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根据体重变化估算水合状态时的误差。

Errors in the estimation of hydration status from changes in body mass.

作者信息

Maughan Ronald J, Shirreffs Susan M, Leiper John B

机构信息

School of Sport and Exercise Sciences, Loughborough University, Loughborough, UK.

出版信息

J Sports Sci. 2007 May;25(7):797-804. doi: 10.1080/02640410600875143.

Abstract

Hydration status is not easily measured, but acute changes in hydration status are often estimated from body mass change. Changes in body mass are also often used as a proxy measure for sweat losses. There are, however, several sources of error that may give rise to misleading results, and our aim in this paper is to quantify these potential errors. Respiratory water losses can be substantial during hard work in dry environments. Mass loss also results from substrate oxidation, but this generates water of oxidation which is added to the body water pool, thus dissociating changes in body mass and hydration status: fat oxidation actually results in a net gain in body mass as the mass of carbon dioxide generated is less than the mass of oxygen consumed. Water stored with muscle glycogen is presumed to be made available as endogenous carbohydrate stores are oxidized. Fluid ingestion and sweat loss complicate the picture by altering body water distribution. Loss of hypotonic sweat results in increased osmolality of body fluids. Urine and faecal losses can be measured easily, but changes in the water content of the bladder and the gastrointestinal tract cannot. Body mass change is not always a reliable measure of changes in hydration status and substantial loss of mass may occur without an effective net negative fluid balance.

摘要

水合状态不易测量,但水合状态的急性变化通常根据体重变化来估算。体重变化也常被用作出汗损失的替代指标。然而,有几个误差来源可能会导致误导性结果,本文的目的是量化这些潜在误差。在干燥环境中进行剧烈运动时,呼吸失水可能相当可观。体重减轻也源于底物氧化,但这会产生氧化水,而氧化水会被添加到身体水池中,从而使体重变化和水合状态分离:脂肪氧化实际上会导致体重净增加,因为产生的二氧化碳质量小于消耗的氧气质量。随着内源性碳水化合物储备被氧化,与肌肉糖原一起储存的水被认为会被释放出来。液体摄入和出汗损失会改变身体水分分布,从而使情况变得复杂。低渗性出汗会导致体液渗透压升高。尿液和粪便损失很容易测量,但膀胱和胃肠道的水分含量变化却无法测量。体重变化并不总是水合状态变化的可靠指标,在没有有效的净负液体平衡的情况下,可能会发生大量体重减轻。

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