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经典的全身代谢实验:闭路呼吸测量法。

Classical experiments in whole-body metabolism: closed-circuit respirometry.

机构信息

Department of Physical Therapy, Federal University of São Carlos, São Carlos, São Paulo, Brazil.

School of Kinesiology, University of British Columbia, 6108 Thunderbird Blvd, Vancouver, BC, V6T 1Z3, Canada.

出版信息

Eur J Appl Physiol. 2017 Oct;117(10):1929-1937. doi: 10.1007/s00421-017-3681-2. Epub 2017 Jul 26.

Abstract

As part of a series of reviews aimed at providing historical context to the study of whole-body metabolism, this article focuses on the technique of closed-circuit respirometry. Developed by nineteenth century physiologists Henri-Victor Regnault and Jules de Reiset, a constant-pressure closed-circuit calorimeter capable of measuring oxygen consumption and carbon dioxide production in small animals became the framework for future experiments on whole-body metabolism in humans. The volume-loss and volume-replenishment techniques can be used to indirectly assess energy expenditure using an oxygen reservoir; spirometers are simplistic in design but difficult to operate. Leaks, calibration errors, equilibration of gases and dead space are some of the major limitations of the methodology. Despite operational difficulties, closed-circuit respirometry is highly accurate and reproducible. Due to the bespoke nature of many closed-circuit systems, maintenance and repair is often troublesome. Compounded by technological advancement, closed-circuit techniques have become progressively outdated. Nevertheless, the classical experiments in whole-body metabolism played a pivotal role in furthering our understanding of basic human physiology and paved the way for current methodologies used in the field.

摘要

作为一系列旨在为全身代谢研究提供历史背景的综述的一部分,本文重点介绍了闭路呼吸测量技术。由 19 世纪生理学家 Henri-Victor Regnault 和 Jules de Reiset 开发的恒压闭路量热计能够测量小动物的耗氧量和二氧化碳产量,成为未来人体全身代谢实验的框架。体积损失和体积补充技术可使用氧气储存库间接评估能量消耗;气体流量计设计简单,但操作困难。泄漏、校准错误、气体平衡和死腔是该方法的一些主要限制。尽管操作困难,闭路呼吸测量技术非常准确且可重复。由于许多闭路系统的特殊性,维护和修理通常很麻烦。再加上技术进步,闭路技术已经逐渐过时。然而,全身代谢的经典实验在增进我们对基本人体生理学的理解方面发挥了关键作用,并为该领域当前使用的方法铺平了道路。

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