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糖原消耗和蹬踏速度对“无氧阈”的影响。

Effects of glycogen depletion and pedaling speed on "anaerobic threshold".

作者信息

Hughes E F, Turner S C, Brooks G A

出版信息

J Appl Physiol Respir Environ Exerc Physiol. 1982 Jun;52(6):1598-607. doi: 10.1152/jappl.1982.52.6.1598.

Abstract

Nine male subjects performed continuous incremental exercise on a bicycle ergometer pedaling at 50 and 90 rpm in a normal glycogen state (NG) and at 50 rpm in a glycogen-depleted state (GD) to determine if alterations in pedaling frequency and muscle glycogen content would affect their "anaerobic thresholds." Ventilatory [T(vent)] and lactate [T(lac)] thresholds were identified as the points after which expired minute volume and blood lactate began to increase nonlinearly as a function of work rate. The GD protocol elicited a significant divergence between the two thresholds shifting the T(vent) to a lesser and the T(lac) to a greater work rate relative to the NG state. When the pedaling frequency was increased to 90 rpm in the NG condition, the T(lac) was shifted to a lesser work rate relative to the 50-rpm NG condition. A correlation of only 0.71 was obtained between subjects' T(vent) and T(lac). In subjects of less than 70 kg body wt, the T(lac) came at a work rate 400 kg.m.min-1 less than in subjects of greater than 80 kg body wt despite equivalent O2 uptake. The observation that the T(vent) and T(lac) could be manipulated independently of each other reveals limitations in using the T(vent) to estimate the so-called anaerobic threshold.

摘要

九名男性受试者在正常糖原状态(NG)下,以每分钟50转和90转的频率在自行车测力计上进行持续递增运动,并在糖原耗尽状态(GD)下以每分钟50转的频率进行运动,以确定蹬踏频率和肌肉糖原含量的变化是否会影响他们的“无氧阈值”。通气阈值[T(vent)]和乳酸阈值[T(lac)]被确定为在该点之后,每分钟呼出量和血乳酸开始随工作率呈非线性增加。与NG状态相比,GD方案引起了两个阈值之间的显著差异,使T(vent)对应的工作率降低,而T(lac)对应的工作率升高。在NG状态下,当蹬踏频率增加到每分钟90转时,相对于每分钟50转的NG状态,T(lac)对应的工作率降低。受试者的T(vent)和T(lac)之间的相关性仅为0.71。在体重小于70kg的受试者中,尽管摄氧量相当,但T(lac)对应的工作率比体重大于80kg的受试者低400kg·m·min-1。T(vent)和T(lac)可以相互独立调节这一观察结果揭示了使用T(vent)来估计所谓无氧阈值的局限性。

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