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代谢性酸中毒阈值即无氧阈值的证据。

Evidence that the metabolic acidosis threshold is the anaerobic threshold.

作者信息

Koike A, Weiler-Ravell D, McKenzie D K, Zanconato S, Wasserman K

机构信息

Division of Respiratory and Critical Care Physiology and Medicine, Harbor-UCLA Medical Center, Torrance 90509.

出版信息

J Appl Physiol (1985). 1990 Jun;68(6):2521-6. doi: 10.1152/jappl.1990.68.6.2521.

Abstract

We evaluated maximal O2 uptake (VO2max), the metabolic acidosis threshold determined by the V-slope analysis [plot of CO2 output (VCO2) as a function of oxygen uptake (VO2)], the ratio of increase in VO2 to work rate increment (delta VO2/delta WR), the upper slope (S2) of the V-slope analysis, and the VO2 for work below and above the metabolic acidosis threshold to determine whether the changes in O2 transport caused by increased carboxyhemoglobin (HbCO) affected these parameters and variables. Ten normal subjects (aged 32.8 +/- 7.1 yr) performed symptom-limited incremental exercise tests in a ramp pattern on a cycle ergometer while breathing air and air with added carbon monoxide to cause HbCO to be approximately 11% and 20%. VO2max decreased by 11.6 and 19.3%, the metabolic acidosis threshold decreased by 11.9 and 19.6%, delta VO2/delta WR decreased by 8.9 and 14.0%, and S2 increased by 13.6 and 21.8% when HbCO was increased to 11 and 20%, respectively. Most importantly, VO2 was unchanged related to work rate below the metabolic acidosis threshold during the tests with increased HbCO but was reduced at the work rates above the metabolic acidosis threshold. These findings are consistent with the concept that the metabolic acidosis threshold is synonymous with an anaerobic threshold, i.e., the latter demarcating the VO2 above which the contracting muscles are not adequately supplied with O2 but below which they are.

摘要

我们评估了最大摄氧量(VO2max)、通过V斜率分析[二氧化碳排出量(VCO2)作为摄氧量(VO2)的函数绘制]确定的代谢性酸中毒阈值、VO2增加量与工作率增加量的比值(δVO2/δWR)、V斜率分析的上斜率(S2),以及代谢性酸中毒阈值以下和以上工作时的VO2,以确定羧基血红蛋白(HbCO)增加引起的氧运输变化是否会影响这些参数和变量。十名正常受试者(年龄32.8±7.1岁)在自行车测力计上以斜坡模式进行症状限制递增运动测试,分别呼吸空气以及添加一氧化碳的空气,以使HbCO分别达到约11%和20%。当HbCO分别增加到11%和20%时,VO2max分别下降了11.6%和19.3%,代谢性酸中毒阈值分别下降了11.9%和19.6%,δVO2/δWR分别下降了8.9%和14.0%以及S2分别增加了13.6%和21.8%。最重要的是,在HbCO增加的测试过程中,低于代谢性酸中毒阈值时VO2与工作率无关,但在高于代谢性酸中毒阈值的工作率时VO2降低。这些发现与代谢性酸中毒阈值与无氧阈值同义的概念一致,即后者划分了收缩肌肉无法获得充足氧气供应的VO2以上水平和能够获得充足氧气供应的VO2以下水平。

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