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Experimental Brain Research|January 1, 1983
Thalamic units firing upon refixation may be responsible for plasticity in visual cortexJ Schlag, M Schlag-ReyExperimental Brain Research|January 1, 1987
Does microstimulation evoke fixed-vector saccades by generating their vector or by specifying their goal?J Schlag, M Schlag-ReyExperimental Brain Research|January 1, 1985
Unit activity related to spontaneous saccades in frontal dorsomedial cortex of monkeyJ Schlag, M Schlag-ReyExperimental Brain Research|January 1, 1989
Interactions between natural and electrically evoked saccades. I. Differences between sites carrying retinal error and motor error signals in monkey superior colliculusM Schlag-Rey, J Schlag, B ShookExperimental Brain Research|January 1, 1989
Interactions between natural and electrically evoked saccades. II. At what time is eye position sampled as a reference for the localization of a target?J Schlag, M Schlag-Rey, P DassonvilleExperimental Brain Research|March 16, 2000
Testing quasi-visual neurons in the monkey's frontal eye field with the triple-step paradigmJ Tian, J Schlag, M Schlag-ReyExperimental Brain Research|January 1, 1992
Supplementary eye field: influence of eye position on neural signals of fixationJ Schlag, M Schlag-Rey, I PigarevExperimental Brain Research|January 1, 1992
The frontal eye field provides the goal of saccadic eye movementP Dassonville, J Schlag, M Schlag-ReyExperimental Brain Research|January 1, 1988
Direct projection from the supplementary eye field to the nucleus raphe interpositusB L Shook, M Schlag-Rey, J SchlagExperimental Brain Research|January 1, 1980
Visual responses of thalamic neurons depending on the direction of gaze and the position of targets in spaceJ Schlag, M Schlag-Rey, C K Peck, et al.Pageof 2