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一种基于物联网的智能系统,带有MQTT代理,用于潜在紧急情况或院前应用中的个体患者生命体征监测。

An IoT-Based Smart System with an MQTT Broker for Individual Patient Vital Sign Monitoring in Potential Emergency or Prehospital Applications.

作者信息

Tsao Yung-Chung, Cheng Fu-Jen, Li Yi-Hua, Liao Lun-De

机构信息

Institute of Biomedical Engineering and Nanomedicine, National Health Research Institutes, Zhunan, Taiwan.

Department of Emergency Medicine, Kaohsiung Chang Gung Memorial Hospital, Kaohsiung, Taiwan.

出版信息

Emerg Med Int. 2022 Jan 29;2022:7245650. doi: 10.1155/2022/7245650. eCollection 2022.

Abstract

Emergency care is a critical area of medicine whose outcomes are influenced by the time, availability, and accuracy of contextual information. The success of critical or emergency care is determined by the quality and accuracy of the information received during the emergency call and the data collected during emergency transportation. The Internet of Things (IoT) consists of many smart devices and components that communicate via their connection to the Internet, which is used to collect data with sensors that obtain personal health parameters. In the past, most health measurement systems were based on a single dedicated orientation, and few systems had multiple devices on the same platform. In addition to traditional health measurement technologies, most such systems use centralized data transmission, which means that health measurement data have become the exclusive intellectual asset of the system developer. Therefore, this study develops an IoT-based message-broker system that is deployed and demonstrated for five health devices: blood oxygen, blood pressure, forehead temperature, body temperature, and body weight sensors. A central controller accessed by radio-frequency identification (RFID) collects clients' health profiles on the cloud platform. All collected data can be quickly shared, analyzed, and visualized, and the health devices can be changed, added to, and removed reliably when the requirements change. Additionally, following the message queuing telemetry transport (MQTT) protocol, all devices can communicate with each other and be integrated into a higher-level health measurement standard (such as blood pressure plus weight or body temperature plus blood oxygen). We implement a smart healthcare monitoring system (SHMS) and verify its reliability. We use MQTT to establish an open communication format that other organizations can follow to perform individual patient vital sign monitoring in potential applications. The robustness and flexibility of this research can be verified through the addition of other systems. Through this structure, more large-scale health detection devices can be integrated into the method proposed in this research in the future. Personal RFID or health insurance cards can be used for personal services or in medical institutions, and the data can easily be shared through the mechanism of this research. Such information sharing will enable the utilization of medical resources to be maximized.

摘要

急诊护理是医学的一个关键领域,其治疗结果受到情境信息的及时性、可获取性和准确性的影响。危急或急诊护理的成功取决于紧急呼叫期间收到的信息质量和准确性,以及紧急运输期间收集的数据。物联网(IoT)由许多智能设备和组件组成,它们通过连接到互联网进行通信,互联网用于通过获取个人健康参数的传感器收集数据。过去,大多数健康测量系统基于单一的专用方向,很少有系统在同一平台上有多个设备。除了传统的健康测量技术外,大多数此类系统使用集中式数据传输,这意味着健康测量数据已成为系统开发者的专有知识资产。因此,本研究开发了一种基于物联网的消息代理系统,该系统针对五种健康设备进行了部署和演示:血氧、血压、额头温度、体温和体重传感器。通过射频识别(RFID)访问的中央控制器在云平台上收集客户的健康档案。所有收集到的数据都可以快速共享、分析和可视化,并且当需求发生变化时,可以可靠地更改、添加和移除健康设备。此外,遵循消息队列遥测传输(MQTT)协议,所有设备都可以相互通信,并集成到更高层次的健康测量标准(如血压加体重或体温加血氧)中。我们实现了一个智能医疗监测系统(SHMS)并验证了其可靠性。我们使用MQTT建立一种开放的通信格式,其他组织可以遵循这种格式在潜在应用中对个体患者的生命体征进行监测。通过添加其他系统可以验证本研究的稳健性和灵活性。通过这种结构,未来可以将更多大规模的健康检测设备集成到本研究提出的方法中。个人RFID或健康保险卡可用于个人服务或医疗机构,并且数据可以通过本研究的机制轻松共享。这种信息共享将使医疗资源的利用最大化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9885/8817861/7d40c00ebd0e/EMI2022-7245650.001.jpg

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