Wearable Wrist Movement Monitoring Using Dual Surface-Treated Plastic Optical Fibers
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. Th...
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doaj-cf093fd3685848aeac45e4f1566491d22020-11-25T03:29:25ZengMDPI AGMaterials1996-19442020-07-01133291329110.3390/ma13153291Wearable Wrist Movement Monitoring Using Dual Surface-Treated Plastic Optical FibersJing Li0Jian Liu1Cheng Li2Hui Zhang3Yizuo Li4School of Smart City, Beijing Union University, Beijing 100101, ChinaSchool of Instrumentation and Optoelectronic Engineering, Beihang University, Beijing 100191, ChinaSchool of Instrumentation and Optoelectronic Engineering, Beihang University, Beijing 100191, ChinaSchool of Instrumentation and Optoelectronic Engineering, Beihang University, Beijing 100191, ChinaSchool of Smart City, Beijing Union University, Beijing 100101, ChinaRegarding 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.https://www.mdpi.com/1996-1944/13/15/3291optical fiber wearable senorwrist movement detectionetched grating POFside-polished POFmotion trajectory recovery |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Jing Li Jian Liu Cheng Li Hui Zhang Yizuo Li |
spellingShingle |
Jing Li Jian Liu Cheng Li Hui Zhang Yizuo Li Wearable Wrist Movement Monitoring Using Dual Surface-Treated Plastic Optical Fibers Materials optical fiber wearable senor wrist movement detection etched grating POF side-polished POF motion trajectory recovery |
author_facet |
Jing Li Jian Liu Cheng Li Hui Zhang Yizuo Li |
author_sort |
Jing Li |
title |
Wearable Wrist Movement Monitoring Using Dual Surface-Treated Plastic Optical Fibers |
title_short |
Wearable Wrist Movement Monitoring Using Dual Surface-Treated Plastic Optical Fibers |
title_full |
Wearable Wrist Movement Monitoring Using Dual Surface-Treated Plastic Optical Fibers |
title_fullStr |
Wearable Wrist Movement Monitoring Using Dual Surface-Treated Plastic Optical Fibers |
title_full_unstemmed |
Wearable Wrist Movement Monitoring Using Dual Surface-Treated Plastic Optical Fibers |
title_sort |
wearable wrist movement monitoring using dual surface-treated plastic optical fibers |
publisher |
MDPI AG |
series |
Materials |
issn |
1996-1944 |
publishDate |
2020-07-01 |
description |
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. |
topic |
optical fiber wearable senor wrist movement detection etched grating POF side-polished POF motion trajectory recovery |
url |
https://www.mdpi.com/1996-1944/13/15/3291 |
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