2007 Fiscal Year Final Research Report Summary
Human Lower Limb Motion Analysis Using Wearable Ground Reaction Force Sensors and Motion Sensors
Project/Area Number |
17360109
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Research Category |
Grant-in-Aid for Scientific Research (B)
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Allocation Type | Single-year Grants |
Section | 一般 |
Research Field |
Dynamics/Control
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Research Institution | Kochi University of Technology |
Principal Investigator |
INOUE Yoshio Kochi University of Technology, Engineering, Professor (50299369)
|
Co-Investigator(Kenkyū-buntansha) |
SHIBATA Kyoko Kochi University of Tecgnology, Engineering, Associate Professor (00307117)
WANG Shioyu Kochi University of Tecgnology, Engineering, Professor (90250951)
TANIOKA Tetsuya Tokushima University, Medical, Professor (90319997)
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Project Period (FY) |
2005 – 2007
|
Keywords | Wearable / Ground reaction force / Motion sensor / Gait analysis / Load cell / Lower limb / Joint moment / gyroscopes |
Research Abstract |
Rehabilitation is very important in preventing an increase of bedridden patients and improving their impairments. Information on the joint moment or muscle action of patients is very useful for doctor or PT to judge what kind of rehabilitation menu is optimum for each patient. The integration of three dimensional motion measurement with multi-camera system and ground reaction measurement with forte plate has been widely used. They apply inverse dynamics to estimate joint moment . However such a method needs sizable work space and it is very expensive for daily rehabilitation. In this research project, a new wearable 3-dimentinal ground reaction force sensor and wearable motion sensor are developed. A parallel type 6-axial load sell, a 3-axial load cell and a motion sensor are mounted in the shoes of patient which is the wearable ground reaction sensor system. Reaction force in local coordinate is transformed to the rectangular coordinate. By using this new wearable reaction force sensor and wearable motion sensor attached to the human lower limb, estimation method of joint moment of human lower limb is developed. Gait analysis is carried out and experimental results of the proposed methods on ground reaction force and joint moment of the lower limb compare well with those by using the conventional method.
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Research Products
(23 results)