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A wearable textile for respiratory monitoring: feasibility assessment and analysis of sensors position on system response

机译:用于呼吸监测的可穿戴纺织品:可行性评估和传感器对系统响应的位置分析

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The interest on wearable textiles to monitor vital signs is growing in the research field and clinical scenario related to the increasing demands of long-term monitoring. Despite several smart textile-based solutions have been proposed for assessing the respiratory status, only a limited number of devices allow the respiratory monitoring in a harsh environment or in different positions of the human body. In this paper, we investigated the performances of a smart textile for respiratory rate monitoring characterized by 12 fiber optic sensors (i.e., fiber Bragg grating) placed on specific landmarks for compartmental analysis of the chest wall movements during quiet breathing. We focused on the analysis of the influence of sensor position on both peak-to-peak amplitude of sensors output and accuracy of respiratory rate measurements. This analysis was performed on two participants, who wore the textile in two positions (i.e., standing and supine). Bland-Altman analysis on respiratory rate showed promising results (better than 0.3 breaths per minute). Referring to the peak-to-peak output amplitude, the abdomen compartment showed the highest excursions in both the enrolled participants and positions. Our findings open up new approaches to design and develop smart textile for respiratory rate monitoring.
机译:可穿戴纺织品的利益监测生命体征在研究领域和临床情景中越来越多,与长期监测需求不断增加。尽管已经提出了几种基于智能纺织品的解决方案,用于评估呼吸状态,只有有限数量的设备允许在恶劣的环境中或人体的不同位置进行呼吸监测。在本文中,我们调查了呼吸速率监测的智能纺织品的性能,其特征在于将12个光纤传感器(即,光纤布拉格光栅)放置在静音呼吸期间胸壁运动的特定地标。我们专注于分析传感器位置对传感器的峰值幅度幅度的影响和呼吸速率测量的准确性。在两个参与者中进行了这种分析,他们在两个位置(即,静止和仰卧)上穿过纺织品。 Bland-Altman分析呼吸率显示出现有前途的结果(优于0.3呼吸每分钟)。参考峰值到峰值输出幅度,腹部隔室显示了登记的参与者和位置的最高偏移。我们的调查结果开辟了新的设计和开发智能纺织品的新方法,以进行呼吸速率监测。

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