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可穿戴传感器系统,用于监测体力活动和热暴露的生理影响。

Wearable Sensor System to Monitor Physical Activity and the Physiological Effects of Heat Exposure.

机构信息

Department of Mechanical and Aerospace Engineering, University of California, Davis, CA 95616, USA.

Center for Healthcare Policy and Research, University of California, Davis, CA 95616, USA.

出版信息

Sensors (Basel). 2020 Feb 6;20(3):855. doi: 10.3390/s20030855.

Abstract

Mobile health monitoring via non-invasive wearable sensors is poised to advance telehealth for older adults and other vulnerable populations. Extreme heat and other environmental conditions raise serious health challenges that warrant monitoring of real-time physiological data as people go about their normal activities. Mobile systems could be beneficial for many communities, including elite athletes, military special forces, and at-home geriatric monitoring. While some commercial monitors exist, they are bulky, require reconfiguration, and do not fit seamlessly as a simple wearable device. We designed, prototyped and tested an integrated sensor platform that records heart rate, oxygen saturation, physical activity levels, skin temperature, and galvanic skin response. The device uses a small microcontroller to integrate the measurements and store data directly on the device for up to 48+ h. continuously. The device was compared to clinical standards for calibration and performance benchmarking. We found that our system compared favorably with clinical measures, such as fingertip pulse oximetry and infrared thermometry, with high accuracy and correlation. Our novel platform would facilitate an individualized approach to care, particularly those whose access to healthcare facilities is limited. The platform also can be used as a research tool to study physiological responses to a variety of environmental conditions, such as extreme heat, and can be customized to incorporate new sensors to explore other lines of inquiry.

摘要

通过非侵入式可穿戴传感器进行移动健康监测有望推动远程医疗在老年人和其他弱势群体中的应用。极端高温和其他环境条件带来了严重的健康挑战,需要对人们进行正常活动时的实时生理数据进行监测。移动系统可能对许多社区有益,包括精英运动员、军事特种部队和家庭老年监测。虽然存在一些商业监测器,但它们体积庞大,需要重新配置,并且不能像简单的可穿戴设备那样无缝集成。我们设计、制作了原型并测试了一个集成传感器平台,该平台可记录心率、血氧饱和度、身体活动水平、皮肤温度和皮肤电导反应。该设备使用一个小型微控制器来整合测量结果,并直接在设备上存储数据,最长可持续 48 小时以上。该设备与临床标准进行了校准和性能基准测试。我们发现,我们的系统与临床测量结果(如指尖脉搏血氧仪和红外测温仪)具有高度的准确性和相关性。我们的新型平台将为个性化护理提供便利,特别是那些获得医疗保健设施有限的人群。该平台还可以用作研究工具,研究各种环境条件(如极端高温)对生理反应的影响,并且可以定制以纳入新的传感器来探索其他研究方向。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/01bb/7039288/7589f514465f/sensors-20-00855-g001.jpg

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