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Dominic James Farris

Showing results (1-10 of 19) with videos related to

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Journal of Biomechanics|February 22, 2016
Emulating constant acceleration locomotion mechanics on a treadmillDominic James Farris
The Journal of Experimental Biology|September 29, 2017
Elastic ankle muscle-tendon interactions are adjusted to produce acceleration during walking in humansDominic James Farris, Brent James Raiteri
Proceedings of the National Academy of Sciences of the United States of America|January 6, 2012
Human medial gastrocnemius force-velocity behavior shifts with locomotion speed and gaitDominic James Farris, Gregory S Sawicki
Journal of the Royal Society, Interface|May 27, 2011
The mechanics and energetics of human walking and running: a joint level perspectiveDominic James Farris, Gregory S Sawicki
Royal Society Open Science|April 14, 2017
Modulation of leg joint function to produce emulated acceleration during walking and running in humansDominic James Farris, Brent J Raiteri
Computer Methods and Programs in Biomedicine|April 5, 2016
UltraTrack: Software for semi-automated tracking of muscle fascicles in sequences of B-mode ultrasound imagesDominic James Farris, Glen A Lichtwark
Journal of Applied Physiology (Bethesda, Md. : 1985)|October 16, 2012
Linking the mechanics and energetics of hopping with elastic ankle exoskeletonsDominic James Farris, Gregory S Sawicki
Journal of the Royal Society, Interface|June 29, 2022
Walking with increasing acceleration is achieved by tuning ankle torque onset timing and rate of torque developmentLogan Wade, Jonathon Birch, Dominic James Farris
Scientific Reports|February 4, 2018
Movement Strategies for Countermovement Jumping are Potentially Influenced by Elastic Energy Stored and Released from TendonsLogan Wade, Glen Lichtwark, Dominic James Farris
Journal of the Royal Society, Interface|July 18, 2020
Foot stiffening during the push-off phase of human walking is linked to active muscle contraction, and not the windlass mechanismDominic James Farris, Jonathon Birch, Luke Kelly
Pageof 2

Showing results (1-10 of 19) with videos related to

Sort By:
Pageof 2
Journal of Biomechanics|February 22, 2016
Emulating constant acceleration locomotion mechanics on a treadmillDominic James Farris
The Journal of Experimental Biology|September 29, 2017
Elastic ankle muscle-tendon interactions are adjusted to produce acceleration during walking in humansDominic James Farris, Brent James Raiteri
Proceedings of the National Academy of Sciences of the United States of America|January 6, 2012
Human medial gastrocnemius force-velocity behavior shifts with locomotion speed and gaitDominic James Farris, Gregory S Sawicki
Journal of the Royal Society, Interface|May 27, 2011
The mechanics and energetics of human walking and running: a joint level perspectiveDominic James Farris, Gregory S Sawicki
Royal Society Open Science|April 14, 2017
Modulation of leg joint function to produce emulated acceleration during walking and running in humansDominic James Farris, Brent J Raiteri
Computer Methods and Programs in Biomedicine|April 5, 2016
UltraTrack: Software for semi-automated tracking of muscle fascicles in sequences of B-mode ultrasound imagesDominic James Farris, Glen A Lichtwark
Journal of Applied Physiology (Bethesda, Md. : 1985)|October 16, 2012
Linking the mechanics and energetics of hopping with elastic ankle exoskeletonsDominic James Farris, Gregory S Sawicki
Journal of the Royal Society, Interface|June 29, 2022
Walking with increasing acceleration is achieved by tuning ankle torque onset timing and rate of torque developmentLogan Wade, Jonathon Birch, Dominic James Farris
Scientific Reports|February 4, 2018
Movement Strategies for Countermovement Jumping are Potentially Influenced by Elastic Energy Stored and Released from TendonsLogan Wade, Glen Lichtwark, Dominic James Farris
Journal of the Royal Society, Interface|July 18, 2020
Foot stiffening during the push-off phase of human walking is linked to active muscle contraction, and not the windlass mechanismDominic James Farris, Jonathon Birch, Luke Kelly
Pageof 2