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一种用于运动期间汗液电解质监测的可穿戴流体收集贴片及离子色谱法。

A wearable fluidic collection patch and ion chromatography method for sweat electrolyte monitoring during exercise.

作者信息

Steijlen Annemarijn S M, Bastemeijer Jeroen, Groen Pim, Jansen Kaspar M B, French Patrick J, Bossche Andre

机构信息

Delft University of Technology, Faculty of Electrical Engineering, Mathematics & Computer Science, Mekelweg 4, Delft, 2628 CD, The Netherlands.

出版信息

Anal Methods. 2020 Dec 23;12(48):5885-5892. doi: 10.1039/d0ay02014a.

Abstract

This paper presents a method to continuously collect and reliably measure sweat analyte concentrations during exercise. The method can be used to validate newly developed sweat sensors and to obtain insight into intraindividual variations of sweat analytes in athletes. First, a novel design of a sweat collection system is created. The sweat collection patch, that is made from hydrophilized foil and a double-sided acrylate adhesive, consists of a reservoir array that collects samples consecutively in time. During a physiological experiment, sweat can be collected from the back of a participant and the filling speed of the collector is monitored by using a camera. After the experiment, Na+, Cl- and K+ levels are measured with ion chromatography. Sweat analyte variations are measured during exercise for an hour at three different locations on the back. The Na+ and Cl- variations show a similar trend and the absolute concentrations vary with the patch location. Na+ and Cl- concentrations increase and K+ concentrations seem to decrease during this exercise. With this new sweat collection system, sweat Na+, Cl- and K+ concentrations can be collected over time during exercise at medium to high intensity, to analyse the trend in electrolyte variations per individual.

摘要

本文提出了一种在运动过程中持续收集并可靠测量汗液分析物浓度的方法。该方法可用于验证新开发的汗液传感器,并深入了解运动员汗液分析物的个体内差异。首先,创建了一种新颖的汗液收集系统设计。由亲水化箔和双面丙烯酸酯粘合剂制成的汗液收集贴片,包含一个能按时间顺序连续收集样本的储液器阵列。在生理实验期间,可以从参与者背部收集汗液,并使用相机监测收集器的填充速度。实验结束后,用离子色谱法测量Na +、Cl - 和K + 的水平。在运动过程中,在背部三个不同位置测量一小时内汗液分析物的变化。Na + 和Cl - 的变化呈现相似趋势,且绝对浓度随贴片位置而变化。在此运动过程中,Na + 和Cl - 浓度增加,而K + 浓度似乎下降。通过这种新的汗液收集系统,可以在中高强度运动期间随时间收集汗液中的Na +、Cl - 和K + 浓度,以分析每个个体的电解质变化趋势。

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