Bigard A X, Guezennec C Y
Département de Physiologie Systémique, Centre d'Etudes et de Recherches de Médecine Aérospatiale, Brétigny sur Orge, France.
Med Sci Sports Exerc. 1995 Sep;27(9):1333-8.
The aim of this study was to test the linearity, precision, and accuracy of the measurements made by the K2 system at sea level (SL) and moderate altitude (MA) (barometric pressure = 591.5 +/- 0.5 mm Hg). To minimize the day-to-day biovariability, a testing protocol based on repeated-alternated measures was used at rest and during three levels of submaximal exercice lasting 12 min each, at 25%, 50%, 75% of the peak workload. The measurements of the respiratory parameters were compared with those obtained with a metabolic measurement cart. The results reported in this study show that the K2 system was an accurate and consistent system for oxygen uptake (VO2) measurements at SL. The K2 system was consistent at MA; however, the K2 system significantly overestimated and underestimated the VO2 computations at rest and 25% of the peak workload, respectively. The calculation of VO2 using the K2 system which assumes that RER = 1.00 had specific effects for the calculation of oxygen uptake. The measurements of FEO2 selectively differed from those obtained with the metabolic measurement cart at MA. Therefore, we concluded that the K2 system was an accurate system for VO2 measurements during submaximal exercices (50%-75% of the peak workload) under laboratory conditions at MA (up to 2,000 m).
本研究的目的是测试K2系统在海平面(SL)和中度海拔(MA)(气压 = 591.5 +/- 0.5毫米汞柱)条件下测量的线性、精密度和准确性。为了将日常生物变异性降至最低,在静息状态以及在三种次最大运动水平(每次持续12分钟,分别为峰值工作量的25%、50%、75%)期间,采用了基于重复交替测量的测试方案。将呼吸参数的测量结果与用代谢测量推车获得的结果进行比较。本研究报告的结果表明,K2系统在海平面条件下是一种用于测量摄氧量(VO2)的准确且一致的系统。K2系统在中度海拔条件下具有一致性;然而,K2系统在静息状态和峰值工作量的25%时分别显著高估和低估了VO2的计算值。使用假设呼吸商(RER)= 1.00的K2系统计算VO2对摄氧量的计算有特定影响。在中度海拔条件下,呼出气体氧分数(FEO2)的测量结果与用代谢测量推车获得的结果存在选择性差异。因此,我们得出结论,在中度海拔(高达2000米)的实验室条件下,K2系统是次最大运动(峰值工作量的50%-75%)期间测量VO2的准确系统。