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Lack of Agreement Between Gas Exchange Variables Measured by Two Metabolic Systems

机译:两个代谢系统测量的气体交换变量之间缺乏一致性

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摘要

The purpose of this study was to assess the agreement and consistency between gas exchange variables measured by two online metabolic systems during an incremental exercise test. After obtaining local ethics approval and informed consent, 15 healthy subjects performed an incremental exercise test to volitional fatigue using the Bruce protocol. The Innocor (Innovision, Denmark) and CardiO2 (Medical Graphics, USA) systems were placed in series, with the Innocor mouthpiece attached to the pneumotach of the CardiO2. Metabolic data were analysed during the last 30 seconds of each stage and at peak exercise. There were non- significant differences (p > 0.05) between the two systems in estimation of oxygen consumption (VO2) and in minute ventilation (VE). Mean Cronbach’s alpha for VO2 and VE were 0.88 and 0.92. The Bland-Altman analysis revealed that limits of agreement were -0.52 to 0.55 l.min-1 for VO2, and -8.74 to 10.66 l.min-1 for VE. Carbon dioxide production (VCO2) and consequently respiratory exchange ratio (RER) measured by the Innocor were significantly lower (p < 0.05) through all stages. The CardiO2 measured fraction of expired carbon dioxide (FeCO2) significantly higher (p < 0.05). The limits of agreement for VO2 and VE are wide and unacceptable in cardio-pulmonary exercise testing. The Innocor reported VCO2 systematically lower. Therefore the Innocor and CardiO2 metabolic systems cannot be used interchangeably without affecting the diagnosis of an individual patient. Results from the present study support previous suggestion that considerable care is needed when comparing metabolic data obtained from different automated metabolic systems.Key points class="unordered" style="list-style-type:disc">There is general concern regarding the limited knowledge available about the accuracy of a number of commercially available systems.Demonstrated limits of agreement between key gas exchange variables (oxygen consumption and minute ventilation) as measured by the two metabolic systems were wide and unacceptable in cardio-pulmonary exercise testing.Considerable care is needed when comparing metabolic data obtained from different automated metabolic systems.
机译:这项研究的目的是评估在递增运动测试中由两个在线代谢系统测量的气体交换变量之间的一致性和一致性。在获得当地伦理学的批准和知情同意后,使用Bruce规程,对15名健康受试者进行了针对运动性疲劳的增量运动测试。将Innocor(丹麦Innovision)和CardiO2(美国Medical Graphics)系统串联放置,并将Innocor烟嘴连接到CardiO2的气动力上。在每个阶段的最后30秒以及运动高峰时分析代谢数据。在估计耗氧量(VO2)和分钟通气量(VE)方面,两个系统之间无显着差异(p> 0.05)。 VO2和VE的平均Cronbach alpha分别为0.88和0.92。 Bland-Altman分析显示,VO2的一致性极限为-0.52至0.55 l.min -1 ,VE的一致性极限为-8.74至10.66 l.min -1 。在所有阶段,Innocor测得的二氧化碳产量(VCO2)以及因此的呼吸交换率(RER)均显着降低(p <0.05)。 CardiO2测量的呼出二氧化碳分数(FeCO2)明显更高(p <0.05)。 VO2和VE的协议限制范围很广,在心肺运动测试中是不可接受的。 Innocor报告的VCO2系统降低。因此,Innocor和CardiO2代谢系统不能互换使用而不影响单个患者的诊断。本研究的结果支持以前的建议,即比较从不同的自动代谢系统获得的代谢数据时需要相当小心。要点 class =“ unordered” style =“ list-style-type:disc”> <!-list -behavior =无序前缀-word = mark-type = disc max-label-size = 0-> 人们普遍关注的是,有关许多商用系统准确性的有限知识。 由两个新陈代谢系统测得的关键气体交换变量(耗氧量和分钟通气量)之间的一致性证明限值在心肺运动测试中很宽且不能接受。 比较时,需要格外小心从不同的自动代谢系统获取的代谢数据。

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