Evaluation of a new whole room indirect calorimeter specific for measurement of resting metabolic rate.

Zeitschrift fur vergleichende Physiologie Pub Date : 2015-11-19 eCollection Date: 2015-01-01 DOI:10.1186/s12986-015-0043-0
Russell Rising, Kathryn Whyte, Jeanine Albu, Xavier Pi-Sunyer
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Abstract

Background: The most common methods for obtaining human resting metabolic rate (RMR) use either a ventilated hood connected to a metabolic cart (VH_MC) or calculation by many prediction equations utilizing the person's height and weight. These methods may be inherently inaccurate. The objective of this study is to compare the accuracy for the measurement of RMR by three methods: a new whole room indirect calorimeter specific for this purpose (RMR_WRIC), VH_MC and calculation by the Mifflin equation (ME). First, the VH_MC (Vmax Encore 2900, Carefusion Inc, San Diego, CA) and RMR_WRIC (Promethion GA-6/FG-1, Sable Systems Intl, Las Vegas, NV) were subjected to 10, one-hour ethanol (99.8 % purity) and propane (99.5 % purity) combustion tests, respectively, for simulated metabolic measurements. Thereafter, 40 healthy adults (22 M/18 F, 78.0 ± 24.5 kg, BMI = 25.6 ± 4.8, age 36.6 ± 13.4 years) had one-hour RMR (kcal), ventilation (liters) rates of oxygen (VO2), carbon dioxide (VCO2) and RQ (VCO2/VO2) measured after a 12-h fast with both the VH_ MC and the RMR_WRIC in a randomized fashion. The resting state was documented by heart rate. The RMR was also calculated using the ME, which was compared to both the RMR_WRIC and the VH_MC. All simulated and human metabolic data were extrapolated to 24-h and analyzed (SPSS, Ver. 22).

Results: Comparing stoichiometry to actual combustion, the VH_MC underestimated simulated RMR (p < 0.05), VO2 (p < 0.05), VCO2 (p < 0.05) and the RQ. Similarly the RMR_WRIC underestimated simulated RMR (p < 0.05) and VO2 while overestimating VCO2 and the RQ. There was much greater variability in the simulated metabolic data between combustion and the VH_MC as compared to that of the RMR_WRIC. With regards to the volunteers, the RMR, RQ, VO2 and VCO2 determined by the VH_MC tended to be lower in comparison to these measurements determined by the RMR_WRIC. Finally, RMR calculated utilizing the ME was significantly (p < 0.05) less than the RMR_WRIC but similar to that obtained by the VH_MC.

Conclusion: The RMR_WRIC was more accurate and precise than either the VH_MC or ME, which has implications for determining energy requirements for individuals participating in weight loss or nutrition rehabilitation programs.

对专用于测量静息代谢率的新型全室间接热量计进行评估。
背景:获取人体静息代谢率(RMR)的最常用方法是使用与代谢车(VH_MC)相连的通风罩,或利用人的身高和体重通过许多预测方程进行计算。这些方法可能本身就不准确。本研究的目的是比较三种方法测量 RMR 的准确性:专门用于此目的的新型全室间接热量计(RMR_WRIC)、VH_MC 和米夫林方程(ME)计算法。首先,对 VH_MC(Vmax Encore 2900,Carefusion Inc,San Diego,CA)和 RMR_WRIC(Promethion GA-6/FG-1,Sable Systems Intl,Las Vegas,NV)分别进行了 10 次、每次一小时的乙醇(纯度为 99.8%)和丙烷(纯度为 99.5%)燃烧测试,以进行模拟新陈代谢测量。此后,40 名健康成年人(22 名男性/18 名女性,78.0 ± 24.5 千克,体重指数 = 25.6 ± 4.8,年龄 36.6 ± 13.4 岁)在禁食 12 小时后,以随机方式使用 VH_ MC 和 RMR_WRIC 测量了一小时 RMR(千卡)、通气量(升)、氧气率(VO2)、二氧化碳率(VCO2)和 RQ(VCO2/VO2)。静息状态由心率记录。此外,还使用 ME 计算 RMR,并与 RMR_WRIC 和 VH_MC 进行比较。所有模拟数据和人体新陈代谢数据均推断至 24 小时并进行分析(SPSS,22 版):结果:将化学计量与实际燃烧进行比较,VH_MC 低估了模拟 RMR(p 结论:RMR_WRIC 比 VH_MC 低估了模拟 RMR(p 结论:RMR_WRIC 比 VH_MC 低估了模拟 RMR:RMR_WRIC比VH_MC或ME更准确、更精确,这对确定参加减肥或营养康复计划的人的能量需求具有重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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