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Journal of Theoretical Biology|August 18, 2012
Elastic recoil can either amplify or attenuate muscle-tendon power, depending on inertial vs. fluid dynamic loadingChristopher T Richards, Gregory S SawickiIEEE Transactions on Bio-Medical Engineering|October 21, 2015
A Simple Model to Estimate Plantarflexor Muscle-Tendon Mechanics and Energetics During Walking With Elastic Ankle ExoskeletonsGregory S Sawicki, Nabil S KhanJournal of the Royal Society, Interface|June 1, 2022
Which lower limb joints compensate for destabilizing energy during walking in humans?Pawel R Golyski, Gregory S SawickiJournal of Neuroengineering and Rehabilitation|June 17, 2020
Impact of elastic ankle exoskeleton stiffness on neuromechanics and energetics of human walking across multiple speedsRichard W Nuckols, Gregory S SawickiJournal of Theoretical Biology|March 20, 2014
Exploiting elasticity: Modeling the influence of neural control on mechanics and energetics of ankle muscle-tendons during human hoppingBenjamin D Robertson, Gregory S SawickiAnnual International Conference of the IEEE Engineering in Medicine and Biology Society. IEEE Engineering in Medicine and Biology Society. Annual International Conference|January 19, 2012
Influence of parallel spring-loaded exoskeleton on ankle muscle-tendon dynamics during simulated human hoppingBenjamin D Robertson, Gregory S SawickiProceedings 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 SawickiJournal 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 SawickiThe Journal of Experimental Biology|April 22, 2008
Mechanics and energetics of level walking with powered ankle exoskeletonsGregory S Sawicki, Daniel P FerrisThe Journal of Experimental Biology|December 18, 2008
Powered ankle exoskeletons reveal the metabolic cost of plantar flexor mechanical work during walking with longer steps at constant step frequencyGregory S Sawicki, Daniel P FerrisPageof 28