconi C, Morandi L (2007) Impaired oxygen extraction in metabolic myopathies: detection and quantification by near-infrared spectroscopy. Muscle Nerve 35:510–520PubMedCrossRef Grassi B, Marzorati M, Lanfranconi F, Ferri A, Longaretti M, Stucchi A, Vago P, Marconi C, Morandi L (2007) Impaired oxygen extraction in metabolic myopathies: detection and quantification by near-infrared spectroscopy. Muscle Nerve 35:510–520PubMedCrossRef
go back to reference Grassi B, Porcelli S, Marzorati M, Lanfranconi F, Vago P, Marconi C, Morandi L (2009) Metabolic myopathies: functional evaluation by analysis of oxygen uptake kinetics. Med Sci Sports Exerc 41(12):2120–2127PubMedCrossRef Grassi B, Porcelli S, Marzorati M, Lanfranconi F, Vago P, Marconi C, Morandi L (2009) Metabolic myopathies: functional evaluation by analysis of oxygen uptake kinetics. Med Sci Sports Exerc 41(12):2120–2127PubMedCrossRef
go back to reference Harper AJ, Ferreira LF, Lutjemeier BJ, Townsend DK, Barstow TJ (2008) Matching of blood flow to metabolic rate during recovery from moderate exercise in humans. Exp Physiol 93(10):1118–1125PubMedCrossRef Harper AJ, Ferreira LF, Lutjemeier BJ, Townsend DK, Barstow TJ (2008) Matching of blood flow to metabolic rate during recovery from moderate exercise in humans. Exp Physiol 93(10):1118–1125PubMedCrossRef
go back to reference Harris RC, Edwards RHT, Hultman E, Nordesjo LO, Nylind B, Sahlin K (1976) The time course of phosphorylcreatine resynthesis during recovery of the quadriceps muscle in man. Pfluegers Arch 367:137–142CrossRef Harris RC, Edwards RHT, Hultman E, Nordesjo LO, Nylind B, Sahlin K (1976) The time course of phosphorylcreatine resynthesis during recovery of the quadriceps muscle in man. Pfluegers Arch 367:137–142CrossRef
go back to reference Hughson RL, Tschakovsky ME, Houston ME (2001) Regulation of oxygen consumption at the onset of exercise. Exerc Sport Sci Rev 29:129–133PubMedCrossRef Hughson RL, Tschakovsky ME, Houston ME (2001) Regulation of oxygen consumption at the onset of exercise. Exerc Sport Sci Rev 29:129–133PubMedCrossRef
go back to reference Jensen TD, Kazemi-Esfarjani P, Skomorowska E, Vissing J (2002) A forearm exercise screening test for mitochondrial myopathy. Neurology 58:1533–1538PubMed Jensen TD, Kazemi-Esfarjani P, Skomorowska E, Vissing J (2002) A forearm exercise screening test for mitochondrial myopathy. Neurology 58:1533–1538PubMed
go back to reference Jeppesen TD, Quistorff B, Wibrand F, Vissing J (2007) 31P-MRS of skeletal muscle is not a sensitive diagnostic test for mitochondrial myopathy. J Neurol 254(1):29–37PubMedCrossRef Jeppesen TD, Quistorff B, Wibrand F, Vissing J (2007) 31P-MRS of skeletal muscle is not a sensitive diagnostic test for mitochondrial myopathy. J Neurol 254(1):29–37PubMedCrossRef
go back to reference Kemp GJ, Taylor DJ, Thompson CH, Hauds LJ, Rajagopalan B, Styles P, Radda GK (1993) Quantitative analysis by 31P magnetic resonance spectroscopy of abnormal mitochondrial oxidation in skeletal muscle during recovery from exercise. NMR Biomed 6(5):302–310PubMedCrossRef Kemp GJ, Taylor DJ, Thompson CH, Hauds LJ, Rajagopalan B, Styles P, Radda GK (1993) Quantitative analysis by 31P magnetic resonance spectroscopy of abnormal mitochondrial oxidation in skeletal muscle during recovery from exercise. NMR Biomed 6(5):302–310PubMedCrossRef
go back to reference Kemps HM, Thijssen EJ, Schep G, Sleutjes BT, De Vries WR, Hoogeveen AR, Wijn PF, Doevendans PA (2008) Evaluation of two methods for continuous cardiac output assessment during exercise in chronic heart failure patients. J Appl Physiol 105(6):1822–1829PubMedCrossRef Kemps HM, Thijssen EJ, Schep G, Sleutjes BT, De Vries WR, Hoogeveen AR, Wijn PF, Doevendans PA (2008) Evaluation of two methods for continuous cardiac output assessment during exercise in chronic heart failure patients. J Appl Physiol 105(6):1822–1829PubMedCrossRef
go back to reference Kemps HM, Prompers JJ, Wessels B, De Vries WR, Zonderland ML, Thijssen EJ, Nicolay K, Schep G, Doevendans PA (2009) Skeletal muscle metabolic recovery following submaximal exercise in chronic heart failure is limited more by O2 delivery than O2 utilization. Clin Sci 26 118(3):203–210CrossRef Kemps HM, Prompers JJ, Wessels B, De Vries WR, Zonderland ML, Thijssen EJ, Nicolay K, Schep G, Doevendans PA (2009) Skeletal muscle metabolic recovery following submaximal exercise in chronic heart failure is limited more by O2 delivery than O2 utilization. Clin Sci 26 118(3):203–210CrossRef
go back to reference Koga S, Poole DC, Ferreira LF, Whipp BJ, Kondo N, Saitoh T, Ohmae E, Barstow TJ (2007) Spatial heterogeneity of quadriceps muscle deoxygenation kinetics during cycle exercise. J Appl Physiol 103:2049–2056PubMedCrossRef Koga S, Poole DC, Ferreira LF, Whipp BJ, Kondo N, Saitoh T, Ohmae E, Barstow TJ (2007) Spatial heterogeneity of quadriceps muscle deoxygenation kinetics during cycle exercise. J Appl Physiol 103:2049–2056PubMedCrossRef
go back to reference MacDonald MJ, Naylor HL, Tschakovsky ME, Hughson RL (2001) Peripheral circulatory factors limit rate of increase in muscle O2 uptake at onset of heavy exercise. J Appl Physiol 90:83–89PubMed MacDonald MJ, Naylor HL, Tschakovsky ME, Hughson RL (2001) Peripheral circulatory factors limit rate of increase in muscle O2 uptake at onset of heavy exercise. J Appl Physiol 90:83–89PubMed
go back to reference Matsushita K, Homma S, Okada E (1998) Influence of adipose tissue on muscle oxygenation measurement with NIRS instrument. Proc SPIE 3194:151–165CrossRef Matsushita K, Homma S, Okada E (1998) Influence of adipose tissue on muscle oxygenation measurement with NIRS instrument. Proc SPIE 3194:151–165CrossRef
go back to reference McDonough P, Behnke BJ, Musch TI, Poole DC (2004) Recovery of microvascular PO2 during the exercise off-transient in muscles of different fiber type. J Appl Physiol 96:1039–1044PubMedCrossRef McDonough P, Behnke BJ, Musch TI, Poole DC (2004) Recovery of microvascular PO2 during the exercise off-transient in muscles of different fiber type. J Appl Physiol 96:1039–1044PubMedCrossRef
go back to reference McMahon S, Jenkins D (2002) Factors affecting the rate of phosphocreatine resynthesis following intense exercise. Sports Med 32(12):761–784PubMedCrossRef McMahon S, Jenkins D (2002) Factors affecting the rate of phosphocreatine resynthesis following intense exercise. Sports Med 32(12):761–784PubMedCrossRef
go back to reference Moraes CT, DiMauro S, Zeviani M, Lombes A, Shanske S, Miranda AF, Nakase H, Bonilla E, Werneck LC, Servidei S, Nonaka I, Koga Y, Spiro AJ, Brownell AKW, Schmidt B, Schotland DL, Zupanc M, DeVivo DC, Schon EA, Rowland LP (1989) Mitochondrial DNA deletions in progressive external ophthalmoplegia and Kearns–Sayre syndrome. N Engl J Med 320:1293–1299PubMedCrossRef Moraes CT, DiMauro S, Zeviani M, Lombes A, Shanske S, Miranda AF, Nakase H, Bonilla E, Werneck LC, Servidei S, Nonaka I, Koga Y, Spiro AJ, Brownell AKW, Schmidt B, Schotland DL, Zupanc M, DeVivo DC, Schon EA, Rowland LP (1989) Mitochondrial DNA deletions in progressive external ophthalmoplegia and Kearns–Sayre syndrome. N Engl J Med 320:1293–1299PubMedCrossRef
go back to reference Ozyener F, Rossiter HB, Ward SA, Whipp BJ (2001) Influence of exercise intensity on the on- and off-transient kinetics of pulmonary oxygen uptake in humans. J Physiol 533(3):891–902PubMedCrossRef Ozyener F, Rossiter HB, Ward SA, Whipp BJ (2001) Influence of exercise intensity on the on- and off-transient kinetics of pulmonary oxygen uptake in humans. J Physiol 533(3):891–902PubMedCrossRef
go back to reference Perrey S, Candau R, Borrani F, Millet GY, Rouillon JD (2002) Recovery kinetics of oxygen uptake following severe-intensity exercise in runners. J Sports Med Phys Fit 42(4):381–388 Perrey S, Candau R, Borrani F, Millet GY, Rouillon JD (2002) Recovery kinetics of oxygen uptake following severe-intensity exercise in runners. J Sports Med Phys Fit 42(4):381–388
go back to reference Rossiter HB, Ward SA, Kowalchuk JM, Howe FA, Griffiths JR, Whipp BJ (2002) Dynamic asymmetry of phosphocreatine concentration and O2 uptake between the on- and off-transients of moderate and high-intensity exercise in humans. J Physiol 541(3):991–1002PubMedCrossRef Rossiter HB, Ward SA, Kowalchuk JM, Howe FA, Griffiths JR, Whipp BJ (2002) Dynamic asymmetry of phosphocreatine concentration and O2 uptake between the on- and off-transients of moderate and high-intensity exercise in humans. J Physiol 541(3):991–1002PubMedCrossRef
go back to reference Sakuta R, Nonaka I (1989) Vascular involvement in mitochondrial myopathy. Ann Neurol 25(6):594–601PubMedCrossRef Sakuta R, Nonaka I (1989) Vascular involvement in mitochondrial myopathy. Ann Neurol 25(6):594–601PubMedCrossRef
go back to reference Scelsi R (1992) Morphometric analysis of skeletal muscle fibres and capillaries in mitochondrial myopathies. Path Res Pract 188:607–611PubMedCrossRef Scelsi R (1992) Morphometric analysis of skeletal muscle fibres and capillaries in mitochondrial myopathies. Path Res Pract 188:607–611PubMedCrossRef
go back to reference Sprague RS, Hanson MS, Achilleus D, Bowles EA, Stephenson AH, Sridharan M, Adderley S, Procknow J, Ellsworth ML (2009) Rabbit erythrocytes release ATP and dilate skeletal muscle arterioles in the presence of reduced oxygen tension. Pharmacol Rep 61:183–190PubMed Sprague RS, Hanson MS, Achilleus D, Bowles EA, Stephenson AH, Sridharan M, Adderley S, Procknow J, Ellsworth ML (2009) Rabbit erythrocytes release ATP and dilate skeletal muscle arterioles in the presence of reduced oxygen tension. Pharmacol Rep 61:183–190PubMed
go back to reference Taivassalo T, Abbott A, Wyrick P, Haller RG (2002) Venous oxygen levels during aerobic forearm exercise: an index of impaired oxidative metabolism in mitochondrial myopathy. Ann Neurol 51:38–44PubMedCrossRef Taivassalo T, Abbott A, Wyrick P, Haller RG (2002) Venous oxygen levels during aerobic forearm exercise: an index of impaired oxidative metabolism in mitochondrial myopathy. Ann Neurol 51:38–44PubMedCrossRef
go back to reference Taivassalo T, Jensen TD, Kennaway N, DiMauro S, Vissing J, Haller RG (2003) The spectrum of exercise tolerance in mitochondrial myopathies: a study of 40 patients. Brain 126:413–423PubMedCrossRef Taivassalo T, Jensen TD, Kennaway N, DiMauro S, Vissing J, Haller RG (2003) The spectrum of exercise tolerance in mitochondrial myopathies: a study of 40 patients. Brain 126:413–423PubMedCrossRef
go back to reference Tarnopolski M (2004) Exercise testing as a diagnostic entity in mitochondrial myopathies. Mitochondrion 4:529–542CrossRef Tarnopolski M (2004) Exercise testing as a diagnostic entity in mitochondrial myopathies. Mitochondrion 4:529–542CrossRef
go back to reference Tarnopolski M, Raha S (2005) Mitochondrial myopathies: diagnosis, exercise intolerance, and treatment options. Med Sci Sports Exerc 37:2086–2093CrossRef Tarnopolski M, Raha S (2005) Mitochondrial myopathies: diagnosis, exercise intolerance, and treatment options. Med Sci Sports Exerc 37:2086–2093CrossRef
go back to reference Tonelli AR, Alnuaimat H, Li N, Carrie R, Mubarak KK (2011) Value of Impedance Cardiography in Patients Studied for Pulmonary Hypertension. Lung. doi:10.1007/s00408-011-9299-y Tonelli AR, Alnuaimat H, Li N, Carrie R, Mubarak KK (2011) Value of Impedance Cardiography in Patients Studied for Pulmonary Hypertension. Lung. doi:10.​1007/​s00408-011-9299-y
go back to reference Trenell MI, Sue CM, Thompson CH, Kemp GJ (2007) Supplemental oxygen and muscle metabolism in mitochondrial myopathy patients. Eur J Appl Physiol 99:541–547PubMedCrossRef Trenell MI, Sue CM, Thompson CH, Kemp GJ (2007) Supplemental oxygen and muscle metabolism in mitochondrial myopathy patients. Eur J Appl Physiol 99:541–547PubMedCrossRef
go back to reference Van Beekvelt MC, Colier WN, Wevers RA, Van Engelen BG (1999a) Quantitative measurement of oxygen consumption and forearm blood flow in patients with mitochondrial myopathies. Adv Exp Med Biol 471:313–319PubMedCrossRef Van Beekvelt MC, Colier WN, Wevers RA, Van Engelen BG (1999a) Quantitative measurement of oxygen consumption and forearm blood flow in patients with mitochondrial myopathies. Adv Exp Med Biol 471:313–319PubMedCrossRef
go back to reference Van Beekvelt MC, Van Engelen BG, Wevers RA, Colier WN (1999b) Quantitative near-infrared spectroscopy discriminates between mitochondrial myopathies and normal muscle. Ann Neurol 46(4):667–670PubMedCrossRef Van Beekvelt MC, Van Engelen BG, Wevers RA, Colier WN (1999b) Quantitative near-infrared spectroscopy discriminates between mitochondrial myopathies and normal muscle. Ann Neurol 46(4):667–670PubMedCrossRef
go back to reference Van Beekvelt MC, Van Engelen BG, Wevers RA, Colier WN (2002) Near-infrared spectroscopy in chronic progressive external ophthalmoplegia: adipose tissue thickness confounds decreased muscle oxygen consumption. Ann Neurol 51(2):272–273PubMedCrossRef Van Beekvelt MC, Van Engelen BG, Wevers RA, Colier WN (2002) Near-infrared spectroscopy in chronic progressive external ophthalmoplegia: adipose tissue thickness confounds decreased muscle oxygen consumption. Ann Neurol 51(2):272–273PubMedCrossRef
go back to reference Whipp BJ, Davis JA, Torres F, Wasserman K (1981) A test to determine parameters of aerobic function during exercise. J Appl Physiol 50:217–221PubMed Whipp BJ, Davis JA, Torres F, Wasserman K (1981) A test to determine parameters of aerobic function during exercise. J Appl Physiol 50:217–221PubMed
go back to reference Wolin MS (2009) Reactive oxygen species and the control of vascular function. Am J Physiol Heart Circ Physiol 296(3):H539–H549PubMedCrossRef Wolin MS (2009) Reactive oxygen species and the control of vascular function. Am J Physiol Heart Circ Physiol 296(3):H539–H549PubMedCrossRef
Metadata
Title
Skeletal muscle reoxygenation after high-intensity exercise in mitochondrial myopathy
Authors
Daniela M. Bravo
Ana Cristina Gimenes
Rúbia B. Nascimento
Eloara V. M. Ferreira
Ana Cristina B. Siqueira
Ethiane D. S. Meda
J. Alberto Neder
Luiz Eduardo Nery
Publication date
01-05-2012
Publisher
Springer-Verlag
Published in
European Journal of Applied Physiology / Issue 5/2012
Print ISSN: 1439-6319
Electronic ISSN: 1439-6327
DOI
https://doi.org/10.1007/s00421-011-2136-4

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