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Experimental Brain Research|May 12, 2005
Perceptual coupling in rhythmic movement coordination: stable perception leads to stable actionAndrew D Wilson, David R Collins, Geoffrey P Bingham
Experimental Brain Research|May 17, 2005
Human movement coordination implicates relative direction as the information for relative phaseAndrew D Wilson, David R Collins, Geoffrey P Bingham
Perception & Psychophysics|May 8, 2008
Identifying the information for the visual perception of relative phaseAndrew D Wilson, Geoffrey P Bingham
Journal of Experimental Psychology. Human Perception and Performance|August 25, 2010
Perceptual learning immediately yields new stable motor coordinationAndrew D Wilson, Winona Snapp-Childs, Geoffrey P Bingham
Journal of Experimental Psychology. Human Perception and Performance|December 4, 2003
Proprioceptive perception of phase variabilityAndrew D Wilson, Geoffrey P Bingham, James C Craig
Experimental Brain Research|September 29, 2011
The stability of rhythmic movement coordination depends on relative speed: the Bingham model supportedWinona Snapp-Childs, Andrew D Wilson, Geoffrey P Bingham
Experimental Brain Research|May 2, 2015
Transfer of learning between unimanual and bimanual rhythmic movement coordination: transfer is a function of the task dynamicWinona Snapp-Childs, Andrew D Wilson, Geoffrey P Bingham
Journal of Experimental Psychology. Human Perception and Performance|January 15, 2016
Using task dynamics to quantify the affordances of throwing for long distance and accuracyAndrew D Wilson, Andrew Weightman, Geoffrey P Bingham, et al.
Experimental Brain Research|August 13, 2010
Learning a coordinated rhythmic movement with task-appropriate coordination feedbackAndrew D Wilson, Winona Snapp-Childs, Rachel Coats, et al.
Experimental Brain Research|December 6, 2012
Perceptuo-motor learning rate declines by half from 20s to 70/80sRachel O Coats, Winona Snapp-Childs, Andrew D Wilson, et al.
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