DocumentCode
1720913
Title
Study of gait symmetry quantification and its application to intelligent prosthetic leg development
Author
Wang, Fei ; Kim, Kijun ; Wen, Shiguang ; Wang, Yaning ; Wu, Chengdong
Author_Institution
Coll. of Inf. Sci. & Eng., Northeastern Univ., Shenyang, China
fYear
2011
Firstpage
1361
Lastpage
1366
Abstract
Human bipedal walking is symmetrical, stable and efficiency optimal. To clarify the essential relationship in human gait, accelerometers and rate gyroscopes are mounted on waist and lower extremities of subject to acquire kinematics information during walking. By employing Principal Component Analysis (PCA), kinematics signals of one side are reconstructed using that of opposite side. The reconstructed signals match the acquired ones very well, which verifies the existence of strong linear correlations in healthy human gait. To evaluate the symmetry of gait quantitatively, several classical temporal-spatial features for gait calculated by algorithms involving autocorrelation function are selected for construction of quantitative criterions by combining with symmetry indices. For the validation of gait symmetry quantification scheme, level walking experiments including healthy human subjects and human-intelligent prosthetic leg coupling system are conducted. Results indicate the correctness and effectiveness of the proposed scheme and gait symmetry analysis shows great potential in the field of bio-medical rehabilitation.
Keywords
accelerometers; artificial limbs; gait analysis; gyroscopes; medical signal processing; patient rehabilitation; principal component analysis; robot kinematics; signal reconstruction; PCA; accelerometer; autocorrelation function; biomedical rehabilitation; gait symmetry analysis; gait symmetry quantification; healthy human gait; healthy human subject; human bipedal walking; human-intelligent prosthetic leg coupling system; intelligent prosthetic leg development; kinematics information; kinematics signal reconstruction; level walking experiment; linear correlation; principal component analysis; rate gyroscope; symmetry index; Acceleration; Angular velocity; Correlation; Humans; Legged locomotion; Principal component analysis; Prosthetics; Gait analysis; PCA; autocorrelation function; intelligent prosthetic leg; symmetry quantification;
fLanguage
English
Publisher
ieee
Conference_Titel
Robotics and Biomimetics (ROBIO), 2011 IEEE International Conference on
Conference_Location
Karon Beach, Phuket
Print_ISBN
978-1-4577-2136-6
Type
conf
DOI
10.1109/ROBIO.2011.6181478
Filename
6181478
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