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Frontal eye field neurons with spatial representations predicted by their subcortical input.
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Frontal eye field neurons orthodromically activated from the superior colliculus.
J Neurophysiol. 1998 Dec;80(6):3331-5. doi: 10.1152/jn.1998.80.6.3331.
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Modulation of presaccadic activity in the frontal eye field by the superior colliculus.
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Causal Role of Neural Signals Transmitted From the Frontal Eye Field to the Superior Colliculus in Saccade Generation.
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Importance of corpus callosum for visual receptive fields of single neurons in cat superior colliculus.
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Adaptation across the 2D population code explains the spatially distributive nature of motor learning.
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Dynamic shifts of visual and saccadic signals in prefrontal cortical regions 8Ar and FEF.
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Organization of Corollary Discharge Neurons in Monkey Medial Dorsal Thalamus.
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Impairment but not abolishment of express saccades after unilateral or bilateral inactivation of the frontal eye fields.
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Perceptual Decision-Making: Biases in Post-Error Reaction Times Explained by Attractor Network Dynamics.
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Frontal Eye Field Inactivation Diminishes Superior Colliculus Activity, But Delayed Saccadic Accumulation Governs Reaction Time Increases.
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Circuits for presaccadic visual remapping.
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Corollary discharge across the animal kingdom.
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Brain circuits for the internal monitoring of movements.
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Influence of the thalamus on spatial visual processing in frontal cortex.
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The cellular basis of a corollary discharge.
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Corollary discharge and spatial updating: when the brain is split, is space still unified?
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