A novel experimental setup for evaluating the stiffness of ankle foot orthoses
Abstract Objective The purpose of this study was the construction of a new semi-automated experimental setup for the evaluation of the stiffness of ankle foot orthoses (AFOs) around an axis aligned to the anatomical ankle joint during the second rocker of the gait. The setup, developed in close coll...
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doaj-56ac5b1dfad142a28fa03feb16d8393a2020-11-25T02:44:58ZengBMCBMC Research Notes1756-05002018-09-011111710.1186/s13104-018-3752-4A novel experimental setup for evaluating the stiffness of ankle foot orthosesA. Ielapi0E. Vasiliauskaite1M. Hendrickx2M. Forward3N. Lammens4W. Van Paepegem5J. P. Deckers6M. Vermandel7M. De Beule8Institute Biomedical Technology (IBiTech)-bioMMeda, Ghent UniversityGait & Movement Analysis Laboratory, Cerebral Palsy Reference Centrum, University Hospital GhentInstitute Biomedical Technology (IBiTech)-bioMMeda, Ghent UniversityGait & Movement Analysis Laboratory, Cerebral Palsy Reference Centrum, University Hospital GhentDepartment of Materials Science & Engineering, Ghent UniversityDepartment of Materials Science & Engineering, Ghent UniversityV!GO NVV!GO NVInstitute Biomedical Technology (IBiTech)-bioMMeda, Ghent UniversityAbstract Objective The purpose of this study was the construction of a new semi-automated experimental setup for the evaluation of the stiffness of ankle foot orthoses (AFOs) around an axis aligned to the anatomical ankle joint during the second rocker of the gait. The setup, developed in close collaboration with the orthopedic device company V!GO NV (Wetteren, Belgium), allows measurement of plantarflexion and dorsiflexion in the sagittal plane for a maximal range of motion of 50° (− 25° plantarflexion up to 25° dorsiflexion) in a non-destructive way. Results The mechanical properties of four 3D printed AFOs are investigated, based on the ranges of motion derived from the gait assessment of the patients when they walked with their AFO. The reliability of the stiffness measures was studied by the evaluation of the test–retest repeatability and the intra-tester and inter-tester variability. These studies revealed that the ankle stiffness can be measured with high reliability (ICC = 0.94–1.00). The obtained outcomes indicate that the experimental setup could be applied to measure the ankle stiffness of any topology of AFOs and, in the future, help finding the correlation with the information coming from the gait assessment of the patients.http://link.springer.com/article/10.1186/s13104-018-3752-4Experimental setupAnkle foot orthosis (AFO)StiffnessGaitOrthotics |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
A. Ielapi E. Vasiliauskaite M. Hendrickx M. Forward N. Lammens W. Van Paepegem J. P. Deckers M. Vermandel M. De Beule |
spellingShingle |
A. Ielapi E. Vasiliauskaite M. Hendrickx M. Forward N. Lammens W. Van Paepegem J. P. Deckers M. Vermandel M. De Beule A novel experimental setup for evaluating the stiffness of ankle foot orthoses BMC Research Notes Experimental setup Ankle foot orthosis (AFO) Stiffness Gait Orthotics |
author_facet |
A. Ielapi E. Vasiliauskaite M. Hendrickx M. Forward N. Lammens W. Van Paepegem J. P. Deckers M. Vermandel M. De Beule |
author_sort |
A. Ielapi |
title |
A novel experimental setup for evaluating the stiffness of ankle foot orthoses |
title_short |
A novel experimental setup for evaluating the stiffness of ankle foot orthoses |
title_full |
A novel experimental setup for evaluating the stiffness of ankle foot orthoses |
title_fullStr |
A novel experimental setup for evaluating the stiffness of ankle foot orthoses |
title_full_unstemmed |
A novel experimental setup for evaluating the stiffness of ankle foot orthoses |
title_sort |
novel experimental setup for evaluating the stiffness of ankle foot orthoses |
publisher |
BMC |
series |
BMC Research Notes |
issn |
1756-0500 |
publishDate |
2018-09-01 |
description |
Abstract Objective The purpose of this study was the construction of a new semi-automated experimental setup for the evaluation of the stiffness of ankle foot orthoses (AFOs) around an axis aligned to the anatomical ankle joint during the second rocker of the gait. The setup, developed in close collaboration with the orthopedic device company V!GO NV (Wetteren, Belgium), allows measurement of plantarflexion and dorsiflexion in the sagittal plane for a maximal range of motion of 50° (− 25° plantarflexion up to 25° dorsiflexion) in a non-destructive way. Results The mechanical properties of four 3D printed AFOs are investigated, based on the ranges of motion derived from the gait assessment of the patients when they walked with their AFO. The reliability of the stiffness measures was studied by the evaluation of the test–retest repeatability and the intra-tester and inter-tester variability. These studies revealed that the ankle stiffness can be measured with high reliability (ICC = 0.94–1.00). The obtained outcomes indicate that the experimental setup could be applied to measure the ankle stiffness of any topology of AFOs and, in the future, help finding the correlation with the information coming from the gait assessment of the patients. |
topic |
Experimental setup Ankle foot orthosis (AFO) Stiffness Gait Orthotics |
url |
http://link.springer.com/article/10.1186/s13104-018-3752-4 |
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