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高氧环境下代谢率的测量。

Measurement of metabolic rate in hyperoxia.

作者信息

Welch H G, Pedersen P K

出版信息

J Appl Physiol Respir Environ Exerc Physiol. 1981 Sep;51(3):725-31. doi: 10.1152/jappl.1981.51.3.725.

Abstract

The conventional Douglas bag calculation for estimating O2 uptake (VO2) during exercise in normoxia and hyperoxia, VO2 = VE . (FIO2 . FEN2/FIN2 - FEO2), was tested against two other valid calculations: the Fick equation, VO2 = VI . FIO2 - VE . FEO2, and the equation VO2 = VI - VE - VCO2 (VE and VI are expired and inspired ventilation, respectively; FEO2 and FIO2 are expired and inspired O2 contents, respectively; FEN2 and FIN2 are expired and inspired N2 contents, respectively; and VCO2 is CO2 production.). These calculations are based on different assumptions, in part, and are affected to a varying degree of errors in volume or gas fraction measurements. With the conventional Douglas bag technique, we found evidence of an overestimate of VO2 during hyperoxia. After the introduction of a mixing chamber for sampling expired air, the means of the three methods were not significantly different. The variability among the methods was least with the conventional calculation but increased with higher O2 fractions. The average VO2 for submaximal exercise in hyperoxia was not significantly different from that of normoxia. VO2 max was significantly higher in hyperoxia. The increased variability of the Douglas bag method in hyperoxia may lead to overestimates of VO2 max unless special precautions are taken.

摘要

传统的道格拉斯袋计算法用于估计常氧和高氧环境下运动时的摄氧量(VO₂),即VO₂ = VE. (FIO₂. FEN₂/FIN₂ - FEO₂),该方法与另外两种有效的计算方法进行了对比测试:菲克方程VO₂ = VI. FIO₂ - VE. FEO₂,以及方程VO₂ = VI - VE - VCO₂(其中VE和VI分别为呼出和吸入通气量;FEO₂和FIO₂分别为呼出和吸入氧气含量;FEN₂和FIN₂分别为呼出和吸入氮气含量;VCO₂为二氧化碳产生量)。这些计算方法部分基于不同假设,并且在一定程度上受到体积或气体分数测量误差的影响。采用传统的道格拉斯袋技术时,我们发现高氧环境下存在VO₂被高估的证据。在引入用于采集呼出气体样本的混合室后,三种方法的均值没有显著差异。传统计算方法中各方法之间的变异性最小,但随着氧气分数升高而增加。高氧环境下亚极量运动的平均VO₂与常氧环境下的平均VO₂没有显著差异。高氧环境下的VO₂ max显著更高。高氧环境下道格拉斯袋法变异性增加可能导致VO₂ max被高估,除非采取特殊预防措施。

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