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首页> 外文期刊>IEEE Transactions on Biomedical Engineering >Characterization and Use of a Fiber Optic Sensor Based on PAH/SiO2 Film for Humidity Sensing in Ventilator Care Equipment
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Characterization and Use of a Fiber Optic Sensor Based on PAH/SiO2 Film for Humidity Sensing in Ventilator Care Equipment

机译:基于PAH / SiO2膜的光纤传感器在通风机护理设备中的湿度传感特性及应用

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摘要

Objective: To develop a compact probe that can be used to monitor humidity in ventilator care equipment. A mesoporous film of alternate layers of Poly(allylamine hydrochloride) (PAH) and silica (SiO2) nanoparticles (bilayers), deposited onto an optical fibre was used. The sensing film behaves as a Fabry-Perot cavity of low-finesse where the absorption of water vapour changes the optical thickness and produces a change in reflection proportional to humidity. Methods: The mesoporous film was deposited upon the cleaved tip of an optical fibre using the layer-by-layer method. The sensor was calibrated in a bench model against a commercially available capacitive sensor. The sensitivity and response time were assessed in the range from 5 % relative humidity (RH) to 95%RH for different numbers of bilayers up to a maximum of nine. Results: The sensitivity increases with the number of bilayers deposited; sensitivity of 2.28 mV/%RH was obtained for nine bilayers. The time constant of the response was 1.13 s ± 0.30 s which is faster than the commercial device (measured as 158 s). After calibration, the optical fibre humidity sensor was utilised in a bench top study employing a mechanical ventilator. The fast response time enabled changes in humidity in individual breaths to be resolved. Conclusion: Optical fibre sensors have the potential to be used to monitor breath to breath humidity during ventilator care. Significance: Control of humidity is an essential part of critical respiratory care and the developed sensor provides a sensitive, compact and fast method of humidity monitoring.
机译:目的:开发一种紧凑的探头,可用于监测呼吸机护理设备中的湿度。使用沉积在光纤上的聚(烯丙胺盐酸盐)(PAH)和二氧化硅(SiO2)纳米颗粒(双层)的交替层的介孔膜。感测膜的行为就像是低精细的Fabry-Perot腔,其中水蒸气的吸收会改变光学厚度,并产生与湿度成正比的反射变化。方法:使用逐层方法将中孔膜沉积在光纤的开裂尖端上。该传感器在台式模型中针对商用电容式传感器进行了校准。对于双层的不同数量(最多九层),在从5%相对湿度(RH)到95%RH的范围内评估了灵敏度和响应时间。结果:灵敏度随着沉积的双层数的增加而增加;九个双层的灵敏度为2.28 mV /%RH。响应的时间常数为1.13 s±0.30 s,比商用设备快(测量为158 s)。校准后,将光纤湿度传感器用于采用机械呼吸机的台式研究中。快速的响应时间可以解决单个呼吸中湿度的变化。结论:在呼吸机护理期间,光纤传感器有潜力用于监测呼吸与呼吸湿度。启示:湿度控制是紧急呼吸护理的重要组成部分,开发的传感器可提供灵敏,紧凑且快速的湿度监测方法。

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  • 来源
    《IEEE Transactions on Biomedical Engineering》 |2016年第9期|1985-1992|共8页
  • 作者单位

    Faculty of Engineering, Advanced Optics GroupUniversity of Nottingham;

    Faculty of Engineering, Advanced Optics GroupUniversity of Nottingham;

    Faculty of Engineering, Advanced Optics GroupUniversity of Nottingham;

    Anaesthesia & Critical Care Research Group, Nottingham University Hospital NHS Trust, U.K., Nottingham University Hospitals NHS Trust, Nottingham, U.K.;

    Respiratory Medicine department;

    Anaesthesia & Critical Care Research Group, Nottingham University Hospital NHS Trust, U.K., Nottingham University Hospitals NHS Trust, Nottingham, U.K.;

    Anaesthesia & Critical Care Research Group, Nottingham University Hospital NHS Trust, U.K., Nottingham University Hospitals NHS Trust, Nottingham, U.K.;

    Anaesthesia & Critical Care Research Group, Nottingham University Hospital NHS Trust, U.K., Nottingham University Hospitals NHS Trust, Nottingham, U.K.;

    Faculty of Engineering, Advanced Optics Group, and Nottingham University Hospitals NHS Trust, Nottingham, U.K.;

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

    Humidity; Optical fibers; Films; Humidity measurement; Biomedical measurement; Probes; Time factors;

    机译:湿度;光纤;薄膜;湿度测量;生物医学测量;探头;时间因素;

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