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Design and preliminary assessment of a smart textile for respiratory monitoring based on an array of Fiber Bragg Gratings

机译:基于光纤布拉格光栅的用于呼吸监测的智能纺织品的设计和初步评估

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Comfortable and easy to wear smart textiles have gained popularity for continuous respiratory monitoring. Among different emerging technologies, smart textiles based on fiber optic sensors (FOSs) have several advantages, like Magnetic Resonance (MR)-compatibility and good metrological properties. In this paper we report on the development and assessment of an MR-compatible smart textiles based on FOSs for respiratory monitoring. The system consists of six fiber Bragg grating (FBG) sensors glued on the textile to monitor six compartments of the chest wall (i.e., right and left upper thorax, right and left abdominal rib cage, and right and left abdomen). This solution allows monitoring both global respiratory parameters and each compartment volume change. The system converts thoracic movements into strain measured by the FBGs. The positioning of the FBGs was optimized by experiments performed using an optoelectronic system. The feasibility of the smart textile was assessed on 6 healthy volunteers. Experimental data were compared to the ones estimated by an optoelectronic plethysmography used as reference. Promising results were obtained on both breathing period (maximum percentage error is 1.14%), inspiratory and expiratory period, as well as on total volume change (mean percentage difference between the two systems was ~14%). The Bland-Altman analysis shows a satisfactory accuracy for the parameters under investigation. The proposed system is safe and non-invasive, MR-compatible, and allows monitoring compartmental volumes.
机译:舒适,易穿的智能纺织品在连续呼吸监测中获得了广泛的应用。在不同的新兴技术中,基于光纤传感器(FOS)的智能纺织品具有多种优势,如磁共振(MR)兼容性和良好的计量性能。在本文中,我们报告了基于呼吸监测的基于FOS的MR兼容智能纺织品的开发和评估。该系统由六个粘贴在纺织品上的布拉格光栅(FBG)传感器组成,以监视胸壁的六个隔室(即左右上胸腔,左右腹肋骨笼以及左右腹部)。该解决方案可以同时监视全局呼吸参数和每个隔室容积的变化。该系统将胸腔运动转换为由FBG测量的应变。 FBG的位置通过使用光电系统进行的实验进行了优化。在6名健康志愿者身上评估了智能纺织品的可行性。将实验数据与通过光电体积描记法估算的数据进行比较,以作为参考。在呼吸周期(最大百分比误差为1.14%),吸气和呼气周期以及总体积变化(两个系统之间的平均百分比差为〜14%)上均获得了令人满意的结果。 Bland-Altman分析显示了所研究参数的令人满意的准确性。所提出的系统是安全且非侵入性的,与MR兼容的,并允许监视隔室容积。

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