Institute for Personalized and Translational Medicine, Ariel University, Ariel, Israel.
Department of Health Administration and Adelson School of Medicine, Ariel University, Ariel, Israel.
PLoS One. 2022 Aug 24;17(8):e0272646. doi: 10.1371/journal.pone.0272646. eCollection 2022.
A wearable body hydration sensor employing photoplethysmographic and galvanic biosensors was field evaluated using 240 human participants with equal numbers of men and women volunteers. Monitoring of water mass loss due to perspiration was performed by medical balance measurements following one of two different treadmill physical exercise regimens over 90 minutes in 15-minute intervals with intervening 10-minute rest periods. Participants wore two different models of the dehydration body monitor device mated to commercially-available smartwatches (Samsung Gear S2 and Samsung Gear Fit2). Device output was recorded by Bluetooth wireless link to a standard smartphone in 20-second blocks. Comparison of the devices with the standard measurement method (change in body mass measured by medical balance) indicated very close agreement between changes in body water mass and device output (percent normalized mean root square error averaged approximately 2% for all participants). Bland-Altman analyses of method agreement indicated that <5% of participant values fell outside of the 95% confidence interval limits of agreement and all measured value differences were normally distributed around the line of equality. The results of this first-ever field trial of a practical, wearable hydration monitor suggests that this device will be a reliable tool to aid in geriatric hydration monitoring and physical training scenarios.
一种采用光体积描记法和电化学生物传感器的可穿戴式身体水分传感器,通过 240 名男女志愿者进行了现场评估。在 90 分钟内,参与者按照两种不同的跑步机运动方案中的一种进行运动,每 15 分钟间隔进行一次,每次间隔 10 分钟休息。通过医疗平衡测量来监测因出汗而导致的水分流失。参与者佩戴了两种不同型号的脱水身体监测器,与市售的智能手表(三星 Gear S2 和三星 Gear Fit2)配套使用。设备输出通过蓝牙无线链接记录到标准智能手机上,每 20 秒记录一次。将设备与标准测量方法(医疗平衡测量的体重变化)进行比较,结果表明,身体水分变化与设备输出之间非常吻合(所有参与者的归一化平均均方根误差平均约为 2%)。方法一致性的 Bland-Altman 分析表明,<5%的参与者值超出了一致性界限的 95%置信区间,并且所有测量值差异均围绕着相等线呈正态分布。这是首次对实用、可穿戴式水合监测器进行的现场试验,结果表明该设备将成为老年水合监测和体育训练场景的可靠工具。