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通过测量呼吸气体交换来计算身体脂肪的短期变化。

Calculation of short-term changes in body fat from measurement of respiratory gas exchange.

作者信息

King R F, Almond D J, Oxby C B, Holmfield J H, McMahon M J

出版信息

Metabolism. 1984 Sep;33(9):826-32. doi: 10.1016/0026-0495(84)90109-4.

DOI:10.1016/0026-0495(84)90109-4
PMID:6433148
Abstract

A method is presented where the gain in body fat of patients receiving intravenous nutrition (IVN) may be computed using indirect calorimetry. When patients are administered their nutritional requirements soley in the form of glucose and amino acids, metabolism of these will result in changes in the exchange of carbon dioxide and oxygen. Since net fat synthesis results in the production of excess carbon dioxide whereas degradation results in a net reduction in the production of carbon dioxide, changes in RQ will reflect underlying changes in net fat balance. A correction may be applied to these measurements to allow for net protein balance. The basic equations and stoichiometry for the synthesis of tripalmitin from glucose are shown together with the derivation of the formulae that enable the calculation of fat changes to be made. A group of 13 patients was used to assess the technique and given energy at 1.5 times resting metabolic expenditure together with adequate nitrogen as amino acids to maintain protein balance. The patients were monitored daily in the resting state and fed at a constant rate so that errors due to discontinuous intake or exercise were avoided. The group was found to gain 874 +/- 243 g fat during the 14 day study. Although individual changes of fat in patients ranged from -169 to +2487 g, net synthesis of fat was found in ten of them. It is suggested that indirect calorimetry is useful not only in the assessment of actual expenditure in patients but can also be used to quantify the fate of administered fuels during intravenous nutrition.

摘要

本文介绍了一种方法,可通过间接测热法计算接受静脉营养(IVN)患者的体脂增加量。当仅以葡萄糖和氨基酸的形式向患者提供营养需求时,它们的代谢会导致二氧化碳和氧气交换的变化。由于净脂肪合成会导致二氧化碳产生量增加,而脂肪分解会导致二氧化碳产生量净减少,呼吸商(RQ)的变化将反映净脂肪平衡的潜在变化。可对这些测量值进行校正,以考虑净蛋白质平衡。展示了由葡萄糖合成三棕榈精的基本方程式和化学计量关系,以及用于计算脂肪变化的公式的推导过程。使用一组13名患者来评估该技术,给予他们相当于静息代谢消耗1.5倍的能量以及足够的作为氨基酸的氮,以维持蛋白质平衡。每天在静息状态下对患者进行监测,并以恒定速率喂食,以避免因不连续摄入或运动引起的误差。在为期14天的研究中,该组患者被发现增加了874±243克脂肪。尽管患者个体的脂肪变化范围为-169至+2487克,但其中有10人出现了脂肪的净合成。研究表明,间接测热法不仅有助于评估患者的实际能量消耗,还可用于量化静脉营养期间所给予营养物质的去向。

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Calculation of short-term changes in body fat from measurement of respiratory gas exchange.通过测量呼吸气体交换来计算身体脂肪的短期变化。
Metabolism. 1984 Sep;33(9):826-32. doi: 10.1016/0026-0495(84)90109-4.
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