Oxygen Uptake Kinetics in Children and Adolescents: A Review

被引:60
作者
Armstrong, Neil [1 ]
Barker, Alan R. [1 ]
机构
[1] Univ Exeter, Sch Sport & Hlth Sci, Childrens Hlth & Exercise Res Ctr, Exeter EX1 2LU, Devon, England
关键词
PULMONARY O-2 UPTAKE; MODERATE-INTENSITY EXERCISE; P-31-MAGNETIC RESONANCE SPECTROSCOPY; HIGH-ENERGY PHOSPHATES; HEART-RATE RESPONSES; MUSCLE-FIBER TYPE; SKELETAL-MUSCLE; PHOSPHOCREATINE KINETICS; ENZYME-ACTIVITIES; UPTAKE DYNAMICS;
D O I
10.1123/pes.21.2.130
中图分类号
R72 [儿科学];
学科分类号
100202 [儿科学];
摘要
The Pulmonary oxygen uptake (pVO(2)) kinetic response at the onset of exercise provides a noninvasive window into the metabolic activity of the muscle and a valuable means of increasing our understanding of developmental muscle metabolism. However, to date only limited research has been devoted to investigating the pVO(2) kinetic response during exercise in children and adolescents. From the rigorous studies that have been conducted, both age- and sex-related differences have been identified. Specifically, children display a faster exponential rise in the phase II pVO(2) kinetics, which are purported to reflect the rise in muscle O-2 consumption, during moderate, heavy and very heavy intensity exercise compared with adults. Furthermore, for heavy and very heavy exercise, the O-2 cost of exercise is higher for the exponential phase and the magnitude of the pVO(2) slow component is smaller in young children. Sex-related differences have been identified during heavy, but not moderate exercise, with prepubertal boys displaying a faster exponential phase II pVO(2) kinetic response and a smaller pVO(2) slow component compared with prepubertal girls. The mechanisms underlying these differences are currently poorly understood, and form the basis for future research in this area. However, it is hypothesized that an age-related modulation of the muscle phosphate feedback controllers to signal an increased rate of oxidative phosphorylation and/or altered muscle fiber type recruitment strategies have the potential to play an important role. Overall, the data support the view that at the onset of exercise children have an enhanced potential for oxidative metabolism in the myocyte compared with adults.
引用
收藏
页码:130 / 147
页数:18
相关论文
共 69 条
[1]
OXYGEN-UPTAKE DYNAMICS DURING HIGH-INTENSITY EXERCISE IN CHILDREN AND ADULTS [J].
ARMON, Y ;
COOPER, DM ;
FLORES, R ;
ZANCONATO, S ;
BARSTOW, TJ .
JOURNAL OF APPLIED PHYSIOLOGY, 1991, 70 (02) :841-848
[2]
Armstrong N, 1994, Exerc Sport Sci Rev, V22, P435
[3]
Reliability of 31P-magnetic resonance spectroscopy during an exhaustive incremental exercise test in children [J].
Barker, Alan ;
Welsman, Joanne ;
Welford, Deborah ;
Fulford, Jonathan ;
Williams, Craig ;
Armstrong, Neil .
EUROPEAN JOURNAL OF APPLIED PHYSIOLOGY, 2006, 98 (06) :556-565
[4]
Muscle phosphocreatine and pulmonary oxygen uptake kinetics in children at the onset and offset of moderate intensity exercise [J].
Barker, Alan R. ;
Welsman, Joanne R. ;
Fulford, Jonathan ;
Welford, Deborah ;
Williams, Craig A. ;
Armstrong, Neil .
EUROPEAN JOURNAL OF APPLIED PHYSIOLOGY, 2008, 102 (06) :727-738
[5]
Barstow T.J., 2005, Oxygen Uptake Kinetics in Sport, Exercise and Medicine, P331
[6]
MODULATION OF MUSCLE AND PULMONARY O-2 UPTAKES BY CIRCULATORY DYNAMICS DURING EXERCISE [J].
BARSTOW, TJ ;
LAMARRA, N ;
WHIPP, BJ .
JOURNAL OF APPLIED PHYSIOLOGY, 1990, 68 (03) :979-989
[7]
LINEAR AND NONLINEAR CHARACTERISTICS OF OXYGEN-UPTAKE KINETICS DURING HEAVY EXERCISE [J].
BARSTOW, TJ ;
MOLE, PA .
JOURNAL OF APPLIED PHYSIOLOGY, 1991, 71 (06) :2099-2106
[8]
MUSCLE ENERGETICS AND PULMONARY OXYGEN-UPTAKE KINETICS DURING MODERATE EXERCISE [J].
BARSTOW, TJ ;
BUCHTHAL, S ;
ZANCONATO, S ;
COOPER, DM .
JOURNAL OF APPLIED PHYSIOLOGY, 1994, 77 (04) :1742-1749
[9]
Influence of muscle fiber type and pedal frequency on oxygen uptake kinetics of heavy exercise [J].
Barstow, TJ ;
Jones, AM ;
Nguyen, PH ;
Casaburi, R .
JOURNAL OF APPLIED PHYSIOLOGY, 1996, 81 (04) :1642-1650
[10]
Dynamics of oxygen uptake following exercise onset in rat skeletal muscle [J].
Behnke, BJ ;
Barstow, TJ ;
Kindig, CA ;
McDonough, P ;
Musch, TI ;
Poole, DC .
RESPIRATORY PHYSIOLOGY & NEUROBIOLOGY, 2002, 133 (03) :229-239