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首页> 外文期刊>Nature Metabolism >Skeletal muscle energy metabolism during exercise
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Skeletal muscle energy metabolism during exercise

机译:在运动时骨骼肌能量代谢

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The continual supply of ATP to the fundamental cellular processes that underpin skeletal muscle contraction during exercise is essential for sports performance in events lasting seconds to several hours. Because the muscle stores of ATP are small, metabolic pathways must be activated to maintain the required rates of ATP resynthesis. These pathways include phosphocreatine and muscle glycogen breakdown, thus enabling substrate-level phosphorylation ('anaerobic') and oxidative phosphorylation by using reducing equivalents from carbohydrate and fat metabolism ('aerobic'). The relative contribution of these metabolic pathways is primarily determined by the intensity and duration of exercise. For most events at the Olympics, carbohydrate is the primary fuel for anaerobic and aerobic metabolism. Here, we provide an overview of exercise metabolism and the key regulatory mechanisms ensuring that ATP resynthesis is closely matched to the ATP demand of exercise. We also summarize various interventions that target muscle metabolism for ergogenic benefit in athletic events.
机译:ATP的持续供应的根本支撑骨骼肌细胞过程收缩在运动过程中是必不可少的运动性能事件持续秒好几个小时。很小,必须激活代谢途径维护所需的ATP再合成。磷酸肌酸和肌糖原分解,从而使作用物水平磷酸化(厌氧)和氧化磷酸化使用减少碳水化合物和等价物脂肪代谢(“有氧”)。这些代谢途径的贡献主要由强度和决定持续时间的运动。奥运会上,碳水化合物是主要的燃料无氧和有氧代谢。概述的新陈代谢和锻炼监管机制确保ATP的关键再合成ATP密切匹配需求的运动。目标肌肉代谢的干预措施生力的在体育活动中受益。

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