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评估抗阻运动能量消耗的方法:系统范围综述。

Methods to Assess Energy Expenditure of Resistance Exercise: A Systematic Scoping Review.

机构信息

School of Behavioural and Health Sciences, Australian Catholic University, North Sydney, Australia.

School of Behavioural and Health Sciences, Australian Catholic University, Strathfield, Australia.

出版信息

Sports Med. 2024 Sep;54(9):2357-2372. doi: 10.1007/s40279-024-02047-8. Epub 2024 Jun 19.

Abstract

BACKGROUND

Nutrition guidance for athletes must consider a range of variables to effectively support individuals in meeting energy and nutrient needs. Resistance exercise is a widely adopted training method in athlete preparation and rehabilitation and therefore is one such variable that will influence nutrition guidance. Given its prominence, the capacity to meaningfully quantify resistance exercise energy expenditure will assist practitioners and researchers in providing nutrition guidance. However, the significant contribution of anaerobic metabolism makes quantifying energy expenditure of resistance exercise challenging.

OBJECTIVE

The aim of this scoping review was to investigate the methods used to assess resistance exercise energy expenditure.

METHODS

A literature search of Medline, SPORTDiscus, CINAHL and Web of Science identified studies that included an assessment of resistance exercise energy expenditure. Quality appraisal of included studies was performed using the Rosendal Scale.

RESULTS

A total of 19,867 studies were identified, with 166 included after screening. Methods to assess energy expenditure included indirect calorimetry (n = 136), blood lactate analysis (n = 25), wearable monitors (n = 31) and metabolic equivalents (n = 4). Post-exercise energy expenditure was measured in 76 studies. The reported energy expenditure values varied widely between studies.

CONCLUSIONS

Indirect calorimetry is widely used to estimate energy expenditure. However, given its limitations in quantifying glycolytic contribution, indirect calorimetry during and immediately following exercise combined with measures of blood lactate are likely required to better quantify total energy expenditure. Due to the cumbersome equipment and technical expertise required, though, along with the physical restrictions the equipment places on participants performing particular resistance exercises, indirect calorimetry is likely impractical for use outside of the laboratory setting, where metabolic equivalents may be a more appropriate method.

摘要

背景

运动员的营养指导必须考虑一系列变量,以有效地帮助个人满足能量和营养需求。抗阻运动是运动员准备和康复中广泛采用的训练方法,因此是影响营养指导的一个变量。鉴于其重要性,有能力对抗阻运动的能量消耗进行有意义的量化将有助于从业者和研究人员提供营养指导。然而,无氧代谢的巨大贡献使得量化抗阻运动的能量消耗具有挑战性。

目的

本综述旨在调查评估抗阻运动能量消耗的方法。

方法

通过 Medline、SPORTDiscus、CINAHL 和 Web of Science 进行文献检索,确定了包含评估抗阻运动能量消耗的研究。使用 Rosendal 量表对纳入研究进行质量评估。

结果

共检索到 19867 篇研究,筛选后纳入 166 篇。评估能量消耗的方法包括间接测热法(n=136)、血乳酸分析(n=25)、可穿戴监测器(n=31)和代谢当量(n=4)。76 项研究测量了运动后的能量消耗。报告的能量消耗值在研究之间差异很大。

结论

间接测热法广泛用于估计能量消耗。然而,鉴于其在量化糖酵解贡献方面的局限性,在运动中和运动后立即结合血乳酸测量来更好地量化总能量消耗可能是必要的。然而,由于间接测热法需要复杂的设备和技术专业知识,以及设备对参与者进行特定抗阻运动的身体限制,它可能不适用于实验室环境之外,在实验室环境之外,代谢当量可能是一种更合适的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e975/11393209/6e24125dcb40/40279_2024_2047_Fig1_HTML.jpg

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