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Wearable Dry Sensors with Bluetooth Connection for Use in Remote Patient Monitoring Systems

机译:具有蓝牙连接的可穿戴式干式传感器,用于远程患者监护系统

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摘要

Cost reduction has become the primary theme of healthcare reforms globally. More providers are moving towards remote patient monitoring, which reduces the length of hospital stays and frees up their physicians and nurses for acute cases and helps them to tackle staff shortages. Physiological sensors are commonly used in many human specialties e.g. electrocardiogram (ECG) electrodes, for monitoring heart signals, and electroencephalogram (EEG) electrodes, for sensing the electrical activity of the brain, are the most well-known applications. Consequently there is a substantial unmet need for physiological sensors that can be simply and easily applied by the patient or primary carer, are comfortable to wear, can accurately sense parameters over long periods of time and can be connected to data recording systems using Bluetooth technology. We have developed a small, battery powered, user customizable portable monitor. This prototype is capable of recording three-axial body acceleration, skin temperature, and has up to four bio analogical front ends. Moreover, it is also able of continuous wireless transmission to any Bluetooth device including a PDA or a cellular phone. The bio-front end can use long-lasting dry electrodes or novel textile electrodes that can be embedded in clothes. The device can be powered by a standard mobile phone which has a Ni-MH 3.6V battery, to sustain more than seven days continuous functioning when using the Bluetooth Sniff mode to reduce TX power. In this paper, we present some of the evaluation experiments of our wearable personal monitor device with a focus on ECG applications.
机译:降低成本已成为全球医疗改革的主要主题。越来越多的医疗服务提供者正在转向远程病人监护,这缩短了住院时间,并为急诊病人腾出了医生和护士的空缺,并帮助他们解决了人员短缺的问题。生理传感器通常用于许多人类专科领域,例如人体生理学。最著名的应用是用于监视心脏信号的心电图(ECG)电极和用于检测大脑电活动的脑电图(EEG)电极。因此,对生理传感器的需求尚未得到满足,该生理传感器可以由患者或主要护理人员简单,容易地使用,佩戴舒适,可以长时间准确地感测参数并且可以使用蓝牙技术连接到数据记录系统。我们已经开发了一种小型的电池供电,用户可定制的便携式显示器。该原型能够记录三轴人体加速度,皮肤温度,并具有多达四个生物类似物前端。而且,它还能够连续无线传输到包括PDA或蜂窝电话在内的任何蓝牙设备。生物前端可以使用持久的干式电极或可以嵌入衣服中的新型纺织品电极。该设备可以由具有镍氢3.6V电池的标准手机供电,以在使用蓝牙嗅探模式降低TX功率时维持七天以上的连续运行。在本文中,我们介绍了我们的可穿戴式个人监护仪设备的一些评估实验,重点是ECG应用。

著录项

  • 来源
    《Studies in Health Technology and Informatics》 |2010年第2010期|p.57-65|共9页
  • 作者单位

    School of Electrical and Information Engineering, The University of Sydney, New South Wales, Australia,Heard Systems, Sydney, New South Wales, Australia,Biomedical Engineering Unit - Department of Electronic end Telecommunication Engineering (DIBET), University "Federico II", Naples, Italy,Gaetano-Gargiulo, Heard Systems, 502/143 York St, 2000, Sydney (NSW), Australia;

    Biomedical Engineering Unit - Department of Electronic end Telecommunication Engineering (DIBET), University "Federico II", Naples, Italy;

    Biomedical Engineering Unit - Department of Electronic end Telecommunication Engineering (DIBET), University "Federico II", Naples, Italy;

    School of Electrical and Information Engineering, The University of Sydney, New South Wales, Australia;

    School of Electrical and Information Engineering, The University of Sydney, New South Wales, Australia;

    School of Electrical and Information Engineering, The University of Sydney, New South Wales, Australia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    dry electrodes; wearable electrodes; bluetooth connection; telehealth; remote patient monitoring;

    机译:干电极可穿戴电极蓝牙连接;远程医疗;远程病人监护;

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