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Experimental Neurology|May 15, 2022
Virtual deep brain stimulation: Multiscale co-simulation of a spiking basal ganglia model and a whole-brain mean-field model with The Virtual BrainJil M Meier, Dionysios Perdikis, André Blickensdörfer, et al.Frontiers 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 HamkerFrontiers in Neurorobotics|February 20, 2014
Timing and expectation of reward: a neuro-computational model of the afferents to the ventral tegmental areaJulien Vitay, Fred H HamkerNeural Networks : the Official Journal of the International Neural Network Society|February 28, 2025
A systematic analysis of the joint effects of ganglion cells, lagged LGN cells, and intercortical inhibition on spatiotemporal processing and direction selectivityRené Larisch, Fred H HamkerNetwork (Bristol, England)|October 11, 2007
Hebbian learning in a model with dynamic rate-coded neurons: an alternative to the generative model approach for learning receptive fields from natural scenesFred H Hamker, Jan WiltschutVisual Neuroscience|February 11, 2009
Efficient coding correlates with spatial frequency tuning in a model of V1 receptive field organizationJan Wiltschut, Fred H HamkerMovement Disorders : Official Journal of the Movement Disorder Society|July 10, 2016
Basal Ganglia dysfunctions in movement disorders: What can be learned from computational simulationsHenning Schroll, Fred H HamkerPageof 8