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Design and Experimentation of a Batteryless On-Skin RFID Graphene-Oxide Sensor for the Monitoring and Discrimination of Breath Anomalies

机译:用于监测和辨别呼吸异常的无电池皮肤上RFID石墨烯氧化物传感器的设计和实验

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摘要

Real-time and comfortable monitoring of the human breathing could allow identifying anomalies in the rhythm and waveform to be correlated with several pathologic disorders of respiratory and cardiovascular systems. A wireless sensor based on a flexible Kapton substrate, suitable to be stuck over the face skin like a plaster and provided with a graphene-oxide (GO) electrode, is here proposed for application to the monitoring of the moisture emitted during inhalations and exhalations. The GO-based electrode increases its dc resistance when exposed to humidity with a sensitivity of 60 Ω/RH. The device is compatible with the radiofrequency identification (RFID) standard in the UHF band. When used in battery-less mode, it can be read up to 60 cm. The RFID sensor has been successfully experimented in a measurement campaign involving 10 volunteers asked to reproduce a set of predefined normal and pathological breaths. The resulting resistance traces permit to well clusterize the breath patterns with respect to the respiration rate (extracted by a fast Fourier transform) and to the average peak variation of the sensor's resistance with an accuracy close to 90%.
机译:对人类呼吸的实时,舒适的监控可以使节律和波形异常与呼吸和心血管系统的多种病理疾病相关。在此提出一种基于柔性Kapton基板的无线传感器,该传感器适合像膏药一样粘贴在面部皮肤上,并配有氧化石墨烯(GO)电极,用于监测吸入和呼出时释放的水分。当暴露在潮湿环境中时,GO基电极会增加其直流电阻,灵敏度为60Ω/ RH。该设备与UHF频段的射频识别(RFID)标准兼容。在无电池模式下使用时,最长可读取60厘米。 RFID传感器已在一项测量活动中成功进行了实验,涉及10名志愿者,他们被要求复制一组预定义的正常和病理性呼吸。所得的电阻迹线允许相对于呼吸速率(通过快速傅立叶变换提取)和传感器电阻的平均峰值变化(准确度接近90%)对呼吸模式进行很好的聚类。

著录项

  • 来源
    《Sensors Journal, IEEE》 |2018年第21期|8893-8901|共9页
  • 作者单位

    Department of Civil Engineering and Computer Science, University of Roma Tor Vergata, Rome, Italy;

    Department of Civil Engineering and Computer Science, University of Roma Tor Vergata, Rome, Italy;

    Department of Civil Engineering and Computer Science, University of Roma Tor Vergata, Rome, Italy;

    Department of Civil Engineering and Computer Science, University of Roma Tor Vergata, Rome, Italy;

    Department of Civil Engineering and Computer Science, University of Roma Tor Vergata, Rome, Italy;

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

    Antennas; Graphene; Radiofrequency identification; Monitoring; Electrodes; Gold;

    机译:天线;石墨烯;射频识别;监测;电极;金;

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