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Optical Fiber Sensors for Breathing Diagnostics

机译:用于呼吸诊断的光纤传感器

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摘要

We report improvements of an optical fiber-based humidity sensor to the problem of breathing diagnostics. The sensor is fabricated by molecularly self-assembling selected polymers and functionalized inorganic nanoclusters into multilayered optical thin films on the cleaved and polished flat end of a singlemode optical fiber. Recent work has studied the synthesis process and the fundamental mechanisms responsible for the change in optical reflection from such a multicomponent film that occurs as a function of humidity and various chemicals. We briefly review that prior work as a way to introduce more recent developments. The paper then discusses the application of these humidity sensors to the analysis of air flow associated with breathing. We have designed the sensor thin film materials to enable the detection of relative humidity over a wide range, from approximately 5 to 95%, and for response times as short as several microseconds. This fast response time allows the near real-time analysis of air flow and water vapor transport during a single breath, with the advantage of very small size. The use of multiple sensors spaced a known distance apart allows the measurement of flow velocity, and recent work indicates a variation in sensor response versus coating thickness.
机译:我们报告了基于光纤的湿度传感器对呼吸诊断问题的改进。传感器是通过分子自组装所选的聚合物和功能化的无机纳米团簇而制成的,在单模光纤的经切割和抛光的扁平端上形成多层光学薄膜。最近的工作已经研究了合成过程以及引起这种多组分薄膜光学反射变化的基本机理,这种变化是湿度和各种化学物质的函数。我们简要回顾一下先前的工作,以介绍更多最新的发展。然后,本文讨论了这些湿度传感器在分析与呼吸有关的气流中的应用。我们设计了传感器薄膜材料,以便能够在大约5%至95%的宽范围内检测相对湿度,并且响应时间短至几微秒。这种快速的响应时间可实现单次呼吸过程中气流和水蒸气传输的近实时分析,其优点是体积很小。使用多个以已知距离隔开的传感器可以测量流速,最近的工作表明传感器响应随涂层厚度的变化。

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