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Journal of the Royal Society, Interface|October 16, 2009
Rate-dependent control strategies stabilize limb forces during human locomotionJasper T Yen, Young-Hui ChangAnnual International Conference of the IEEE Engineering in Medicine and Biology Society. IEEE Engineering in Medicine and Biology Society. Annual International Conference|December 8, 2009
Control strategy for stabilizing force with goal-equivalent joint torques is frequency-dependent during human hoppingJasper T Yen, Young-Hui ChangExperimental Brain Research|October 8, 2008
Neuromechanical stabilization of leg length and orientation through interjoint compensation during human hoppingArick G Auyang, Jasper T Yen, Young-Hui ChangExperimental Brain Research|June 5, 2009
Joint-level kinetic redundancy is exploited to control limb-level forces during human hoppingJasper T Yen, Arick G Auyang, Young-Hui ChangJournal of Rehabilitation Medicine|November 10, 2015
Altered force perception in stroke survivors with spastic hemiplegiaJasper T Yen, Sheng LiJournal of Neuroscience Methods|August 18, 2010
Autogenic EMG-controlled functional electrical stimulation for ankle dorsiflexion controlHojun Yeom, Young-Hui ChangThe Journal of Experimental Biology|March 6, 2007
Limitations to maximum running speed on flat curvesYoung-Hui Chang, Rodger KramExperimental Brain Research|October 2, 2013
Humans robustly adhere to dynamic walking principles by harnessing motor abundance to control forcesMegan E Toney, Young-Hui ChangJournal of Neuroscience Methods|November 11, 2009
High-speed X-ray video demonstrates significant skin movement errors with standard optical kinematics during rat locomotionJay M Bauman, Young-Hui ChangBiology Letters|May 26, 2017
Mechanical evidence that flamingos can support their body on one leg with little active muscular forceYoung-Hui Chang, Lena H TingPageof 5