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对用于计算代谢率的韦尔方程的重新评估。

Reappraisal of the Weir equation for calculation of metabolic rate.

作者信息

Mansell P I, Macdonald I A

机构信息

Department of Physiology and Pharmacology, Queen's Medical Centre, Nottingham, United Kingdom.

出版信息

Am J Physiol. 1990 Jun;258(6 Pt 2):R1347-54. doi: 10.1152/ajpregu.1990.258.6.R1347.

Abstract

In 1949 Weir (3) demonstrated that the metabolic rate calculated from respiratory gas exchange measurements is to a close approximation proportional to the difference in percentage oxygen content between inspired and expired air. Although values for the energy equivalent of oxygen consumed and for the respiratory quotient for the oxidation of various nutrients have been revised since 1949, we show that the error in the calculation remains generally below 0.5% for the oxidation of dietary carbohydrate, fat, and protein. Where the original equation is uncritically applied to situations in which other nutrients are being oxidized, the error may reach 3%, although alternative methods for calculating the metabolic rate may be similarly in error. We give the derivation from first principles of the general mathematical solution to the calculation of the metabolic rate following Weir's method. Examples are provided of the subsequent derivation of specific equations for the more precise calculation of the metabolic rate where different combinations of nutrients are being oxidized.

摘要

1949年,韦尔(3)证明,通过呼吸气体交换测量计算得出的代谢率与吸入气和呼出气中氧含量百分比之差近似成正比。尽管自1949年以来,关于消耗氧气的能量当量以及各种营养素氧化的呼吸商的值已有所修订,但我们表明,对于膳食碳水化合物、脂肪和蛋白质的氧化,计算误差通常仍低于0.5%。在不加批判地将原始方程应用于其他营养素正在被氧化的情况时,误差可能达到3%,尽管计算代谢率的替代方法可能同样存在误差。我们从第一原理出发,给出了遵循韦尔方法计算代谢率的一般数学解的推导过程。还提供了一些例子,说明在不同营养素组合被氧化时,如何进一步推导更精确计算代谢率的特定方程。

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