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首页> 外文期刊>Clinical and experimental pharmacology & physiology >Skeletal muscle metabolism during exercise in humans.
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Skeletal muscle metabolism during exercise in humans.

机译:在人类运动过程中骨骼肌的新陈代谢。

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摘要

1. Contracting skeletal muscle is able to use a number of intra- and extramuscular substrates to generate ATP during exercise. These include creatine phosphate (CP), muscle glycogen, blood-borne glucose, lactate and free fatty acids (FFA), derived from either adipose tissue or intramuscular triglyceride stores. 2. During high-intensity short-duration exercise, CP degradation and the breakdown of muscle glycogen to lactate are the major energy yielding pathways, although oxidative metabolism can make a significant contribution. The 'anaerobic' substrates are also important fuels during the transition from rest to steady state exercise. 3. The oxidative metabolism of carbohydrate and lipid supplies most, if not all, of the ATP during prolonged submaximal exercise. Muscle glycogen, blood glucose and FFA are the key fuels. The relative importance of the various substrates for exercise metabolism is primarily determined by exercise intensity and duration, although training status, dietary manipulation and environmental factors can modify the metabolic response to exercise.
机译:1.在运动过程中,收缩的骨骼肌能够利用多种肌内和肌外基质产生ATP。这些包括磷酸肌酸(CP),肌肉糖原,血葡萄糖,乳酸和游离脂肪酸(FFA),它们来自脂肪组织或肌内甘油三酸酯存储。 2.在高强度的短时运动中,尽管氧化代谢可以发挥重要作用,但是CP降解和肌糖原分解为乳酸是主要的能量产生途径。 “厌氧”底物在从静止运动到稳态运动的过渡过程中也是重要的燃料。 3.在长时间的次最大运动量中,碳水化合物和脂质的氧化代谢提供了大部分(如果不是全部)ATP。肌肉糖原,血糖和FFA是关键燃料。各种底物对运动代谢的相对重要性主要由运动强度和持续时间决定,尽管训练状态,饮食操作和环境因素可以改变对运动的代谢反应。

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