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Objective: T o determine differences between contralateral limbs’ strength, proprio-ception, and kinetic and knee-kinematic variables during single-limb landing. Setting: Laboratory. Subjects: 30. Measurements: Hip, knee, and foot isokinetic peak torques; anterior/posterior (AP) and medial/lateral (ML) sway displacements during a balance task; and stabilization times, vertical ground-reaction force (VGRF), time to peak VGRF, and knee-flexion range of motion (ROM) from initial foot contact to peak VGRF during single-limb landing. Results: The kicking limb had significantly greater values for knee-extension ( P = .008) and -flexion ( P = .047) peak torques, AP sway displacement ( P = .010), knee-flexion ROM from initial foot contact to peak VGRF ( P .05). Conclusion: The kicking limb had superior thigh strength, better proprioception, and greater knee-flexion ROM than the stance limb.
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Scott E. Ross
University of North Carolina at Greensboro
Kevin M. Guskiewicz
Florida State University
William E. Prentice
University of North Carolina at Chapel Hill
Journal of Sport Rehabilitation
Virginia Commonwealth University
Center for Health, Exercise and Sport Sciences
University of Health and Allied Sciences
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Ross et al. (Sat,) studied this question.
synapsesocial.com/papers/6a1fc89dce3cb5ba46e69b7e — DOI: https://doi.org/10.1123/jsr.13.2.135