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优化关于脱水对运动表现影响的研究的建议。

Recommendations for Optimizing Research Regarding the Effects of Dehydration on Athletic Performance.

作者信息

Francisco Rúben, Armstrong Lawrence E, Silva Analiza M

机构信息

Exercise and Health Laboratory, CIPER, Faculdade Motricidade Humana, Universidade de Lisboa, Lisbon, Portugal.

Sport Sciences School of Rio Maior, Polytechnic University of Santarém, Rio Maior, Portugal.

出版信息

Sports Med. 2025 Sep 3. doi: 10.1007/s40279-025-02310-6.

Abstract

Dehydration's adverse impact on athletic performance is a critical concern in sports science, yet its investigation remains challenging due to interindividual variability and methodological inconsistencies. Traditional reductionist approaches, which isolate single variables, are insufficient to capture the multifactorial nature of dehydration, which emerges from dynamic interactions among physiological and behavioral factors. These include the method of inducing dehydration, protocol duration, type of fluid loss, environmental conditions, participant characteristics, assessment techniques, and potential nocebo effects. Despite the complexity and relevance of this issue, standardized guidelines for designing sport-specific dehydration studies are lacking. This article addresses this gap by cataloging key interacting variables and offering structured, adaptable guidance rather than proposing a rigid framework. It introduces a dual framework of 'challenges and considerations' and 'recommendations' for each factor, aiming to support researchers in developing rigorous, context-specific study designs. Ultimately, this approach will promote a more nuanced understanding of dehydration and facilitate reproducible, sport-relevant research advancement.

摘要

脱水对运动表现的不利影响是体育科学中的一个关键问题,但由于个体差异和方法上的不一致,对其进行研究仍然具有挑战性。传统的还原论方法,即孤立单一变量,不足以捕捉脱水的多因素性质,脱水是由生理和行为因素之间的动态相互作用产生的。这些因素包括诱导脱水的方法、方案持续时间、液体流失类型、环境条件、参与者特征、评估技术以及潜在的安慰剂效应。尽管这个问题复杂且相关,但缺乏针对特定运动的脱水研究设计的标准化指南。本文通过梳理关键的相互作用变量并提供结构化、可适应的指导,而不是提出一个僵化的框架,来填补这一空白。它针对每个因素引入了“挑战与考量”和“建议”的双重框架,旨在支持研究人员制定严谨的、针对具体情境的研究设计。最终,这种方法将促进对脱水有更细致入微的理解,并推动可重复的、与运动相关的研究进展。

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