Wearable real-time multi-health parameter monitoring system

IF 1 4区 工程技术 Q3 MATERIALS SCIENCE, TEXTILES
WenFeng Qin, Yunsheng Xue, Hao Peng, Gang Li, Wang Chen, Xin Zhao, Jie Pang, Bin Zhou
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Abstract

Purpose The purpose of this study is to design a wearable medical device as a human care platform and to introduce the design details, key technologies and practical implementation methods of the system. Design/methodology/approach A multi-channel data acquisition scheme based on PCI-E (rapid interconnection of peripheral components) was proposed. The flexible biosensor is integrated with the flexible data acquisition card with monitoring capability, and the embedded (device that can operate independently) chip STM32F103VET6 is used to realize the simultaneous processing of multi-channel human health parameters. The human health parameters were transferred to the upper computer LabVIEW by intelligent clothing through USB or wireless Bluetooth to complete the transmission and processing of clinical data, which facilitates the analysis of medical data. Findings The smart clothing provides a mobile medical cloud platform for wearable medical through cloud computing, which can continuously monitor the body's wrist movement, body temperature and perspiration for 24 h. The result shows that each channel is completely accurate to the top computer display, which can meet the expected requirements, and the wearable instant care system can be applied to healthcare. Originality/value The smart clothing in this study is based on the monitoring and diagnosis of textiles, and the electronic communication devices can cooperate and interact to form a wearable textile system that provides medical monitoring and prevention services to individuals in the fastest and most accurate way. Each channel of the system is precisely matched to the display screen of the host computer and meets the expected requirements. As a real-time human health protection platform technology, continuous monitoring of human vital signs can complete the application of human motion detection, medical health monitoring and human–computer interaction. Ultimately, such an intelligent garment will become an integral part of our everyday clothing.
可穿戴多健康参数实时监测系统
本研究的目的是设计一种可穿戴医疗设备作为人体护理平台,并介绍该系统的设计细节、关键技术和实际实现方法。提出了一种基于PCI-E(外设元件快速互连)的多通道数据采集方案。柔性生物传感器与具有监测功能的柔性数据采集卡集成,采用嵌入式(可独立运行的器件)芯片STM32F103VET6实现多通道人体健康参数的同时处理。将人体健康参数通过智能服装通过USB或无线蓝牙传输到上位机LabVIEW,完成临床数据的传输和处理,便于对医疗数据进行分析。智能服装通过云计算为可穿戴医疗提供了一个移动医疗云平台,可以连续24小时监测人体的手腕运动、体温和排汗情况。结果表明,每个通道完全精确到计算机顶部显示,可以满足预期要求,可穿戴即时护理系统可以应用于医疗保健。本研究中的智能服装是基于对纺织品的监测和诊断,电子通信设备可以协同互动,形成一个可穿戴的纺织品系统,以最快、最准确的方式为个人提供医疗监测和预防服务。系统各通道与上位机显示屏精确匹配,达到预期要求。作为一种实时人体健康防护平台技术,对人体生命体征进行连续监测,可以完成人体运动检测、医疗健康监测、人机交互等应用。最终,这种智能服装将成为我们日常服装中不可或缺的一部分。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
2.40
自引率
8.30%
发文量
51
审稿时长
10 months
期刊介绍: Addresses all aspects of the science and technology of clothing-objective measurement techniques, control of fibre and fabric, CAD systems, product testing, sewing, weaving and knitting, inspection systems, drape and finishing, etc. Academic and industrial research findings are published after a stringent review has taken place.
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