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Wearable Wrist Joint Movement Detection Using Two Sensitivity-Enhanced Plastic Optical Fibers

机译:使用两种增强灵敏度的塑料光纤进行可穿戴腕关节运动检测

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We demonstrate two flexible, sensitivity-enhanced plastic optical fiber (PDF) strain sensors embedded in a polyamide wrist brace for human wrist joint movement monitoring. The two sensors are, respectively, featured with a D-shaped side-polished zone of ~40 μm depth and ~30 mm length and etched periodic gratings with a pitch of 3 mm, which correspondingly exhibit around 46.8 and 17.8 times in normalized bending sensitivity by far larger than conventional commercial POF due to more sensitive strain-induced evanescent field interaction with the side-machined fiber. In terms of different detection sensitivity to bending angles, the two modified sensors are separately arranged at the back and side of the wrist and then enable to decouple wrist joint behaviors induced by flexion-extension and abduction-adduction motions. The application therefore shows a great potential for the developed sensors in wearable exercise rehabilitation of human joints.
机译:我们演示了两个柔性的,增强灵敏度的塑料光纤(PDF)应变传感器,该应变传感器嵌入在聚酰胺腕带中,用于人体腕关节运动监测。这两个传感器分别具有深度为〜40μm,长度为〜30 mm的D形侧面抛光区和间距为3 mm的蚀刻周期光栅,在归一化弯曲灵敏度上分别显示出约46.8和17.8倍由于应变感应的渐逝场与侧加工光纤之间的相互作用更为敏感,因此比传统的商用POF大得多。在对弯曲角度的不同检测灵敏度方面,两个改进的传感器分别布置在手腕的后部和侧面,然后能够解耦由屈伸运动和外展内收运动引起的腕关节行为。因此,该应用为开发的传感器在人体关节的可穿戴运动康复中显示了巨大的潜力。

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