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Wearable textile based on silver plated knitted sensor for respiratory rate monitoring

机译:基于镀银针织传感器的可穿戴纺织品,用于呼吸频率监测

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Wearable systems are gaining broad acceptance for monitoring physiological parameters in several medical applications. Among a number of approaches, smart textiles have attracted interest because they are comfortable and do not impair patients' movements. In this article, we aim at developing a smart textile for respiratory monitoring based on a piezoresistive sensing element. Firstly, the calibration curve of the system and its hysteresis have been investigated. Then, the proposed system has been assessed on 6 healthy subjects. The volunteers were invited to wear the system to monitor their breathing rate. The results of the calibration show a good mean sensitivity (i.e., approximately 0.11V·%-1); although the hysteresis is not negligible, the system can follow the cycles also at high rates (up to 36 cycle·min-1). The feasibility assessment on 6 volunteers (two trials for each one) shows that the proposed system can estimate with good accuracy the breathing rate. Indeed, the results obtained by the proposed system were compared with the ones collected with a spirometer, used as reference. Considering all the experiments, a mean percentage error was approximately 2%. In conclusion, the proposed system has several valuable features (e.g., the sensing element is lightweight, the sensitivity is high, and it is possible to develop comfortable smart textile); in addition, the promising performances considering both metrological properties and assessment on volunteers foster future tests focused on: i) the possibility of developing and system embedding several sensing elements, and ii) to develop a wireless acquisition system, to allow comfortable and long-term acquisition in both patients and during sport activities.
机译:可穿戴系统已在监视多种医学应用中的生理参数方面获得了广泛认可。在许多方法中,智能纺织品吸引了人们的兴趣,因为它们舒适且不会损害患者的活动。在本文中,我们旨在开发一种基于压阻传感元件的用于呼吸监测的智能纺织品。首先,研究了系统的校准曲线及其滞后现象。然后,已对6名健康受试者进行了评估。邀请志愿者佩戴该系统以监测他们的呼吸速率。校准结果显示出良好的平均灵敏度(即约0.11V·% -1 );尽管磁滞不能忽略不计,但系统仍可以高速率跟随循环(高达36个循环·分钟) -1 )。对6名志愿者的可行性评估(每人两个试验)表明,所提出的系统可以很好地估算呼吸频率。确实,将拟议系统获得的结果与肺活量计所收集的结果进行了比较,以作为参考。考虑到所有实验,平均百分比误差约为2%。总之,所提出的系统具有几个有价值的功能(例如,传感元件轻巧,灵敏度高,并且有可能开发出舒适的智能纺织品);此外,兼顾计量性能和对志愿者进行评估的有前途的性能促进了未来的测试,这些测试集中在:i)开发和系统嵌入多个传感元件的可能性,以及ii)开发无线采集系统,以实现长期舒适的使用。无论是患者还是在体育活动中都要进行采集。

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