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Experimental Brain Research|November 29, 2017
Predicting vection and visually induced motion sickness based on spontaneous postural activityStephen Palmisano, Benjamin Arcioni, Paul J StapleyExperimental Brain Research|January 23, 2014
Spontaneous postural sway predicts the strength of smooth vectionStephen Palmisano, Deborah Apthorp, Takeharu Seno, et al.Experimental Brain Research|February 4, 2016
Age-related effects of increasing postural challenge on eye movement onset latencies to visual targetsSergio Jimenez, Mark Hollands, Stephen Palmisano, et al.Journal of Sports Sciences|November 2, 2010
Differences in gender and performance in off-road triathlonRomuald Lepers, Paul J StapleyEuropean Journal of Applied Physiology|January 7, 2011
Age-related changes in conventional road versus off-road triathlon performanceRomuald Lepers, Paul J StapleyJournal of Neurophysiology|January 2, 2009
The pontomedullary reticular formation contributes to the compensatory postural responses observed following removal of the support surface in the standing catPaul J Stapley, Trevor DrewFrontiers in Physiology|December 27, 2016
Master Athletes Are Extending the Limits of Human EnduranceRomuald Lepers, Paul J StapleyExperimental Brain Research|January 10, 2016
Trunk muscles contribute as functional groups to directionality of reaching during stanceAlexander Stamenkovic, Paul J StapleyPerception|May 23, 2002
Consistent stereoscopic information increases the perceived speed of vection in depthStephen PalmisanoExperimental Brain Research|May 22, 2002
Coordination between equilibrium and hand trajectories during whole body pointing movementsThierry Pozzo, Paul J Stapley, Charalambos PapaxanthisPageof 13