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具有低成本可穿戴监测设备的智能医疗系统,用于测量住院患者的基本生命体征。

Intelligent Medical System with Low-Cost Wearable Monitoring Devices to Measure Basic Vital Signals of Admitted Patients.

作者信息

Sakphrom Siraporn, Limpiti Thunyawat, Funsian Krit, Chandhaket Srawouth, Haiges Rina, Thinsurat Kamon

机构信息

School of Engineering and Technology, Walailak University, Nakhon Si Thammarat 80160, Thailand.

Center of Excellence on Wood and Biomaterials, Walailak University, Nakhon Si Thammarat 80160, Thailand.

出版信息

Micromachines (Basel). 2021 Jul 31;12(8):918. doi: 10.3390/mi12080918.

Abstract

This article presents the design of a low-cost Wireless Body Sensor Network (WBSN) for monitoring vital signs including a low-cost smart wristwatch that contains an ESP-32 microcontroller and three sensors: heart rate (HR), blood pressure (BP) and body temperature (BT), and an Internet of Things (IoT) platform. The vital signs data are processed and displayed on an OLED screen of the patient's wristwatch and sent the data over a wireless connection (Wi-Fi) and a Cloud Thing Board system, to store and manage the data in a data center. The data can be analyzed and notified to medical staff when abnormal signals are received from the sensors based on a set parameters from specialists. The proposed low-cost system can be used in a wide range of applications including field hospitals for asymptotic or mild-condition COVID-19 patients as the system can be used to screen those patients out of symptomatic patients who require more costly facilities in a hospital with considerably low expense and installation time, also suitable for bedridden patients, palliative care patients, etc. Testing experiments of a 60-person sample size showed an acceptable accuracy level compared with standard devices when testing with 60 patient-samples with the mean errors heart rate of 1.22%, systolic blood pressure of 1.39%, diastolic blood pressure of 1.01%, and body temperature of 0.13%. According to testing results with 10 smart devices connected with the platform, the time delay caused by the distance between smart devices and the router is 10 s each round with the longest outdoor distance of 200 m. As there is a short-time delay, it does not affect the working ability of the smart system. It is still making the proposed system be able to show patient's status and function in emergency cases.

摘要

本文介绍了一种用于监测生命体征的低成本无线体域网(WBSN)的设计,该网络包括一个低成本智能手表,其中包含一个ESP-32微控制器和三个传感器:心率(HR)、血压(BP)和体温(BT),以及一个物联网(IoT)平台。生命体征数据在患者手表的OLED屏幕上进行处理和显示,并通过无线连接(Wi-Fi)和云物联平台系统发送数据,以便在数据中心存储和管理数据。当根据专家设置的参数从传感器接收到异常信号时,数据可以进行分析并通知医务人员。所提出的低成本系统可用于广泛的应用,包括为无症状或轻症COVID-19患者设立的野战医院,因为该系统可用于以相当低的费用和安装时间将这些患者从需要更昂贵设施的有症状患者中筛选出来,也适用于卧床患者、姑息治疗患者等。对60人样本量的测试实验表明,与标准设备相比,在对60个患者样本进行测试时,心率平均误差为1.22%,收缩压为1.39%,舒张压为1.01%,体温为0.13%,具有可接受的准确度水平。根据与平台连接的10个智能设备的测试结果,智能设备与路由器之间的距离导致的时间延迟每轮为10秒,最长室外距离为200米。由于存在短时间延迟,它不会影响智能系统的工作能力。这仍然使得所提出的系统能够在紧急情况下显示患者的状态和功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d839/8399336/c86d9e9db58e/micromachines-12-00918-g001.jpg

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