The effect of integrated microprocessor controlled knee-foot for inclined walking - a preliminary study on LiNX
The effect of integrated microprocessor controlled knee-foot for inclined walking - a preliminary study on LiNX
Tang, Jing
b4b9a22c-fd6d-427a-9ab1-51184c1d2a2c
Jiang, Liudi
374f2414-51f0-418f-a316-e7db0d6dc4d1
Moser, David
09874cab-348f-47f9-b018-1c2875d16998
Zahedi, Saeed
fec0d8af-5088-4b23-b94e-2ba1d019850a
October 2015
Tang, Jing
b4b9a22c-fd6d-427a-9ab1-51184c1d2a2c
Jiang, Liudi
374f2414-51f0-418f-a316-e7db0d6dc4d1
Moser, David
09874cab-348f-47f9-b018-1c2875d16998
Zahedi, Saeed
fec0d8af-5088-4b23-b94e-2ba1d019850a
Tang, Jing, Jiang, Liudi, Moser, David and Zahedi, Saeed
(2015)
The effect of integrated microprocessor controlled knee-foot for inclined walking - a preliminary study on LiNX.
2015 American Orthotic Prosthetic Association National Assembly, San Antonio, United States.
07 - 10 Oct 2015.
1 pp
.
Record type:
Conference or Workshop Item
(Poster)
More information
Accepted/In Press date: 2015
Published date: October 2015
Venue - Dates:
2015 American Orthotic Prosthetic Association National Assembly, San Antonio, United States, 2015-10-07 - 2015-10-10
Organisations:
Faculty of Engineering and the Environment
Identifiers
Local EPrints ID: 402531
URI: http://eprints.soton.ac.uk/id/eprint/402531
PURE UUID: 118cc37a-85c7-4381-bc1e-d087208033bd
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Date deposited: 09 Nov 2016 10:44
Last modified: 15 Mar 2024 03:58
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Contributors
Author:
David Moser
Author:
Saeed Zahedi
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