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Novel implementation of IoT based non-invasive sensor system for real-time monitoring of intravenous fluid level for assistive e-healthcare

机译:基于物联网的非侵入式传感器系统的新型实现,用于实时监测静脉液位以辅助电子医疗

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Purpose The purpose of the study is to design and develop an pervasive and smart Internet of Things (IoT)-based sensor system to monitor he real-time intravenous (IV) fluid bag level. Design/methodology/approach This paper investigates such issue and performs several experiments to develop a non-invasive, semi-automatic system to monitor IoT-based IV fluid level in real-time. Findings The outcome of this study is a prototype hardware that includes an ESP8266 based embedded Web server to disseminate the fluid exhaust status flag to its connected users. Nurses can get the prompt intimation about the status of IV fluid bag whether it is about to get empty. Research limitations/implications - IoT is the backbone of the proposed system. Multi-master system need to be studied in future. Practical implications - Non-invasive and real-time IoT-based novel technique is developed with power-efficient and cost-effective pervasive sensors. Social implications - This is applicable for pervasive and assistive e-health-care services by care givers and medical professionals.Originality/value The deployed system is controlled by ATtiny85 with help of LM35 temperature sensor. The results show a promising future of the proposed development in enhancing IoT-based smart health-care service in the coming days.
机译:目的这项研究的目的是设计和开发一种基于智能物联网(IoT)的普及型智能传感器系统,以监控实时静脉(IV)液袋水平。设计/方法/方法本文研究了此问题,并进行了一些实验,以开发一种非侵入性的半自动系统来实时监控基于IoT的IV液位。研究结果本研究的结果是一个原型硬件,其中包括基于ESP8266的嵌入式Web服务器,用于将流体排放状态标志分发给其所连接的用户。护士可以迅速得知静脉输液袋是否要排空。研究限制/意义-物联网是所提议系统的基础。将来需要研究多主系统。实际意义-使用省电且经济高效的普及型传感器开发了基于物联网的非侵入式实时技术。社会影响-这适用于护理人员和医疗专业人员的普适性和辅助性电子保健服务。原创性/价值部署的系统由ATtiny85在LM35温度传感器的帮助下进行控制。结果表明,在未来几天中,在增强基于物联网的智能医疗服务方面,拟议开发的发展前景广阔。

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