A Method to Analyze Dynamics Properties of Transfemoral Prosthesis

Abstract.The methodto compute gait cycle forces and moments acting on the hip and knee joints of a lower limb with a trans-femoral prosthesis were investigated. A 3D model of the lower limb with prosthesis was created using CAD software and based on MRI data and real size dimension. The transfemoral...

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Main Authors: Van Tuan Le, Ohnishi Kengo, Otsuka Hiroshi, Agarie Yukio, Yamamoto Shinichiro, Hanafusa Akihiko
Format: Article
Language:English
Published: EDP Sciences 2016-01-01
Series:MATEC Web of Conferences
Online Access:http://dx.doi.org/10.1051/matecconf/20164002026
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spelling doaj-621e2684ff9c4da7a586616ff0c1b6b32021-02-02T06:36:13ZengEDP SciencesMATEC Web of Conferences2261-236X2016-01-01400202610.1051/matecconf/20164002026matecconf_icmes2016_02026A Method to Analyze Dynamics Properties of Transfemoral ProsthesisVan Tuan Le0Ohnishi Kengo1Otsuka Hiroshi2Agarie Yukio3Yamamoto Shinichiro4Hanafusa Akihiko5Shibaura Institute of TechnologyTokyo Denki UniversityUniversity of Human Arts and ScienceNiigata University of Health and WelfareShibaura Institute of TechnologyShibaura Institute of TechnologyAbstract.The methodto compute gait cycle forces and moments acting on the hip and knee joints of a lower limb with a trans-femoral prosthesis were investigated. A 3D model of the lower limb with prosthesis was created using CAD software and based on MRI data and real size dimension. The transfemoral prosthesis was modelled as a coupled of links with two revolution joints at hip and knee joint. This coupled link was connected to a bar with translation joint to description the distance walked of people in gait cycle. All parts of the prosthesis were measured and a full-size 3D model was created.The kinematics parameters of a lower limb with a prosthesis were determined from motion-captured system data. The reaction force was measured with a force sensor in the footplate. The 3D model of the prosthesis was exported to MatlabSimmechanics. The input data which are kinematic parameters were applied to calculate the forces and moments acting on the joints. The results of this study present a method to analyse the dynamic properties of transfemoral prosthesis including speed of the gait. It could be used to calculate the load transferred from the socket to the residual limb. They could also be used to design the structure of a prosthesis and optimize the dynamic characteristics of such a prosthesis.http://dx.doi.org/10.1051/matecconf/20164002026
collection DOAJ
language English
format Article
sources DOAJ
author Van Tuan Le
Ohnishi Kengo
Otsuka Hiroshi
Agarie Yukio
Yamamoto Shinichiro
Hanafusa Akihiko
spellingShingle Van Tuan Le
Ohnishi Kengo
Otsuka Hiroshi
Agarie Yukio
Yamamoto Shinichiro
Hanafusa Akihiko
A Method to Analyze Dynamics Properties of Transfemoral Prosthesis
MATEC Web of Conferences
author_facet Van Tuan Le
Ohnishi Kengo
Otsuka Hiroshi
Agarie Yukio
Yamamoto Shinichiro
Hanafusa Akihiko
author_sort Van Tuan Le
title A Method to Analyze Dynamics Properties of Transfemoral Prosthesis
title_short A Method to Analyze Dynamics Properties of Transfemoral Prosthesis
title_full A Method to Analyze Dynamics Properties of Transfemoral Prosthesis
title_fullStr A Method to Analyze Dynamics Properties of Transfemoral Prosthesis
title_full_unstemmed A Method to Analyze Dynamics Properties of Transfemoral Prosthesis
title_sort method to analyze dynamics properties of transfemoral prosthesis
publisher EDP Sciences
series MATEC Web of Conferences
issn 2261-236X
publishDate 2016-01-01
description Abstract.The methodto compute gait cycle forces and moments acting on the hip and knee joints of a lower limb with a trans-femoral prosthesis were investigated. A 3D model of the lower limb with prosthesis was created using CAD software and based on MRI data and real size dimension. The transfemoral prosthesis was modelled as a coupled of links with two revolution joints at hip and knee joint. This coupled link was connected to a bar with translation joint to description the distance walked of people in gait cycle. All parts of the prosthesis were measured and a full-size 3D model was created.The kinematics parameters of a lower limb with a prosthesis were determined from motion-captured system data. The reaction force was measured with a force sensor in the footplate. The 3D model of the prosthesis was exported to MatlabSimmechanics. The input data which are kinematic parameters were applied to calculate the forces and moments acting on the joints. The results of this study present a method to analyse the dynamic properties of transfemoral prosthesis including speed of the gait. It could be used to calculate the load transferred from the socket to the residual limb. They could also be used to design the structure of a prosthesis and optimize the dynamic characteristics of such a prosthesis.
url http://dx.doi.org/10.1051/matecconf/20164002026
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