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具有触觉反馈的可穿戴微流控生物传感器,用于持续监测工人的水合生物标志物。

Wearable microfluidic biosensors with haptic feedback for continuous monitoring of hydration biomarkers in workers.

作者信息

Spinelli Julia C, Suleski Brandon J, Wright Donald E, Grow Joseph L, Fagans Gabriel R, Buckley Maura J, Yang Da Som, Yang Kaitao, Beil Steven M, Wallace Jessica C, DiZoglio Thomas S, Model Jeffrey B, Love Shirley, Macintosh David E, Scarth Alan P, Marrapode Matthew T, Serviente Corinna, Avila Raudel, Alahmad Barrak K, Busa Michael A, Wright John A, Li Weihua, Casa Douglas J, Rogers John A, Lee Stephen P, Ghaffari Roozbeh, Aranyosi Alexander J

机构信息

Epicore Biosystems, Inc, Cambridge, MA, USA.

Querrey-Simpson Institute for Bioelectronics, Northwestern University, Evanston, IL, USA.

出版信息

NPJ Digit Med. 2025 Feb 1;8(1):76. doi: 10.1038/s41746-025-01466-9.

Abstract

Real-time monitoring of hydration biomarkers in tandem with biophysical markers can offer valuable physiological insights about heat stress and related thermoregulatory response. These metrics have been challenging to achieve with wearable sensors. Here we present a closed-loop electrochemical/biophysical wearable sensing device and algorithms that directly measure whole-body sweat loss, sweating rate, sodium concentration, and sodium loss with electrode arrays embedded in a microfluidic channel. The device contains two temperature sensors for skin temperature and thermal flux recordings, and an accelerometer for real-time monitoring of activity level. An onboard haptic module enables vibratory feedback cues to the wearer once critical sweat loss thresholds are reached. Data is stored onboard in memory and autonomously transmitted via Bluetooth to a smartphone and cloud portal. Field studies conducted in physically demanding activities demonstrate the key capabilities of this platform to inform hydration interventions in highly challenging real-world settings.

摘要

实时监测水合生物标志物并结合生物物理标志物,可以提供有关热应激和相关体温调节反应的宝贵生理见解。使用可穿戴传感器实现这些指标一直具有挑战性。在此,我们展示了一种闭环电化学/生物物理可穿戴传感设备及算法,该设备通过嵌入微流体通道的电极阵列直接测量全身汗液流失、出汗率、钠浓度和钠流失。该设备包含两个用于记录皮肤温度和热通量的温度传感器,以及一个用于实时监测活动水平的加速度计。一旦达到关键的汗液流失阈值,板载触觉模块会向佩戴者发出振动反馈提示。数据存储在板载存储器中,并通过蓝牙自动传输到智能手机和云门户。在体力要求较高的活动中进行的实地研究证明了该平台在极具挑战性的现实环境中为水合干预提供信息的关键能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a02d/11787291/35397d6a8006/41746_2025_1466_Fig1_HTML.jpg

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