首页> 外文期刊>Instrumentation science & technology: Designs and applications for chemistry, biotechnology, and environmental science >DESIGN AND IMPLEMENTATION OF A WEARABLE, MULTIPARAMETER PHYSIOLOGICAL MONITORING SYSTEM FOR THE STUDY OF HUMAN HEAT STRESS, COLD STRESS, AND THERMAL COMFORT
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DESIGN AND IMPLEMENTATION OF A WEARABLE, MULTIPARAMETER PHYSIOLOGICAL MONITORING SYSTEM FOR THE STUDY OF HUMAN HEAT STRESS, COLD STRESS, AND THERMAL COMFORT

机译:一种可穿戴的多参数人体生理监测系统的设计与实现,该系统用于研究人的热应力,冷应力和热舒适度

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This article describes the design and implementation of a wearable, multiparameter physiological monitoring system called the Sensing Belt system, which consists of multiple sensors integrated into fabric that communicates with a physiological data acquisition unit (PDAU) that in turn transmits these data to a remote monitoring center (RMC) for analysis. A number of vital signs can be acquired by the system, including electrocardiography (ECG), respiratory inductance plethysmograph (RIP), posture/activity, multipoint skin temperature (T_(SK)), and rectal temperature (T_(RC)). The physiological data can be stored on a MicroSD card or transmitted to the RMC, where specialized analysis will be provided to extract parameters such as heart rate (HR), respiratory rate (RR), respiratory sinus arrhythmia (RSA), and human energy expenditure. The RMC can receive physiological data from up to 16 Sensing Belt users simultaneously. A medical validation test was carried out to compare the accuracy of the physiological data obtained from the Sensing Belt system with data obtained concurrently from traditional, calibrated laboratory physiological monitoring instruments. The results showed that most of the variables measured by the Sensing Belt are within acceptable error limits. The mean temperature on two trials (walking and running) showed significantly higher mean differences than on other trials, but the correlation coefficient (r) remained high (0.985 and 0.989, respectively). This study demonstrates the accuracy of the Sensing Belt system for the monitoring of these physiological parameters and suggests that it could be used to provide a complete human physiological monitoring platform for the study of human heat stress, cold stress, and thermal comfort.
机译:本文介绍了称为“传感带”系统的可穿戴,多参数生理监测系统的设计和实现,该系统由集成到织物中的多个传感器组成,该传感器与生理数据采集单元(PDAU)通信,然后将这些数据传输到远程监测中心(RMC)进行分析。该系统可以获取许多生命体征,包括心电图(ECG),呼吸电感体积描记器(RIP),姿势/活动,多点皮肤温度(T_(SK))和直肠温度(T_(RC))。生理数据可以存储在MicroSD卡上或传输到RMC,在那里将提供专门的分析以提取参数,例如心率(HR),呼吸频率(RR),呼吸窦性心律不齐(RSA)和人体能量消耗。 RMC可以同时从多达16个传感带用户接收生理数据。进行了医学验证测试,以比较从“传感带”系统获得的生理数据与从传统的校准实验室生理监测仪器同时获得的数据的准确性。结果表明,传感带测量的大多数变量都在可接受的误差范围内。两项试验(步行和跑步)的平均温度显示出明显高于其他试验的平均温度差异,但相关系数(r)仍然很高(分别为0.985和0.989)。这项研究证明了传感带系统监测这些生理参数的准确性,并暗示它可以用来为研究人类热应激,冷应激和热舒适性提供一个完整的人类生理监测平台。

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