DocumentCode
1983038
Title
Strategies to reduce the configuration time for a powered knee and ankle prosthesis across multiple ambulation modes
Author
Simon, Ann M. ; Fey, Nicholas P. ; Finucane, S.B. ; Lipschutz, R.D. ; Hargrove, Levi J.
Author_Institution
Center for Bionic Med., Rehabilitation Inst. of Chicago, Chicago, IL, USA
fYear
2013
fDate
24-26 June 2013
Firstpage
1
Lastpage
6
Abstract
Recently developed powered lower limb prostheses allow users to more closely mimic the kinematics and kinetics of non-amputee gait. However, configuring such a device, in particular a combined powered knee and ankle, for individuals with a transfemoral amputation is challenging. Previous attempts have relied on empirical tuning of all control parameters. This paper describes modified stance phase control strategies - which mimic the behavior of biological joints or depend on the instantaneous loads within the prosthesis - developed to reduce the number of control parameters that require individual tuning. Three individuals with unilateral transfemoral amputations walked with a powered knee and ankle prosthesis across five ambulation modes (level ground walking, ramp ascent/descent, and stair ascent/descent). Starting with a nominal set of impedance parameters, the modified control strategies were applied and the devices were individually tuned such that all subjects achieved comfortable and safe ambulation. The control strategies drastically reduced the number of independent parameters that needed to be tuned for each subject (i.e., to 21 parameters instead of a possible 140 or approximately 4 parameters per mode) while relative amplitudes and timing of kinematic and kinetic data remained similar to those previously reported and to those of non-amputee subjects. Reducing the time necessary to configure a powered device across multiple ambulation modes may allow users to more quickly realize the benefits such powered devices can provide.
Keywords
gait analysis; kinematics; medical robotics; phase control; prosthetics; ankle prosthesis; biological joints; control parameter tuning; modified stance phase control strategies; multiple ambulation modes; nonamputee gait kinematics; nonamputee gait kinetics; powered ankle; powered knee; powered lower limb prostheses; unilateral transfemoral amputations; Impedance; Joints; Kinematics; Knee; Legged locomotion; Prosthetics; Tuning; lower limb amputation; mechanically active prosthesis; prosthesis control; transfemoral amputee;
fLanguage
English
Publisher
ieee
Conference_Titel
Rehabilitation Robotics (ICORR), 2013 IEEE International Conference on
Conference_Location
Seattle, WA
ISSN
1945-7898
Print_ISBN
978-1-4673-6022-7
Type
conf
DOI
10.1109/ICORR.2013.6650371
Filename
6650371
Link To Document