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Wearable Wireless Body Area Nodes for Remote Physiological Signal Monitoring System

机译:用于远程生理信号监测系统的可穿戴无线人体区域节点

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Wearable remote health monitoring systems have gained significant prominence in the recent years due to their growth in technological advances. One form of the Wearable Physiological Monitoring System (WPMS) is the Wearable Body Area Networks (WBAN) used to monitor the health status of the wearer for long durations. The paper discusses a prototype WBAN based wearable physiological monitoring system to monitor physiological parameters such as Electrocardiogram (ECG) and Electroencephalogram (EEG) acquired using a textile electrode, Photoplethysmogram (PPG), Galvanic Skin Response (GSR), Blood Pressure derived from analysis of Pulse Transmit Time (PTT) and body temperature. The WBAN consists of three sensor nodes that are placed strategically to acquire the physiological signals and the sensor nodes communicate to a chest/wrist worn sink node also known as wearable data acquisition hardware. The sink node receives physiological data from the sensor nodes and is transmitted to a remote monitoring station. The remote monitoring station receives the raw data and it is processed to remove noises, such as power line interference, baseline wander and tremor in the signals and the information is extracted and displayed. The WBANs are designed using the ZigBee wireless communication modules to transmit and receive the data. At the remote monitoring station the physiological parameters such as heart rate, pulse rate, systolic, diastolic blood pressure, GSR and body temperature are continuously monitored from the wearer. The data acquired from the wearable monitoring system is statically validated using a qualified medical device on 34 subjects.
机译:近年来,可穿戴式远程健康监测系统由于其技术进步而日益显着。可穿戴生理监测系统(WPMS)的一种形式是可穿戴人体局域网(WBAN),用于长期监测穿戴者的健康状况。本文讨论了一个基于WBAN的可穿戴生理监测原型系统,该系统可以监测生理参数,例如使用纺织电极获取的心电图(ECG)和脑电图(EEG),光体积描记图(PPG),皮肤电反应(GSR),通过分析得出的血压脉冲传输时间(PTT)和体温。 WBAN由三个传感器节点组成,这些传感器节点策略性地放置以获取生理信号,并且传感器节点与胸部/手腕穿戴的接收器节点(也称为可穿戴数据采集硬件)进行通信。宿节点从传感器节点接收生理数据,并将其传输到远程监视站。远程监控站接收原始数据,并对其进行处理以消除噪声,例如信号中的电源线干扰,基线漂移和震颤,然后提取并显示信息。 WBAN是使用ZigBee无线通信模块设计的,用于发送和接收数据。在远程监测站,从佩戴者处连续监测生理参数,例如心率,脉搏率,收缩压,舒张压,GSR和体温。从可穿戴监控系统获取的数据使用合格的医疗设备对34位受试者进行静态验证。

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