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StressFit:一种混合可穿戴物理化学传感器套件,用于同时测量肌电图和汗液皮质醇。

StressFit: a hybrid wearable physicochemical sensor suite for simultaneously measuring electromyogram and sweat cortisol.

机构信息

Tufts University, Medford, MA, 02155, USA.

Electrical and Computer Engineering Department, The University of Texas at Tyler, Tyler, TX, 75799, USA.

出版信息

Sci Rep. 2024 Nov 29;14(1):29667. doi: 10.1038/s41598-024-81042-5.

Abstract

This study introduces StressFit, a novel hybrid wearable sensor system designed to simultaneously monitor electromyogram (EMG) signals and sweat cortisol levels. Our approach involves the development of a noninvasive skin patch capable of monitoring skin temperature, sweat pH, cortisol levels, and corresponding EMG signals using a combination of physical and electrochemical sensors integrated with EMG electrodes. StressFit was optimized by enhancing sensor output and mechanical resilience for practical application on curved body surfaces, ensuring accurate acquisition of cortisol, pH, body temperature, and EMG data without sensor interference. In addition, we integrated an onboard data processing unit with Internet of Things (IoT) capabilities for real-time acquisition, processing, and wireless transmission of sensor measurements. Sweat cortisol and EMG signals were measured during cycling exercises to evaluate the sensor suite's performance. Our results demonstrate an increase in sweat cortisol levels and decrease in the EMG signal's power spectral density following exercise. These findings suggest that combining sweat cortisol levels with EMG signals in real-time could serve as valuable indicators for stress assessment and early detection of abnormal physiological changes.

摘要

本研究介绍了 StressFit,这是一种新型混合可穿戴传感器系统,旨在同时监测肌电图 (EMG) 信号和汗液皮质醇水平。我们的方法涉及开发一种非侵入性的皮肤贴片,该贴片能够使用与 EMG 电极集成的物理和电化学传感器组合来监测皮肤温度、汗液 pH 值、皮质醇水平和相应的 EMG 信号。StressFit 通过增强传感器输出和机械弹性进行了优化,以适应在曲面上的实际应用,确保在没有传感器干扰的情况下准确获取皮质醇、pH 值、体温和 EMG 数据。此外,我们集成了具有物联网 (IoT) 功能的板载数据处理单元,用于传感器测量的实时采集、处理和无线传输。在骑自行车运动期间测量了汗液皮质醇和 EMG 信号,以评估传感器套件的性能。我们的结果表明,运动后汗液皮质醇水平升高,EMG 信号的功率谱密度降低。这些发现表明,实时结合汗液皮质醇水平和 EMG 信号可以作为压力评估和早期检测异常生理变化的有价值指标。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/58b6/11607362/4b7bbfe5fa9f/41598_2024_81042_Fig1_HTML.jpg

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