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非稳态下摄氧量的测量。

Measurement of oxygen uptake in the non-steady-state.

作者信息

Powers S K, Lawler J, Thompson D, Beadle R

出版信息

Aviat Space Environ Med. 1987 Apr;58(4):323-7.

PMID:3579818
Abstract

The purpose of these experiments was to develop and validate an open-circuit technique for measurement of gas exchange during the transition from rest to constant load steady-state exercise. The design of the open-circuit system employed to measure gas exchange in these experiments used a mixing chamber to collect the subject's expired ventilation where fractions of O2 and CO2 were determined via electronic gas analyzers. A gasometer was used to measure inspired ventilation and the analog signals from the two gas analyzers and the gasometer were sent to a microcomputer for computation of VO2. In calculating VO2, the mixed expired gas concentrations were matched with ventilatory volume using a previously determined time delay. To determine the validity of the open-circuit system, four subjects performed a series of 16 rest-to-work transitions on a cycle ergometer. In eight of the experiments, serial measurements of VO2 were obtained every 20 s for 3 min using the open-circuit mixing chamber system while the additional eight experiments used the Douglas bag technique. No significant difference (p greater than 0.05) existed between VO2 values calculated by the two techniques. Mean differences in VO2 between the two techniques during the first three 20-s measurement periods were 6, 53, and 63 ml, respectively. Using the Douglas bag technique as the standard, this represents a relative measurement error of 0.1%, 4.5%, and 3.6%, respectively, at the above time intervals. These data demonstrate that an open-circuit system employing a mixing chamber and the appropriate time delay to match expired gas fractions and ventilation is a sensitive means of measurement of VO2 in the non-steady-state.

摘要

这些实验的目的是开发并验证一种开路技术,用于测量从静息状态过渡到恒定负荷稳态运动期间的气体交换。在这些实验中用于测量气体交换的开路系统设计采用了一个混合室来收集受试者的呼出通气量,其中氧气和二氧化碳的比例通过电子气体分析仪测定。使用气量计测量吸入通气量,来自两个气体分析仪和气量计的模拟信号被发送到微型计算机以计算VO2。在计算VO2时,使用先前确定的时间延迟将混合呼出气体浓度与通气量进行匹配。为了确定开路系统的有效性,四名受试者在自行车测力计上进行了一系列16次从静息到工作的过渡。在其中八个实验中,使用开路混合室系统每20秒连续测量VO2,持续3分钟,而另外八个实验使用道格拉斯袋技术。两种技术计算出的VO2值之间不存在显著差异(p大于0.05)。在最初的三个20秒测量期内,两种技术之间VO2的平均差异分别为6、53和63毫升。以上述时间间隔为标准,以道格拉斯袋技术作为标准,这分别代表相对测量误差为0.1%、4.5%和3.6%。这些数据表明,采用混合室和适当时间延迟以匹配呼出气体比例和通气量的开路系统是在非稳态下测量VO2的一种灵敏方法。

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