Cargando…

A Mechanical Sensor Designed for Dynamic Joint Angle Measurement

Background. The measurement of the functional range of motion (FROM) of lower limb joints is an essential parameter for gait analysis especially in evaluating rehabilitation programs. Aim. To develop a simple, reliable, and affordable mechanical goniometer (MGR) for gait analysis, with six-degree fr...

Descripción completa

Detalles Bibliográficos
Autores principales: Ching, Congo Tak-Shing, Liao, Su-Yu, Cheng, Teng-Yun, Cheng, Chih-Hsiu, Sun, Tai-Ping, Yao, Yan-Dong, Hsiao, Chin-Sung, Chang, Kang-Ming
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5390652/
https://www.ncbi.nlm.nih.gov/pubmed/29065653
http://dx.doi.org/10.1155/2017/8465212
_version_ 1782521505226162176
author Ching, Congo Tak-Shing
Liao, Su-Yu
Cheng, Teng-Yun
Cheng, Chih-Hsiu
Sun, Tai-Ping
Yao, Yan-Dong
Hsiao, Chin-Sung
Chang, Kang-Ming
author_facet Ching, Congo Tak-Shing
Liao, Su-Yu
Cheng, Teng-Yun
Cheng, Chih-Hsiu
Sun, Tai-Ping
Yao, Yan-Dong
Hsiao, Chin-Sung
Chang, Kang-Ming
author_sort Ching, Congo Tak-Shing
collection PubMed
description Background. The measurement of the functional range of motion (FROM) of lower limb joints is an essential parameter for gait analysis especially in evaluating rehabilitation programs. Aim. To develop a simple, reliable, and affordable mechanical goniometer (MGR) for gait analysis, with six-degree freedom to dynamically assess lower limb joint angles. Design. Randomized control trials, in which a new MGR was developed for the measurements of FROM of lower limb joints. Setting. Reliability of the designed MGR was evaluated and validated by a motion analysis system (MAS). Population. Thirty healthy subjects participated in this study. Methods. Reliability and validity of the new MGR were tested by intraclass correlation coefficient (ICC), Bland-Altman plots, and linear correlation analysis. Results. The MGR has good inter- and intrarater reliability and validity with ICC ≥ 0.93 (for both). Moreover, measurements made by MGR and MAS were comparable and repeatable with each other, as confirmed by Bland-Altman plots. Furthermore, a very high degree of linear correlation (R ≥ 0.92 for all joint angle measurements) was found between the lower limb joint angles measured by MGR and MAS. Conclusion. A simple, reliable, and affordable MGR has been designed and developed to aid clinical assessment and treatment evaluation of gait disorders.
format Online
Article
Text
id pubmed-5390652
institution National Center for Biotechnology Information
language English
publishDate 2017
publisher Hindawi
record_format MEDLINE/PubMed
spelling pubmed-53906522017-05-02 A Mechanical Sensor Designed for Dynamic Joint Angle Measurement Ching, Congo Tak-Shing Liao, Su-Yu Cheng, Teng-Yun Cheng, Chih-Hsiu Sun, Tai-Ping Yao, Yan-Dong Hsiao, Chin-Sung Chang, Kang-Ming J Healthc Eng Research Article Background. The measurement of the functional range of motion (FROM) of lower limb joints is an essential parameter for gait analysis especially in evaluating rehabilitation programs. Aim. To develop a simple, reliable, and affordable mechanical goniometer (MGR) for gait analysis, with six-degree freedom to dynamically assess lower limb joint angles. Design. Randomized control trials, in which a new MGR was developed for the measurements of FROM of lower limb joints. Setting. Reliability of the designed MGR was evaluated and validated by a motion analysis system (MAS). Population. Thirty healthy subjects participated in this study. Methods. Reliability and validity of the new MGR were tested by intraclass correlation coefficient (ICC), Bland-Altman plots, and linear correlation analysis. Results. The MGR has good inter- and intrarater reliability and validity with ICC ≥ 0.93 (for both). Moreover, measurements made by MGR and MAS were comparable and repeatable with each other, as confirmed by Bland-Altman plots. Furthermore, a very high degree of linear correlation (R ≥ 0.92 for all joint angle measurements) was found between the lower limb joint angles measured by MGR and MAS. Conclusion. A simple, reliable, and affordable MGR has been designed and developed to aid clinical assessment and treatment evaluation of gait disorders. Hindawi 2017 2017-03-14 /pmc/articles/PMC5390652/ /pubmed/29065653 http://dx.doi.org/10.1155/2017/8465212 Text en Copyright © 2017 Congo Tak-Shing Ching et al. http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Ching, Congo Tak-Shing
Liao, Su-Yu
Cheng, Teng-Yun
Cheng, Chih-Hsiu
Sun, Tai-Ping
Yao, Yan-Dong
Hsiao, Chin-Sung
Chang, Kang-Ming
A Mechanical Sensor Designed for Dynamic Joint Angle Measurement
title A Mechanical Sensor Designed for Dynamic Joint Angle Measurement
title_full A Mechanical Sensor Designed for Dynamic Joint Angle Measurement
title_fullStr A Mechanical Sensor Designed for Dynamic Joint Angle Measurement
title_full_unstemmed A Mechanical Sensor Designed for Dynamic Joint Angle Measurement
title_short A Mechanical Sensor Designed for Dynamic Joint Angle Measurement
title_sort mechanical sensor designed for dynamic joint angle measurement
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5390652/
https://www.ncbi.nlm.nih.gov/pubmed/29065653
http://dx.doi.org/10.1155/2017/8465212
work_keys_str_mv AT chingcongotakshing amechanicalsensordesignedfordynamicjointanglemeasurement
AT liaosuyu amechanicalsensordesignedfordynamicjointanglemeasurement
AT chengtengyun amechanicalsensordesignedfordynamicjointanglemeasurement
AT chengchihhsiu amechanicalsensordesignedfordynamicjointanglemeasurement
AT suntaiping amechanicalsensordesignedfordynamicjointanglemeasurement
AT yaoyandong amechanicalsensordesignedfordynamicjointanglemeasurement
AT hsiaochinsung amechanicalsensordesignedfordynamicjointanglemeasurement
AT changkangming amechanicalsensordesignedfordynamicjointanglemeasurement
AT chingcongotakshing mechanicalsensordesignedfordynamicjointanglemeasurement
AT liaosuyu mechanicalsensordesignedfordynamicjointanglemeasurement
AT chengtengyun mechanicalsensordesignedfordynamicjointanglemeasurement
AT chengchihhsiu mechanicalsensordesignedfordynamicjointanglemeasurement
AT suntaiping mechanicalsensordesignedfordynamicjointanglemeasurement
AT yaoyandong mechanicalsensordesignedfordynamicjointanglemeasurement
AT hsiaochinsung mechanicalsensordesignedfordynamicjointanglemeasurement
AT changkangming mechanicalsensordesignedfordynamicjointanglemeasurement