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儿童与成人骨骼肌氧化能力的比较分析:一项31P磁共振波谱研究

Comparative analysis of skeletal muscle oxidative capacity in children and adults: a 31P-MRS study.

作者信息

Ratel Sébastien, Tonson Anne, Le Fur Yann, Cozzone Patrick, Bendahan David

机构信息

Laboratory of Exercise Biology BAPS, EA 3533, Universite Blaise Pascal, UFR STAPS, 63172 Aubiere, France.

出版信息

Appl Physiol Nutr Metab. 2008 Aug;33(4):720-7. doi: 10.1139/H08-039.

Abstract

The aim of the present study was to compare the oxidative capacity of the forearm flexor muscles in vivo between children and adults using 31-phosphorus magnetic resonance spectroscopy. Seven boys (11.7 +/- 0.6 y) and 10 men (35.6 +/- 7.8 year) volunteered to perform a 3 min dynamic finger flexions exercise against a standardized weight (15% of the maximal voluntary contraction). Muscle oxidative capacity was quantified on the basis of phosphocreatine (PCr) post-exercise recovery kinetics analysis. End-of-exercise pH was not significantly different between children and adults (6.6 +/- 0.2 vs. 6.5 +/- 0.2), indicating that indices of PCr recovery kinetics can be reliably compared. The rate constant of PCr recovery (kPCr) and the maximum rate of aerobic ATP production were about 2-fold higher in young boys than in men (kPCr: 1.7 +/- 1.2 vs. 0.7 +/- 0.2 min(-1); Vmax: 49.7 +/- 24.6 vs. 29.4 +/- 7.9 mmol.L(-1).min(-1), p < 0.05). Our results clearly illustrate a greater mitochondrial oxidative capacity in the forearm flexor muscles of young children. This larger ATP regeneration capacity through aerobic mechanisms in children could be one of the factors accounting for their greater resistance to fatigue during high-intensity intermittent exercise.

摘要

本研究的目的是使用31-磷磁共振波谱法比较儿童和成人前臂屈肌在体内的氧化能力。七名男孩(11.7±0.6岁)和十名男性(35.6±7.8岁)自愿进行一项针对标准重量(最大自主收缩的15%)的3分钟动态手指屈曲运动。基于运动后磷酸肌酸(PCr)恢复动力学分析对肌肉氧化能力进行量化。儿童和成人运动结束时的pH值无显著差异(6.6±0.2对6.5±0.2),这表明PCr恢复动力学指标可以可靠地进行比较。年轻男孩的PCr恢复速率常数(kPCr)和有氧ATP产生的最大速率比男性高约2倍(kPCr:1.7±1.2对0.7±0.2 min-1;Vmax:49.7±24.6对29.4±7.9 mmol·L-1·min-1,p<0.05)。我们的结果清楚地表明幼儿前臂屈肌的线粒体氧化能力更强。儿童通过有氧机制具有更大的ATP再生能力可能是其在高强度间歇运动中对疲劳具有更强抵抗力的因素之一。

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