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Current Biology : CB|February 16, 2021
Transient deactivation of dorsal premotor cortex or parietal area 5 impairs feedback control of the limb in macaquesTomohiko Takei, Stephen G Lomber, Douglas J Cook, et al.
Experimental Brain Research|February 15, 2002
Restoration of visual orienting into a cortically blind hemifield by reversible deactivation of posterior parietal cortex or the superior colliculusStephen G Lomber, Bertram R Payne, Claus C Hilgetag, et al.
Journal of Computational Neuroscience|November 8, 2020
Frontal eye field inactivation alters the readout of superior colliculus activity for saccade generation in a task-dependent mannerTyler R Peel, Suryadeep Dash, Stephen G Lomber, et al.
Neuron|July 4, 2015
A Modality-Specific Feedforward Component of Choice-Related Activity in MTAlexandra Smolyanskaya, Ralf M Haefner, Stephen G Lomber, et al.
Journal of Neurophysiology|January 18, 2008
Sound localization deficits during reversible deactivation of primary auditory cortex and/or the dorsal zoneShveta Malhotra, G Christopher Stecker, John C Middlebrooks, et al.
Journal of Neurophysiology|October 24, 2014
Dissociable influences of primary auditory cortex and the posterior auditory field on neuronal responses in the dorsal zone of auditory cortexMelanie A Kok, Daniel Stolzberg, Trecia A Brown, et al.
The Journal of Neuroscience : the Official Journal of the Society for Neuroscience|November 2, 2017
Frontal Eye Field Inactivation Diminishes Superior Colliculus Activity, But Delayed Saccadic Accumulation Governs Reaction Time IncreasesTyler R Peel, Suryadeep Dash, Stephen G Lomber, et al.
Journal of Neurophysiology|April 9, 2020
Impairment but not abolishment of express saccades after unilateral or bilateral inactivation of the frontal eye fieldsSuryadeep Dash, Tyler R Peel, Stephen G Lomber, et al.
Journal of Neurophysiology|October 25, 2013
Bilateral saccadic deficits following large and reversible inactivation of unilateral frontal eye fieldTyler R Peel, Kevin Johnston, Stephen G Lomber, et al.
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