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使用双表面处理塑料光纤的可穿戴式手腕运动监测

Wearable Wrist Movement Monitoring Using Dual Surface-Treated Plastic Optical Fibers.

作者信息

Li Jing, Liu Jian, Li Cheng, Zhang Hui, Li Yizuo

机构信息

School of Smart City, Beijing Union University, Beijing 100101, China.

School of Instrumentation and Optoelectronic Engineering, Beihang University, Beijing 100191, China.

出版信息

Materials (Basel). 2020 Jul 24;13(15):3291. doi: 10.3390/ma13153291.

Abstract

Regarding high-sensitivity human wrist joint motion monitoring in exercise rehabilitation; we develop a pair of novel wearable and sensitivity-enhanced plastic optical fiber (POF) strain sensors consisting of an etched grating fiber and a side-polished fiber stitched into a polyamide wrist brace. The two flexible and surface-treated fibers are; respectively; featured with an etched periodic gratings with a pitch of 6 mm and a depth of 0.5 mm and a D-shaped side-polished zone of 300 µm depth and ~30 mm length; which, correspondingly, show the sensitivities of around 0.0176/° and 0.0167/° in a normalized bending angle by far larger than a conventional commercial POF, because it achieves a more sensitive strain-induced evanescent field interaction with the side-machined fibers. Moreover, in terms of the sensor response to bending deformation in the range of -40°+40°, the former exhibits a better sensitivity in lower angle change, while the latter is superior as the bending angle increases; thereby arranging the two modified POFs separately at the side and back of the human wrist, in order to decouple the wrist joint behaviors induced by typical flexion-extension or abduction-adduction movements. Then, the circular and pentagonal wrist motion trajectory patterns are investigated, to demonstrate the maximum average single-axis motion error of 2.94° via the transformation of spatial angle to plane coordinate for the fabricated couple of POF sensors, which is lower than a recognized standard of 5°, thus suggesting the great potential in wearable exercise rehabilitation of human joints in the field of medical treatment and healing.

摘要

关于运动康复中高灵敏度人体腕关节运动监测;我们开发了一对新型可穿戴且灵敏度增强的塑料光纤(POF)应变传感器,它们由一根蚀刻光栅光纤和一根侧面抛光光纤缝合到聚酰胺腕带中组成。这两根经过柔性处理和表面处理的光纤分别具有间距为6毫米、深度为0.5毫米的蚀刻周期性光栅,以及深度约为300微米、长度约为30毫米的D形侧面抛光区域,相应地,它们在归一化弯曲角度下的灵敏度分别约为0.0176/°和0.0167/°,远高于传统商用POF,因为它实现了与侧面加工光纤更灵敏的应变诱导倏逝场相互作用。此外,就传感器在-40°至+40°范围内对弯曲变形的响应而言,前者在较小角度变化时表现出更好的灵敏度,而后者在弯曲角度增加时更具优势;从而将两根改性POF分别布置在人体手腕的侧面和背面,以解耦由典型的屈伸或外展内收运动引起的腕关节行为。然后,研究了圆形和五边形腕部运动轨迹模式,通过将空间角度转换为平面坐标,对于所制造的一对POF传感器,其最大平均单轴运动误差为2.94°,低于公认的5°标准,因此表明在医疗和康复领域的人体关节可穿戴运动康复方面具有巨大潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a4e9/7436097/4ba09a241721/materials-13-03291-g001.jpg

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