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一种用于家庭医疗保健应用的实时可穿戴生理监测系统。

A Real-Time Wearable Physiological Monitoring System for Home-Based Healthcare Applications.

机构信息

Department of Electronic Engineering, Gachon University, Seongnam 13120, Korea.

Department of Electrical Engineering, Incheon National University, Incheon 22012, Korea.

出版信息

Sensors (Basel). 2021 Dec 24;22(1):104. doi: 10.3390/s22010104.

Abstract

The acquisition of physiological data are essential to efficiently predict and treat cardiac patients before a heart attack occurs and effectively expedite motor recovery after a stroke. This goal can be achieved by using wearable wireless sensor network platforms for real-time healthcare monitoring. In this paper, we present a wireless physiological signal acquisition device and a smartphone-based software platform for real-time data processing and monitor and cloud server access for everyday ECG/EMG signal monitoring. The device is implemented in a compact size (diameter: 30 mm, thickness: 4.5 mm) where the biopotential is measured and wirelessly transmitted to a smartphone or a laptop for real-time monitoring, data recording and analysis. Adaptive digital filtering is applied to eliminate any interference noise that can occur during a regular at-home environment, while minimizing the data process time. The accuracy of ECG and EMG signal coverage is assessed using Bland-Altman analysis by comparing with a reference physiological signal acquisition instrument (RHS2116 Stim/Recording System, Intan). Signal coverage of R-R peak intervals showed almost identical outcome between this proposed work and the RHS2116, showing a mean difference in heart rate of 0.15 ± 4.65 bpm and a Wilcoxon's value of 0.133. A 24 h continuous recording session of ECG and EMG is conducted to demonstrate the robustness and stability of the device based on extended time wearability on a daily routine.

摘要

获取生理数据对于在心脏病发作前有效预测和治疗心脏病患者以及在中风后有效促进运动康复至关重要。这一目标可以通过使用可穿戴无线传感器网络平台实现实时医疗保健监测来实现。在本文中,我们提出了一种无线生理信号采集设备和基于智能手机的软件平台,用于实时数据处理和监测以及云服务器访问,以进行日常 ECG/EMG 信号监测。该设备的尺寸小巧(直径:30 毫米,厚度:4.5 毫米),可测量生物电势并通过无线传输到智能手机或笔记本电脑进行实时监测、数据记录和分析。自适应数字滤波用于消除在家中环境中可能发生的任何干扰噪声,同时最小化数据处理时间。通过与参考生理信号采集仪器(RHS2116 Stim/Recording System,Intan)进行 Bland-Altman 分析来评估 ECG 和 EMG 信号覆盖的准确性。RR 峰间隔的信号覆盖几乎与这项工作和 RHS2116 完全相同,心率的平均差异为 0.15±4.65 bpm,Wilcoxon 值为 0.133。进行了 24 小时的 ECG 和 EMG 连续记录,以展示设备的稳健性和稳定性,这是基于日常长时间佩戴的。

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