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Gait Shear and Plantar Pressure Monitoring: A Non-Invasive OFS Based Solution for e-Health Architectures

机译:步态剪切和足底压力监测:基于无创OFS的电子医疗架构解决方案

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摘要

In an era of unprecedented progress in sensing technology and communication, health services are now able to closely monitor patients and elderly citizens without jeopardizing their daily routines through health applications on their mobile devices in what is known as e-Health. Within this field, we propose an optical fiber sensor (OFS) based system for the simultaneous monitoring of shear and plantar pressure during gait movement. These parameters are considered to be two key factors in gait analysis that can help in the early diagnosis of multiple anomalies, such as diabetic foot ulcerations or in physical rehabilitation scenarios. The proposed solution is a biaxial OFS based on two in-line fiber Bragg gratings (FBGs), which were inscribed in the same optical fiber and placed individually in two adjacent cavities, forming a small sensing cell. Such design presents a more compact and resilient solution with higher accuracy when compared to the existing electronic systems. The implementation of the proposed elements into an insole is also described, showcasing the compactness of the sensing cells, which can easily be integrated into a non-invasive mobile e-Health solution for continuous remote gait monitoring of patients and elder citizens. The reported results show that the proposed system outperforms existing solutions, in the sense that it is able to dynamically discriminate shear and plantar pressure during gait.
机译:在传感技术和通信领域取得空前进步的时代,医疗服务现在可以通过在其称为e-Health的移动设备上使用医疗应用程序来密切监视患者和老年人,而不会危及他们的日常工作。在该领域内,我们提出了一种基于光纤传感器(OFS)的系统,用于同时监测步态运动过程中的剪切力和足底压力。这些参数被认为是步态分析中的两个关键因素,可以帮助早期诊断多种异常,例如糖尿病足溃疡或身体康复情况。提出的解决方案是基于两个同轴光纤布拉格光栅(FBG)的双轴OFS,它们被刻在同一根光纤中,并分别放置在两个相邻的空腔中,从而形成一个小的传感单元。与现有的电子系统相比,这种设计提供了一种更紧凑,更具弹性,精度更高的解决方案。还介绍了将建议的元件实现到鞋垫中的过程,展示了传感单元的紧凑性,可以轻松地将其集成到无创移动式e-Health解决方案中,以连续远程监测患者和老年人的步态。报告的结果表明,从能够在步态中动态地区分剪切力和足底压力的意义上说,拟议的系统优于现有的解决方案。

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