DocumentCode :
2521575
Title :
Measurement of human lower limb orientations and ground reaction forces using wearable sensor systems
Author :
Liu, Tao ; Inoue, Yoshio ; Shibata, Kyoko ; Zheng, Rencheng
Author_Institution :
Kochi Univ. of Technol., Kochi
fYear :
2007
fDate :
4-7 Sept. 2007
Firstpage :
1
Lastpage :
6
Abstract :
This paper presents a study on quantitative dynamics analysis of human lower limb using developed wearable sensor systems that can measure reaction force and detect the following gait phases: initial contact, loading response, mid stance, terminal stance, pre-swing, initial swing, mid swing and terminal swing. Since conventional camera-based motion analysis system and reaction force plate system require costly devices, vast space as well as time-consuming calibration experiments, the wearable sensor-based system is much cheaper. Gyroscopes and two-axis accelerometers are incorporated in this wearable sensor system. The former are attached on the surface of the foot, shank and thigh to measure the angular velocity of each segment, and the latter are used to measure inclination of the attached leg segment (shank) in every single human motion cycle for recalibration. Ground reaction forces during human walking are synchronously measured using a wearable force sensor integrated in a shoes mechanism. Finally, experiment has been performed to compare the measurement results from the wearable sensor system with the data obtained from an optical motion analysis system and a force plate. The results showed that the measurement of human lower limb orientations and reaction forces for human dynamics analysis could be reliably implemented using the wearable sensor systems.
Keywords :
accelerometers; angular velocity measurement; biomedical measurement; force sensors; gait analysis; gyroscopes; muscle; position measurement; angular velocity measurement; foot surface; gait analysis; gait phase detection; ground reaction force; gyroscopes; human dynamics analysis; human lower limb orientation measurement; human motion cycle; inclination measurement; initial contact; loading response; quantitative dynamics analysis; shank; shoes; terminal stance; terminal swing; thigh; two-axis accelerometers; wearable sensor systems; Anthropometry; Force measurement; Force sensors; Humans; Motion analysis; Motion measurement; Phase detection; Phase measurement; Velocity measurement; Wearable sensors; gait phases; ground reaction force; human dynamics analysis; wearable sensor system;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Advanced intelligent mechatronics, 2007 IEEE/ASME international conference on
Conference_Location :
Zurich
Print_ISBN :
978-1-4244-1263-1
Electronic_ISBN :
978-1-4244-1264-8
Type :
conf
DOI :
10.1109/AIM.2007.4412493
Filename :
4412493
Link To Document :
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