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The European Journal of Neuroscience|December 6, 2003
Engagement of visual fixation suppresses sensory responsiveness and multisensory integration in the primate superior colliculusA H Bell, B D Corneil, D P Munoz, et al.
Alcoholism, Clinical and Experimental Research|April 13, 2013
Altered accuracy of saccadic eye movements in children with fetal alcohol spectrum disorderAngelina Paolozza, Rebecca Titman, Donald Brien, et al.
Journal of Cognitive Neuroscience|March 28, 2013
A retinotopic attentional trace after saccadic eye movements: evidence from event-related potentialsDurk Talsma, Brian J White, Sebastiaan Mathôt, et al.
Journal of Neurophysiology|April 4, 2003
Altered control of visual fixation and saccadic eye movements in attention-deficit hyperactivity disorderDouglas P Munoz, Irene T Armstrong, Karen A Hampton, et al.
Nature Neuroscience|November 2, 2002
Human fMRI evidence for the neural correlates of preparatory setJason D Connolly, Melvyn A Goodale, Ravi S Menon, et al.
Journal of Neurophysiology|December 14, 2004
fMRI activation in the human frontal eye field is correlated with saccadic reaction timeJason D Connolly, Melvyn A Goodale, Herbert C Goltz, et al.
Journal of Cognitive Neuroscience|March 13, 2001
A model of saccade initiation based on the competitive integration of exogenous and endogenous signals in the superior colliculusT P Trappenberg, M C Dorris, D P Munoz, et al.
Journal of Neurophysiology|May 13, 1999
Influence of previous visual stimulus or saccade on saccadic reaction times in monkeyM C Dorris, T L Taylor, R M Klein, et al.
Brain : a Journal of Neurology|September 26, 2001
Control of volitional and reflexive saccades in Tourette's syndromeA L LeVasseur, J R Flanagan, R J Riopelle, et al.
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