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首页> 外文期刊>Frontiers in Physiology >Gas analyzer's drift leads to systematic error in maximal oxygen uptake and maximal respiratory exchange ratio determination
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Gas analyzer's drift leads to systematic error in maximal oxygen uptake and maximal respiratory exchange ratio determination

机译:气体分析仪的漂移导致最大摄氧量和最大呼吸交换率确定中的系统误差

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The aim was to examine the drift in the measurements of fractional concentration of oxygen (FO_(2)) and carbon dioxide (FCO_(2)) of a Nafion-using metabolic cart during incremental maximal exercise in 18 young and 12 elderly males, and to propose a way in which the drift can be corrected. The drift was verified by comparing the pre-test calibration values with the immediate post-test verification values of the calibration gases. The system demonstrated an average downscale drift ( P < 0.001) in FO_(2)and FCO_(2)of ?0.18% and ?0.05%, respectively. Compared with measured values, corrected average maximal oxygen uptakevalues were 5–6% lower ( P < 0.001) whereas corrected maximal respiratory exchange ratio values were 8–9% higher ( P < 0.001). The drift was not due to an electronic instability in the analyzers because it was reverted after 20 min of recovery from the end of the exercise. The drift may be related to an incomplete removal of water vapor from the expired gas during transit through the Nafion conducting tube. These data demonstrate the importance of checking FO_(2)and FCO_(2)values by regular pre-test calibrations and post-test verifications, and also the importance of correcting a possible shift immediately after exercise.
机译:目的是检查18名年轻男性和12名老年男性在增加最大运动量期间使用Nafion的代谢车的氧气(FO_(2))和二氧化碳(FCO_(2))的分数浓度测量中的漂移,以及提出一种可以校正漂移的方法。通过将测试前的校准值与校准气体的即时测试后的验证值进行比较来验证漂移。系统显示FO_(2)和FCO_(2)的平均下标漂移(P <0.001)分别为0.18%和0.05%。与测量值相比,校正后的平均最大摄氧量降低了5–6%(P <0.001),而校正后的最大呼吸交换比值则提高了8–9%(P <0.001)。漂移不是由于分析仪中的电子不稳定所致,因为从练习结束恢复20分钟后,漂移已恢复。漂移可能与在通过Nafion传导管传输过程中未完全从排出的气体中除去水蒸气有关。这些数据证明了通过定期的测试前校准和测试后验证来检查FO_(2)和FCO_(2)值的重要性,以及在运动后立即纠正可能的移位的重要性。

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