DocumentCode
1763894
Title
CYBERLEGs: A User-Oriented Robotic Transfemoral Prosthesis with Whole-Body Awareness Control
Author
Ambrozic, L. ; Gorsic, M. ; Geeroms, J. ; Flynn, L. ; Molino Lova, R. ; Kamnik, R. ; Munih, M. ; Vitiello, N.
Author_Institution
Univ. of Ljubljana, Ljubljana, Slovenia
Volume
21
Issue
4
fYear
2014
fDate
Dec. 2014
Firstpage
82
Lastpage
93
Abstract
Restoring the mobility of transfemoral dysvascular amputees is essential to their rehabilitation process. Impeding the restoration of mobility, exhaustion is often the cause of noneffective deambulation of elderly lowerlimb amputees using a prosthesis as they use more energy for locomotion than younger amputees do. This article presents finite-state control of a novel powered prosthesis prototype for transfemoral amputees based on whole-body awareness. Intention detection was implemented through a noninvasive, distributed wireless wearable sensory system. The cybernetic lower-limb cognitive orthoprosthesis (CYBERLEGs) system was evaluated in a study involving three amputees. The subjects were able to walk with the prosthesis without training, showing accurate performance of the intention detection. The functionality of the CYBERLEGs approach was confirmed by gait pattern analysis and intention detection statistics.
Keywords
artificial limbs; gait analysis; medical robotics; patient rehabilitation; CYBERLEGs; cybernetic lower-limb cognitive orthoprosthesis; finite-state control; gait pattern analysis; intention detection statistics; rehabilitation process; user-oriented robotic transfemoral prosthesis; whole-body awareness control; wireless wearable sensory system; Amputees; Cybernetics; Legged locomotion; Medical robots; Patient rehabilitation; Prosthetics; Robot kinematics; Wireless communication; Wireless sensor networks;
fLanguage
English
Journal_Title
Robotics & Automation Magazine, IEEE
Publisher
ieee
ISSN
1070-9932
Type
jour
DOI
10.1109/MRA.2014.2360278
Filename
6990834
Link To Document