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Archives Italiennes De Biologie|August 14, 2002
Time course of a repetition effect on saccadic reaction time in non-human primatesJ L Gore, M C Dorris, D P MunozJournal 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.Experimental Brain Research|September 1, 1996
Combined eye-head gaze shifts to visual and auditory targets in humansJ E Goldring, M C Dorris, B D Corneil, et al.Neuropsychologia|September 18, 1998
The antisaccade: a review of basic research and clinical studiesS Everling, B FischerClinical Neurophysiology : Official Journal of the International Federation of Clinical Neurophysiology|May 30, 2001
Prestimulus cortical potentials predict the performance in a saccadic distractor paradigmS Everling, A Matthews, H FlohrVision Research|November 3, 1998
Accuracy of visually and memory-guided antisaccades in manP Krappmann, S Everling, H FlohrElectroencephalography and Clinical Neurophysiology|April 1, 1997
Cortical potentials preceding pro- and antisaccades in manS Everling, P Krappmann, H FlohrJournal of Neurophysiology|December 1, 1996
Saccadic reaction time in the monkey: advanced preparation of oculomotor programs is primarily responsible for express saccade occurrenceM Paré, D P MunozRevue Neurologique|January 1, 1989
Fixation and orientation control by the tecto-reticulo-spinal system in the cat whose head is unrestrainedD P Munoz, D GuittonPageof 7