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测量代谢率的局限性与要求:一篇综述短文

Limitations and requirements for measuring metabolic rates: a mini review.

作者信息

Lighton J R B

机构信息

Sable Systems International, North Las Vegas, NV, USA.

出版信息

Eur J Clin Nutr. 2017 Mar;71(3):301-305. doi: 10.1038/ejcn.2016.265. Epub 2017 Jan 11.

Abstract

Metabolic measurement of humans and model animals is an important aspect of biomedicine. Particularly, in the case of model animals, the limitations of currently widely used metabolic measurement methods are not widely understood. In this mini-review, I explain the theoretical underpinnings of flow-through respirometry as a linear time-invariant system, and the (usually serious) distortions of metabolic data caused by the interaction of chamber volume and flow rate. These can be ameliorated by increasing the flow rate through the chamber, though this is at the expense of the magnitude of the O depletion and CO enhancement signals from which metabolic rates are calculated. If achieved, however, the improvement in temporal response that follows higher flow rates can be marked, and allows confident and accurate measurement of resting and active energy expenditure. Applications of this approach in multiplexing gas signals from multiple cages, and in human room calorimetry, are also discussed.

摘要

人类和模式动物的代谢测量是生物医学的一个重要方面。特别是对于模式动物,目前广泛使用的代谢测量方法的局限性尚未得到广泛了解。在这篇小型综述中,我解释了作为线性时不变系统的流通式呼吸测定法的理论基础,以及由腔室体积和流速相互作用导致的代谢数据(通常很严重)的失真。通过增加通过腔室的流速可以改善这些问题,不过这是以计算代谢率所依据的氧气消耗和二氧化碳增加信号的幅度为代价的。然而,如果能够实现,更高流速带来的时间响应改善可能会很显著,并且能够可靠且准确地测量静息和活动能量消耗。还讨论了这种方法在多路复用来自多个笼子的气体信号以及人体房间量热法中的应用。

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