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Journal of Biomechanics|September 12, 2017
Dynamic balance in persons with multiple sclerosis who have a falls history is altered compared to non-fallers and to healthy controlsAlexander T Peebles, Adam P Bruetsch, Sharon G Lynch, et al.
Archives of Physical Medicine and Rehabilitation|November 26, 2015
Characterization of Compensatory Stepping in People With Multiple SclerosisDaniel S Peterson, Jessie M Huisinga, Rebecca I Spain, et al.
Human Movement Science|June 1, 2019
Altered visual and somatosensory feedback affects gait stability in persons with multiple sclerosisJordan J Craig, Adam P Bruetsch, Sharon G Lynch, et al.
Clinical Biomechanics (Bristol, Avon)|August 22, 2017
The relationship between trunk and foot acceleration variability during walking shows minor changes in persons with multiple sclerosisJordan J Craig, Adam P Bruetsch, Sharon G Lynch, et al.
Archives of Physical Medicine and Rehabilitation|March 11, 2017
Validity of the Instrumented Push and Release Test to Quantify Postural Responses in Persons With Multiple SclerosisMahmoud El-Gohary, Daniel Peterson, Geetanjali Gera, et al.
Magnetic Resonance Imaging|November 10, 2019
Correlation between spinal cord diffusion tensor imaging and postural response latencies in persons with multiple sclerosis: A pilot studyChu-Yu Lee, Jessie M Huisinga, In-Young Choi, et al.
Journal of Biomechanics|November 28, 2016
Dynamic margin of stability during gait is altered in persons with multiple sclerosisAlexander T Peebles, Alyson Reinholdt, Adam P Bruetsch, et al.
Archives of Physical Medicine and Rehabilitation|January 22, 2014
Postural response latencies are related to balance control during standing and walking in patients with multiple sclerosisJessie M Huisinga, Rebecca J St George, Rebecca Spain, et al.
Journal of Neuroengineering and Rehabilitation|May 24, 2017
Instrumented balance and walking assessments in persons with multiple sclerosis show strong test-retest reliabilityJordan J Craig, Adam P Bruetsch, Sharon G Lynch, et al.
Journal of Rehabilitation Research and Development|May 6, 2016
Gait kinematics and kinetics are affected more by peripheral arterial disease than by ageSara A Myers, Bryon C Applequist, Jessie M Huisinga, et al.
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