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Experimental Brain Research|April 13, 2010
The curvature and variability of wrist and arm movementsSteven K Charles, Neville HoganJournal of Neurophysiology|December 2, 2011
Stiffness, not inertial coupling, determines path curvature of wrist motionsSteven K Charles, Neville HoganJournal of Neurophysiology|March 31, 2017
Moving slowly is hard for humans: limitations of dynamic primitivesSe-Woong Park, Hamal Marino, Steven K Charles, et al.Frontiers in Computational Neuroscience|July 27, 2013
Transitions between discrete and rhythmic primitives in a unimanual taskDagmar Sternad, Hamal Marino, Steven K Charles, et al.IEEE Transactions on Bio-Medical Engineering|April 2, 2014
Position-dependent characterization of passive wrist stiffnessAutumn L Pando, Hyunglae Lee, Will B Drake, et al.Journal of Neurophysiology|June 1, 2012
The passive stiffness of the wrist and forearmDomenico Formica, Steven K Charles, Loredana Zollo, et al.IEEE Transactions on Neural Systems and Rehabilitation Engineering : a Publication of the IEEE Engineering in Medicine and Biology Society|September 27, 2007
Robot-aided neurorehabilitation: a robot for wrist rehabilitationHermano Igo Krebs, Bruce T Volpe, Dustin Williams, et al.Biological Cybernetics|March 30, 2006
Avoiding spurious submovement decompositions II: a scattershot algorithmBrandon Rohrer, Neville HoganFrontiers in Computational Neuroscience|June 27, 2013
Dynamic primitives in the control of locomotionNeville Hogan, Dagmar SternadPageof 13