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首页> 外文期刊>European journal of applied physiology >Inter-unit variability in two ParvoMedics TrueOne 2400 automated metabolic gas analysis systems.
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Inter-unit variability in two ParvoMedics TrueOne 2400 automated metabolic gas analysis systems.

机译:两个ParvoMedics TrueOne 2400自动化代谢气体分析系统中的单元间可变性。

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Knowing the inter-unit variability, especially the technological error, is important when using many physiological measurement systems, yet no such inter-unit analysis has been undertaken on duplicate automated gas analysis systems. This study investigated the inter-unit performance of two identical ParvoMedics TrueOne 2400 automated gas analysis systems during a range of submaximal steady-state exercises performed on an electromagnetic cycle ergometer. Fifteen adult males were tested on two separate days a rest, 30, 60, 90, and 120 Watts with the duplicate gas analysis units arranged (1) collaterally (2 min of steady-state expired gas was alternately passed through each system), and (2) simultaneously (identical steady-state expired gas was passed simultaneously through both systems). Total within-subject variation (biological + technological) was determined from the collateral tests, but the unique inter-unit variability (technological error between identical systems) was shown by the simultaneous tests. Absolute percentage errors (APE), coefficient of variations (CV), effect sizes and Bland-Altman analyses were undertaken on the metabolic data, including expired ventilation (V (E)), oxygen consumption (VO(2)) and carbon dioxide production (VCO(2)). The few statistically significant differences detected between the two duplicate systems were determined to have small or trivial effect sizes, and their magnitudes to be of little physiological importance. The total within-subject variations for VO(2), VCO(2) and V (E) each equated to a mean CV and mean APE value of ~4 and ~6 %, whilst the respective inter-unit technological errors equated to ~1.5 and ~2.1 %. The two ParvoMedics TrueOne 2400 systems demonstrated excellent inter-unit agreement.
机译:在使用许多生理测量系统时,了解单元间的可变性,尤其是技术错误非常重要,但是尚未在重复的自动气体分析系统上进行这种单元间的分析。这项研究调查了两个相同的ParvoMedics TrueOne 2400自动化气体分析系统在电磁测功仪上进行的一系列次最大稳态练习期间的单元间性能。 15个成年雄性动物分别在休息,30、60、90和120瓦的两天中分别进行了测试,其中重复的气体分析单元(1)并排布置(每个系统交替交替流通2分钟的稳态呼出气体),并且(2)同时进行(相同的稳态过期气体同时通过两个系统)。总的受试者内部变异(生物学+技术)由附带测试确定,但同时进行的测试显示出唯一的单元间变异性(同一系统之间的技术误差)。对代谢数据进行了绝对百分比误差(APE),变异系数(CV),效应大小和Bland-Altman分析,包括过期换气(V(E)),耗氧量(VO(2))和二氧化碳的产生(VCO(2))。确定两个重复系统之间检测到的少数统计学上显着差异具有较小或微不足道的影响大小,其大小对生理意义不大。 VO(2),VCO(2)和V(E)的总受试者内部变化各等于〜4和〜6%的平均CV和平均APE值,而各个单元间的技术误差则等于〜 1.5和〜2.1%。两个ParvoMedics TrueOne 2400系统展示了出色的单元间协议。

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