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Journal of Strength and Conditioning Research|February 28, 2017
Changes in Vertical and Joint Stiffness in Runners With Advancing AgeDouglas W Powell, D S Blaise Williams
Human Movement Science|July 9, 2016
Arch structure is associated with unique joint work, relative joint contributions and stiffness during landingDouglas W Powell, Robin M Queen, D S Blaise Williams
Journal of the American Podiatric Medical Association|March 29, 2013
A comparison of two multisegment foot models in high-and low-arched athletesDouglas W Powell, D S Blaise Williams, Robert J Butler
Medicine and Science in Sports and Exercise|July 15, 2017
Contributions to Leg Stiffness in High- Compared with Low-Arched AthletesDouglas W Powell, Max R Paquette, D S Blaise Williams
Journal of Sport and Health Science|October 26, 2018
Athletes who train on unstable compared to stable surfaces exhibit unique postural control strategies in response to balance perturbationsD S Blaise Williams, Nicholas G Murray, Douglas W Powell
Journal of Applied Biomechanics|October 14, 2016
Lower Extremity Joint Work During Acceleration, Deceleration, and Steady State RunningD S Blaise Williams, Jonathan H Cole, Douglas W Powell
Human Movement Science|October 17, 2016
High- compared to low-arched athletes exhibit smaller knee abduction moments in walking and runningDouglas W Powell, Samantha Andrews, Cris Stickley, et al.
Clinical Journal of Sport Medicine : Official Journal of the Canadian Academy of Sport Medicine|May 16, 2012
Frontal plane landing mechanics in high-arched compared with low-arched female athletesDouglas W Powell, Nicholas J Hanson, Benjamin Long, et al.
Human Movement Science|March 6, 2018
Influence of rest interval on foot-tibia coordination with chronic ankle instability during the Star Excursion Balance TestYong Ung Kwon, Brent L Arnold, Douglas W Powell, et al.
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