Abstract
Over 50% of individuals with lower limb amputation fall at least once each year. These individuals also exhibit reduced ability to effectively respond to challenges to frontal plane stability. The range of whole body angular momentum has been correlated with stability and fall risk. This study determined how lateral walking surface perturbations affected the regulation of whole body and individual leg angular momentum in able-bodied controls and individuals with unilateral transtibial amputation. Participants walked at fixed speed in a Computer Assisted Rehabilitation Environment with no perturbations and continuous, pseudo-random, mediolateral platform oscillations. Both the ranges and variability of angular momentum for both the whole body and both legs were significantly greater (p
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Sheehan, R. C., Beltran, E. J., Dingwell, J. B., & Wilken, J. M. (2015). Mediolateral angular momentum changes in persons with amputation during perturbed walking. Gait and Posture, 41(3), 795–800. https://doi.org/10.1016/j.gaitpost.2015.02.008
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