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单腿或单臂运动时非活动侧下肢的底物利用情况。

Substrate utilization by the inactive leg during one-leg or arm exercise.

作者信息

Ahlborg G, Hagenfeldt L, Wahren J

出版信息

J Appl Physiol. 1975 Nov;39(5):718-23. doi: 10.1152/jappl.1975.39.5.718.

Abstract

Substrate utilization by the nonexercising leg was studied in healthy subjects during one-leg exercise at an average work load of 105 W for 40 min (n equals 8) or during arm exercise at 65 W for 20 min (n equals 5). During one-leg exercise both the blood flow and the A-FV difference of oxygen for the non exercising leg rose, resulting in an approximately five fold increment in oxygen uptake. EMG activity of the leg was increased above basal. Despite unchanged or falling arterial levels of insulin, the A-FV difference for glucose across the nonexercising leg rose during exercise and the estimated glucose uptake increased approximately fourfold. Release of lactate in the basal state reverted to a significant net uptake of lactate by the nonexercising leg. During arm exercise there was a 20-70% rise in leg blood flow and the leg oxygen uptake rose 25-45% in spite of minimal EMG activity from the thigh muscles. There was a large uptake of lactate by the legs during arm exercise. We conclude that several important metabolic alterations take place in the nonexercising leg tissues during physical exertion: 1) blood flow and oxygen uptake rise, partly as a consequence of motor activation; 2) substrate utilization shifts from a predominant FFA uptake in the basal state to a greater utilization of carbohydrate; 3) nonexercising muscle, and possibly adipose tissue, play an important role in the removal of lactate during exercise.

摘要

在健康受试者中,对非运动腿的底物利用情况进行了研究。研究内容包括在平均工作负荷为105瓦的单腿运动40分钟(n = 8)期间,或在65瓦的手臂运动20分钟(n = 5)期间。在单腿运动期间,非运动腿的血流和氧的动静脉分压差均升高,导致氧摄取量增加约五倍。腿部的肌电图活动高于基础水平。尽管动脉胰岛素水平不变或下降,但运动期间非运动腿的葡萄糖动静脉分压差升高,估计的葡萄糖摄取量增加约四倍。基础状态下乳酸的释放转变为非运动腿对乳酸的显著净摄取。在手臂运动期间,腿部血流增加20 - 70%,尽管大腿肌肉的肌电图活动 minimal ,但腿部氧摄取量仍增加25 - 45%。手臂运动期间腿部对乳酸有大量摄取。我们得出结论,在体力活动期间,非运动腿组织会发生几种重要的代谢改变:1)血流和氧摄取增加,部分是运动激活的结果;2)底物利用从基础状态下以脂肪酸摄取为主转变为更多地利用碳水化合物;3)非运动肌肉以及可能的脂肪组织在运动期间乳酸清除中起重要作用。

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