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On the accuracy of instantaneous gas exchange rates, energy expenditure and respiratory quotient calculations obtained from indirect whole room calorimetry

机译:从间接整个房间量热法获得的瞬时气体交换率,能量消耗和呼吸商计算的准确性

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This paper analyzes the accuracy of metabolic rate calculations performed in the whole room indirect calorimeter using the molar balance equations. The equations are treated from the point of view of cause-effect relationship where the gaseous exchange rates representing the unknown causes need to be inferred from a known, noisy effect - gaseous concentrations. Two methods of such inference are analyzed. The first method is based on the previously published regularized deconvolution of the molar balance equation and the second one, proposed in this paper, relies on regularized differentiation of gaseous concentrations. It is found that both methods produce similar results for the absolute values of metabolic variables and their accuracy. The uncertainty for O_2 consumption rate is found to be 7% and for CO_2 production - 3.2%. The uncertainties in gaseous exchange rates do not depend on the absolute values of O_2 consumption and CO_2 production. In contrast, the absolute uncertainty in respiratory quotient is a function of the gaseous exchange rates and varies from 9.4% during the night to 2.3% during moderate exercise. The uncertainty in energy expenditure was found to be 5.9% and independent of the level of gaseous exchange. For both methods, closed form analytical formulas for confidence intervals are provided allowing quantification of uncertainty for four major metabolic variables in real world studies.
机译:本文使用摩尔平衡方程分析了在整个房间间接量热仪中进行的代谢率计算的准确性。从因果关系的角度处理这些方程式,在这种关系中,需要从已知的嘈杂效应(气体浓度)推导代表未知原因的气体交换速率。分析了两种推断方法。第一种方法基于先前发布的摩尔平衡方程的正则化反卷积,而本文提出的第二种方法则依赖于气体浓度的正则化。发现对于代谢变量的绝对值及其准确性,两种方法均产生相似的结果。发现O_2消耗率的不确定性为7%,而CO_2生产的不确定性为3.2%。气体汇率的不确定性不取决于O_2消耗量和CO_2产生量的绝对值。相反,呼吸商的绝对不确定性是气体交换速率的函数,从夜间的9.4%到中等运动的2.3%不等。发现能量消耗的不确定性为5.9%,与气体交换水平无关。对于这两种方法,都提供了置信区间的封闭形式分析公式,从而可以量化现实世界研究中四个主要代谢变量的不确定性。

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