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Respiratory fabric sensor based on the side luminescence and photosensitivity mechanism of polymer optical fibers

材料科学 弯曲 织物 光纤 呼吸监测 机织物 光学 复合材料 计算机科学 呼吸系统 物理 医学 内科学
作者
Meiling Zhang,Meiling Zhao,Cheng Zhang,Zheng Sun,Xiaoxue Zhao,Changyun Miao,Zhangang Wang
出处
期刊:Optics Express [Optica Publishing Group]
卷期号:30 (2): 2721-2721 被引量:8
标识
DOI:10.1364/oe.444680
摘要

It is significant to monitor respiration conveniently and in real time for people suffering from respiratory diseases. Polymer optical fibers (POFs) have the advantages of flexibility and light weight, which is highly desirable for wearable respiratory monitoring. However, in most current applications, the POFs are stitched on the textile substrates in the form of macro-bending. This method is complex to fix the bending with certain curvatures and uncomfortable compared with the POF sensors woven into the textile. In this paper, a respiratory fabric sensor based on the side luminescence and photosensitivity mechanism of POF is proposed and demonstrated. The 750µm-diameter POFs were woven into a fabric as warp and laser marking was performed at their designed positions to make them release or couple light. The spacing change between the POFs caused by the respiratory movement accordingly makes the light intensity change in the photosensitive fiber. We chose four fabric widths (10cm, 8cm, 6cm and 4cm) and four fabric weaves (plain weave, honeycomb weave, 1/3 right twill weave and 8/3 warp satin weave) to implement the full-factor experiment for exploring the measurement effect of the respiratory fabric sensor. The result is that the fabric with width of 4cm and weave of 8/3 warp satin is optimal. The calm and deep respiratory tests of the human chest and abdomen in sitting and standing posture were carried out and the test performance of the fabric sensor is almost comparable to that of the medical monitor. The proposed respiratory fabric sensor is comfortable, easily woven and high in precision, which is expected to realize industrialized scale production.
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