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Vision Research|December 19, 2003
A dynamic model of how feature cues guide spatial attentionFred H HamkerCerebral Cortex (New York, N.Y. : 1991)|March 8, 2005
The reentry hypothesis: the putative interaction of the frontal eye field, ventrolateral prefrontal cortex, and areas V4, IT for attention and eye movementFred H HamkerNeural Networks : the Official Journal of the International Neural Network Society|October 4, 2006
V4 receptive field dynamics as predicted by a systems-level model of visual attention using feedback from the frontal eye fieldFred H Hamker, Marc ZirnsakThe Journal of Neuroscience : the Official Journal of the Society for Neuroscience|December 2, 2011
A computational model for the influence of corollary discharge and proprioception on the perisaccadic mislocalization of briefly presented stimuli in complete darknessArnold Ziesche, Fred H HamkerBiological Cybernetics|January 7, 2016
Suppression of displacement detection in the presence and absence of eye movements: a neuro-computational perspectiveJulia Bergelt, Fred H HamkerThe European Journal of Neuroscience|April 3, 2020
Habit learning in hierarchical cortex-basal ganglia loopsJavier Baladron, Fred H HamkerFrontiers in Computational Neuroscience|August 21, 2010
A computational model of Basal Ganglia and its role in memory retrieval in rewarded visual memory tasksJulien Vitay, Fred H HamkerThe Journal of Neuroscience : the Official Journal of the Society for Neuroscience|May 21, 2010
Attention alters feature space in motion processingMarc Zirnsak, Fred H HamkerFrontiers in Psychology|December 13, 2021
Building and Understanding the Minimal SelfValentin Forch, Fred H HamkerJournal of Vision|July 20, 2019
Spatial updating of attention across eye movements: A neuro-computational approachJulia Bergelt, Fred H HamkerPageof 22