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观点:人类能量消耗对增加体力活动的反应是累加的还是受限的?

Perspective: Is the Response of Human Energy Expenditure to Increased Physical Activity Additive or Constrained?

机构信息

Department for Health, University of Bath, Bath, United Kingdom; Centre for Nutrition, Exercise, and Metabolism, University of Bath, Bath, United Kingdom.

Professor Emeritus, School of Health and Life Sciences, Teesside University, Middlesborough, United Kingdom.

出版信息

Adv Nutr. 2023 May;14(3):406-419. doi: 10.1016/j.advnut.2023.02.003. Epub 2023 Feb 23.

Abstract

The idea that increasing physical activity directly adds to TEE in humans (additive model) has been challenged by the energy constrained hypothesis (constrained model). This model proposes that increased physical activity decreases other components of metabolism to constrain TEE. There is a logical evolutionary argument for trade-offs in metabolism, but, to date, evidence supporting constraint is subject to several limitations, including cross-sectional and correlational studies with potential methodological issues from extreme differences in body size/composition and lifestyle, potential statistical issues such as regression dilution and spurious correlations, and conclusions drawn from deductive inference rather than direct observation of compensation. Addressing these limitations in future studies, ideally, randomized controlled trials should improve the accuracy of models of human energy expenditure. The available evidence indicates that in many scenarios, the effect of increasing physical activity on TEE will be mostly additive although some energy appears to "go missing" and is currently unaccounted for. The degree of energy balance could moderate this effect even further.

摘要

增加身体活动直接增加人体 TEE(加法模型)的观点受到能量限制假说(限制模型)的挑战。该模型提出,增加身体活动会降低新陈代谢的其他成分,从而限制 TEE。新陈代谢的权衡具有逻辑进化上的合理性,但迄今为止,支持限制的证据存在一些局限性,包括横断面和相关性研究,由于体型/组成和生活方式的极端差异、潜在的统计问题(如回归稀释和虚假相关性)以及从演绎推理而不是直接观察补偿得出的结论,都存在潜在的方法学问题。在未来的研究中解决这些局限性,理想情况下,随机对照试验应该提高人类能量消耗模型的准确性。现有证据表明,在许多情况下,增加身体活动对 TEE 的影响将主要是加法的,尽管有些能量似乎“消失了”,目前还无法解释。能量平衡的程度甚至可以进一步调节这种影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2307/10201660/e29f09cd84ac/gr1.jpg

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