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Nanostructured optical fibre sensors for breathing airflow monitoring

机译:用于呼吸气流监测的纳米结构光纤传感器

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摘要

A nanostructured optical fibre-based thin film sensor was designed for non-invasive, fast and reliable monitoring of respiratory airflow. Molecular-level self-assembly processing method was used to form multi-layered inorganic nanocluster and polymer thin films on the distal ends of optical fibres to form such sensors. In order to optimize the sensing performance, an analytical model based on the condensation of exhaled water vapour on the coating surface was established for the breathing analysis. By varying thin film chemistry the physically small sensors offer high sensitivity to breathing air in terms of variations in the reflected optical power. Moreover, the sensor performances in comparison with a medical nasal thermistor suggest such a thin film sensor is an excellent device for advanced breathing airflow monitoring.
机译:基于纳米结构的光纤薄膜传感器设计用于无创,快速和可靠地监测呼吸气流。分子水平的自组装处理方法用于在光纤的远端形成多层无机纳米簇和聚合物薄膜,从而形成这种传感器。为了优化传感性能,建立了基于呼出水蒸气在涂层表面凝结的分析模型,用于呼吸分析。通过改变薄膜的化学性质,物理上小的传感器就反射光功率的变化而言,对呼吸的空气具有很高的灵敏度。此外,与医用鼻热敏电阻相比,传感器的性能表明,这种薄膜传感器是用于高级呼吸气流监测的出色设备。

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