Mc Naughton L R, Sherman R, Roberts S, Bentley D J
Department of Sport Science, University of Hull, Hull, UK.
J Sports Med Phys Fitness. 2005 Sep;45(3):315-23.
The purpose of this study was to systematically test the accuracy of an automated, portable, gas analysis system, the Cosmed K4b2 with a laboratory based mass spectrometer system, the Morgan EX670 across a number of gas and ventilation parameters.
Eight subjects (mean+/-SE) age, 23.7+/-1.1 y, height, 1.78+/-0.01 m, mass, 74.4+/-2.1 kg performed a V.O2max test and a submaximal exercise test at 150, 200, 250 and 300 Watts (W), on an SRM cycle ergometer. The Morgan EX670 system and the K4b2 were randomly connected in series, using the same breath for the calculation of gas and ventilatory parameters.
The K4b2 system reads significantly higher than the Morgan EX 670 for both VO2 and V.CO2 at 250 (VO2/V.CO2: p<0.05, p<0.002), and 300 W (VO2/V.CO2: p<0.002, p<0.005). Unsystematic bias between the 2 analysers varies between 1% and 16% and systematic bias between 3% and 8%.
There are some significant unsystematic and systematic differences between these 2 systems and laboratories should endeavour to utilise either one or the other piece of equipment to test their subjects.
本研究旨在系统测试一种自动化便携式气体分析系统Cosmed K4b2与基于实验室的质谱仪系统Morgan EX670在多个气体和通气参数方面的准确性。
8名受试者(平均±标准误),年龄23.7±1.1岁,身高1.78±0.01米,体重74.4±2.1千克,在SRM功率自行车上进行了最大摄氧量测试以及150、200、250和300瓦(W)的次最大运动测试。Morgan EX670系统和K4b2随机串联连接,使用同一呼吸来计算气体和通气参数。
在250瓦(VO2/V.CO2:p<0.05,p<0.002)和300瓦(VO2/V.CO2:p<0.002,p<0.005)时,K4b2系统测得的VO2和V.CO2均显著高于Morgan EX670。这两种分析仪之间的非系统偏差在1%至16%之间变化,系统偏差在3%至8%之间。
这两种系统之间存在一些显著的非系统和系统差异,实验室应努力使用其中一种设备来测试其受试者。