King Roderick F G J, Cooke Carlton, Carroll Sean, O'Hara John
Carnegie Research Institute, Faculty of Sport and Education, Leeds Metropolitan University, Leeds, UK.
J Sports Sci. 2008 Oct;26(12):1361-3. doi: 10.1080/02640410802192768.
The potential for imprecision in the estimation of hydration status from changes in body mass has been outlined previously but the equations derived from these derivations appear inconsistent. Reconciliation of body mass loss in terms of sweat loss and effective body water loss is possible from specific equation sets provided that gains and losses of both body mass and water used in the derivation of sweat loss and to derive effective body water loss are in inclusive equation sets. This is obligatory so that mass and water changes as quantifiable determinants are consistent with both internal processes and external gains and losses. Thus, body mass loss, substrate oxidation, metabolic water, and all the terms used in simultaneous equation sets have to be reconciled not only as identical variables but mathematically balance exactly. The revised equation for effective body water loss given here is different from that originally proposed. Metabolic water is part of body mass loss corrected for substrate oxidation, fluid ingestion, and respiratory water to derive sweat loss and it may not be justified to also include water associated with glycogen as releasable bound water. Accordingly, our calculated effective body water loss is substantially a greater loss than originally supposed but clearly still less than the simple balance between mass loss and fluid ingested.
先前已概述了根据体重变化估算水合状态时存在不精确性的可能性,但从这些推导得出的方程式似乎并不一致。只要在推导出汗损失和有效身体水分损失时所使用的体重和水的增加与减少包含在综合方程组中,就可以通过特定的方程组来协调体重损失与出汗损失和有效身体水分损失之间的关系。这是必要的,以便作为可量化决定因素的体重和水分变化与内部过程以及外部的得失相一致。因此,体重损失、底物氧化、代谢水以及联立方程组中使用的所有项不仅必须作为相同变量进行协调,而且在数学上要精确平衡。此处给出的有效身体水分损失的修正方程与最初提出的方程不同。代谢水是经底物氧化、液体摄入和呼吸水校正后得出出汗损失的体重损失的一部分,将与糖原相关的水作为可释放的结合水也包括在内可能不合理。因此,我们计算出的有效身体水分损失比原先设想的要大得多,但显然仍小于体重损失与摄入液体之间的简单差值。