DocumentCode
2044786
Title
A gait trajectory measuring and planning method for lower limb robotic rehabilitation
Author
Xiaonan Wang ; Xuewei Cao ; Haitao Song ; Tao Lu ; Kui Yuan
Author_Institution
Inst. of Autom., Beijing, China
fYear
2015
fDate
2-5 Aug. 2015
Firstpage
1489
Lastpage
1494
Abstract
In the past decade, gait rehabilitation robot has drawn comprehensive attention. Robots greatly reduce the workload of physical therapists and thus making rehabilitation sessions more effective and widely available. Various research efforts have been made in the field of robot-assisted rehabilitation. One of the key concerns of robotic assisted gait rehabilitation is gait planning and customization. In this paper, we first introduce a human gait measuring system based on binocular vision technique. Through the measuring system, gait data of healthy subjects under different walking speed are collected, which are used as the reference database for gait planning. On the basis of collected data, a method of gait planning and customization based on patients´ physical characteristics is proposed. Finally, to validate the applicability of the generated gait patterns, the customized gait trajectories are implemented on a prototype of lower limbs rehabilitation robot. Experiment on healthy subject shows positive results with the gait trajectories generated by the proposed method.
Keywords
feature extraction; gait analysis; medical robotics; path planning; patient rehabilitation; robot vision; trajectory control; binocular vision technique; feature extraction; gait customization; gait data; gait patterns; gait rehabilitation robot; gait trajectory measuring method; gait trajectory planning method; human gait measuring system; lower-limb robotic rehabilitation; measuring system; patient physical characteristics; physical therapist workload reduction; reference database; robotic assisted gait rehabilitation; walking speed; Cameras; Databases; Joints; Legged locomotion; Planning; Trajectory; binocular vision; gait pattern planning; gait rehabilitation robot; motion capture;
fLanguage
English
Publisher
ieee
Conference_Titel
Mechatronics and Automation (ICMA), 2015 IEEE International Conference on
Conference_Location
Beijing
Print_ISBN
978-1-4799-7097-1
Type
conf
DOI
10.1109/ICMA.2015.7237705
Filename
7237705
Link To Document