Tsekouras Yiannis E, Tambalis Konstantinos D, Sarras Stavros E, Antoniou Athanasios K, Kokkinos Peter, Sidossis Labros S
Department of Nutrition and Dietetics, School of Health Science & Education, Harokopio University, Athens, Greece.
Department of Kinesiology and Health, Rutgers University, New Brunswick, NJ, United States.
Front Sports Act Living. 2019 Sep 10;1:24. doi: 10.3389/fspor.2019.00024. eCollection 2019.
Assessment of the oxygen and carbon dioxide content of expired air during exercise is critical for determining cardiorespiratory status. The purpose of this study was to compare the new portable metabolic analyzer PNOE with COSMED - Quark CPET, a previously validated stationary metabolic cart. A total of 22 subjects (17 male and 5 female) aged 32.3 ± 11.1 years took part in the study. Breath by breath gas exchange was measured by both devices during a four-stage incremental protocol on a cycle ergometer. On a separate day, 10 participants repeated the trial to assess the reliability of the PNOE metabolic cart. Strong correlations were obtained in VO ( = 0.98, < 0.001), VCO ( = 0.98, < 0.001), VE ( = 0.98, < 0.001), and RQ ( = 0.91, < 0.001), between the two devices. Bland-Altman plots revealed a mean difference of 34.0 ± 118 ml/min and 36.4 ± 110 ml/min in VO and VCO analysis, respectively. There were no significant differences in VO, VCO, VE, or RQ between the two devices. Intraclass correlation coefficient was high between the two trials for VO ( = 0.98, < 0.001), VCO ( = 0.98, < 0.001), VE ( = 0.99, < 0.001), and RQ ( = 0.93, < 0.001). Our data indicate that the portable metabolic cart PNOE can accurately determine respiratory gases over a wide range of exercise intensities, in healthy individuals, in a controlled laboratory setting.
运动期间对呼出气体中的氧气和二氧化碳含量进行评估对于确定心肺功能状态至关重要。本研究的目的是比较新型便携式代谢分析仪PNOE与已得到验证的固定式代谢测量仪COSMED - Quark CPET。共有22名年龄在32.3±11.1岁的受试者(17名男性和5名女性)参与了本研究。在功率自行车上进行的四阶段递增方案中,两台设备均逐次测量气体交换情况。在另一天,10名参与者重复该试验以评估PNOE代谢测量仪的可靠性。两台设备在VO(r = 0.98,P < 0.001)、VCO(r = 0.98,P < 0.001)、VE(r = 0.98,P < 0.001)和RQ(r = 0.91,P < 0.001)方面均获得了强相关性。Bland - Altman图显示,VO和VCO分析中的平均差异分别为34.0±118 ml/min和36.4±110 ml/min。两台设备在VO﹑VCO﹑VE或RQ方面均无显著差异。两次试验之间,VO(r = 0.98,P < 0.001)、VCO(r = 0.98,P < 0.001)、VE(r = 0.99,P < 0.001)和RQ(r = 0.93,P < 0.001)的组内相关系数较高。我们的数据表明,在受控的实验室环境中,便携式代谢测量仪PNOE能够在广泛的运动强度范围内准确测定健康个体的呼吸气体。