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M H Granat

Showing results (31-40 of 42) with videos related to

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Spinal Cord|December 12, 2007
Objective assessment of mobility of the spinal cord injured in a free-living environmentS K M Wilson, J P Hasler, P M Dall, et al.
Spinal Cord|September 22, 2010
Development and validation of a physical activity monitor for use on a wheelchairE H Coulter, P M Dall, L Rochester, et al.
Artificial Organs|March 1, 1997
Further development of hybrid functional electrical stimulation orthosesL Yang, M H Granat, J P Paul, et al.
Journal of Biomechanics|February 1, 1996
Effects of joint motion constraints on the gait of normal subjects and their implications on the further development of hybrid FES orthosis for paraplegic personsL Yang, D N Condie, M H Granat, et al.
Spinal Cord|October 1, 1996
Further development of hybrid functional electrical stimulation orthosesL Yang, M H Granat, J P Paul, et al.
Journal of Biomedical Engineering|January 1, 1993
Improving limb flexion in FES gait using the flexion withdrawal response for the spinal cord injured personM H Granat, B W Heller, D J Nicol, et al.
Archives of Physical Medicine and Rehabilitation|January 1, 1996
Peroneal stimulator; evaluation for the correction of spastic drop foot in hemiplegiaM H Granat, D J Maxwell, A C Ferguson, et al.
Medical Engineering & Physics|January 1, 1994
Improved harness crutch to reduce upper limb effort in swing-through gaitB J Andrews, M H Granat, B W Heller, et al.
Scientific Reports|July 25, 2018
Upper limb activity in myoelectric prosthesis users is biased towards the intact limb and appears unrelated to goal-directed task performanceA Chadwell, L Kenney, M H Granat, et al.
Medical Engineering & Physics|July 1, 1995
A body-worn gait analysis system for evaluating hemiplegic gaitM H Granat, D J Maxwell, C J Bosch, et al.
Pageof 5

Showing results (31-40 of 42) with videos related to

Sort By:
Pageof 5
Spinal Cord|December 12, 2007
Objective assessment of mobility of the spinal cord injured in a free-living environmentS K M Wilson, J P Hasler, P M Dall, et al.
Spinal Cord|September 22, 2010
Development and validation of a physical activity monitor for use on a wheelchairE H Coulter, P M Dall, L Rochester, et al.
Artificial Organs|March 1, 1997
Further development of hybrid functional electrical stimulation orthosesL Yang, M H Granat, J P Paul, et al.
Journal of Biomechanics|February 1, 1996
Effects of joint motion constraints on the gait of normal subjects and their implications on the further development of hybrid FES orthosis for paraplegic personsL Yang, D N Condie, M H Granat, et al.
Spinal Cord|October 1, 1996
Further development of hybrid functional electrical stimulation orthosesL Yang, M H Granat, J P Paul, et al.
Journal of Biomedical Engineering|January 1, 1993
Improving limb flexion in FES gait using the flexion withdrawal response for the spinal cord injured personM H Granat, B W Heller, D J Nicol, et al.
Archives of Physical Medicine and Rehabilitation|January 1, 1996
Peroneal stimulator; evaluation for the correction of spastic drop foot in hemiplegiaM H Granat, D J Maxwell, A C Ferguson, et al.
Medical Engineering & Physics|January 1, 1994
Improved harness crutch to reduce upper limb effort in swing-through gaitB J Andrews, M H Granat, B W Heller, et al.
Scientific Reports|July 25, 2018
Upper limb activity in myoelectric prosthesis users is biased towards the intact limb and appears unrelated to goal-directed task performanceA Chadwell, L Kenney, M H Granat, et al.
Medical Engineering & Physics|July 1, 1995
A body-worn gait analysis system for evaluating hemiplegic gaitM H Granat, D J Maxwell, C J Bosch, et al.
Pageof 5