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Non-Invasive Fiber-Optic Biomedical Sensor for Basic Vital Sign Monitoring

机译:用于基本生命体征监测的无创光纤生物医学传感器

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This article focuses on the functionality verification of a novel non-invasive fibre-optic sensor monitoring basic vital signs such as Respiratory Rate (RR), Heart Rate (HR) and Body Temperature (BT). The integration of three sensors in one unit is a unique solution patented by our research team. The integrated sensor is based on two Fiber Bragg Gratings (FBGs) encapsulated inside an inert polymer (non-reactive to human skin) called PolyDiMethylSiloxane (PDMS). The PDMS is beginning to find widespread applications in the biomedical field due to its desirable properties, especially its immunity to ElectroMagnetic Interference (EMI). The integrated sensor's functionality was verified by carrying out a series of laboratory experiments in 10 volunteer subjects after giving them a written informed consent. The Bland-Altman statistical analysis produced satisfactory accuracy for the respiratory and heart rate measurements and their respective reference signals in all test subjects. A total relative error of 0.31% was determined for body temperature measurements. The main contribution of this article is a proof-of-concept of a novel noninvasive fiber-optic sensor which could be used for basic vital sign monitoring. This sensor offers a potential to enhance and improve the comfort level of patients in hospitals and clinics and can even be considered for use in Magnetic Resonance Imaging (MRI) environments.
机译:本文重点介绍一种新型的非侵入式光纤传感器的功能验证,该传感器监视基本生命体征,例如呼吸频率(RR),心率(HR)和体温(BT)。将三个传感器集成到一个单元中是我们研究团队获得专利的独特解决方案。集成传感器基于两个光纤布拉格光栅(FBG),该光栅封装在称为PolyDiMethylSiloxane(PDMS)的惰性聚合物(对人体皮肤无反应)中。由于其理想的性能,尤其是其对电磁干扰(EMI)的免疫力,PDMS开始在生物医学领域找到广泛的应用。在获得他们的书面知情同意后,通过对10位志愿者受试者进行一系列实验室实验,验证了集成传感器的功能。 Bland-Altman统计分析为所有测试对象的呼吸和心率测量及其各自的参考信号产生了令人满意的准确性。测定体温的总相对误差为0.31%。本文的主要贡献是一种新型无创光纤传感器的概念验证,该传感器可用于基本生命体征监测。该传感器具有增强和改善医院和诊所患者舒适度的潜力,甚至可以考虑用于磁共振成像(MRI)环境。

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