DocumentCode
1762747
Title
Active and Progressive Exoskeleton Rehabilitation Using Multisource Information Fusion From EMG and Force-Position EPP
Author
Yuanjie Fan ; Yuehong Yin
Author_Institution
State Key Lab. of Mech. Syst. & Vibration, Shanghai Jiao Tong Univ., Shanghai, China
Volume
60
Issue
12
fYear
2013
fDate
Dec. 2013
Firstpage
3314
Lastpage
3321
Abstract
Although exoskeletons have received enormous attention and have been widely used in gait training and walking assistance in recent years, few reports addressed their application during early poststroke rehabilitation. This paper presents a healthcare technology for active and progressive early rehabilitation using multisource information fusion from surface electromyography and force-position extended physiological proprioception. The active-compliance control based on interaction force between patient and exoskeleton is applied to accelerate the recovery of the neuromuscular function, whereby progressive treatment through timely evaluation contributes to an effective and appropriate physical rehabilitation. Moreover, a clinic-oriented rehabilitation system, wherein a lower extremity exoskeleton with active compliance is mounted on a standing bed, is designed to ensure comfortable and secure rehabilitation according to the structure and control requirements. Preliminary experiments and clinical trial demonstrate valuable information on the feasibility, safety, and effectiveness of the progressive exoskeleton-assisted training.
Keywords
assisted living; biomechanics; diseases; electromyography; patient rehabilitation; patient treatment; EMG; active exoskeleton rehabilitation; active-compliance control; clinic-oriented rehabilitation system; early poststroke rehabilitation; force-position EPP; force-position extended physiological proprioception; gait training; healthcare technology; multisource information fusion; neuromuscular function recovery; physical rehabilitation; progressive exoskeleton rehabilitation; progressive exoskeleton-assisted training; standing bed; surface electromyography; walking assistance; Extended physiological proprioception (EPP) feedback; exoskeleton robot; multisource information fusion; personalized rehabilitation; real-time evaluation;
fLanguage
English
Journal_Title
Biomedical Engineering, IEEE Transactions on
Publisher
ieee
ISSN
0018-9294
Type
jour
DOI
10.1109/TBME.2013.2267741
Filename
6529106
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