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Smart Textile Based on Fiber Bragg Grating Sensors for Respiratory Monitoring: Design and Preliminary Trials

机译:基于光纤布拉格光栅传感器进行呼吸监测的智能纺织品:设计和初步试验

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摘要

Continuous respiratory monitoring is important to assess adequate ventilation. We present a fiber optic-based smart textile for respiratory monitoring able to work during Magnetic Resonance (MR) examinations. The system is based on the conversion of chest wall movements into strain of two fiber Bragg grating (FBG) sensors, placed on the upper thorax (UT). FBGs are glued on the textile by an adhesive silicon rubber. To increase the system sensitivity, the FBGs positioning was led by preliminary experiments performed using an optoelectronic system: FBGs placed on the chest surface experienced the largest strain during breathing. System performances, in terms of respiratory period (TR), duration of inspiratory (TI) and expiratory (TE) phases, as well as left and right UT volumes, were assessed on four healthy volunteers. The comparison of results obtained by the proposed system and an optoelectronic plethysmography highlights the high accuracy in the estimation of TR, TI, and TE: Bland-Altman analysis shows mean of difference values lower than 0.045 s, 0.33 s, and 0.35 s for TR, TI, and TE, respectively. The mean difference of UT volumes between the two systems is about 8.3%. The promising results foster further development of the system to allow routine use during MR examinations.
机译:连续呼吸监测对于评估充足的通风非常重要。我们介绍了一种用于呼吸监测的基于光纤的智能纺织品,能够在磁共振(MR)检查期间正常工作。该系统基于将胸壁运动转换为位于上胸部(UT)上的两个光纤布拉格光栅(FBG)传感器的应变。 FBG通过硅橡胶粘合在纺织品上。为了提高系统灵敏度,使用光电系统进行的初步实验指导了FBG的定位:放置在胸部表面的FBG在呼吸过程中承受的最大拉力。系统性能,根据呼吸周期(T R ),吸气(T I )的持续时间和呼气(T E )的阶段,如下以及四名健康志愿者对左,右UT量进行了评估。所提出的系统与光电体积描记法获得的结果的比较突出了T R ,T I 和T E :Bland-Altman分析显示T R ,T I 和T E <的差值均值分别低于0.045 s,0.33 s和0.35 s / sub>。两种系统之间UT体积的平均差异约为8.3%。令人鼓舞的结果促进了该系统的进一步开发,以允许在MR检查期间进行常规使用。

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