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Network Neuroscience (Cambridge, Mass.)|July 3, 2023
Sleep spindles in primates: Modeling the effects of distinct laminar thalamocortical connectivity in core, matrix, and reticular thalamic circuitsArash Yazdanbakhsh, Helen Barbas, Basilis ZikopoulosThe Journal of Neuroscience : the Official Journal of the Society for Neuroscience|August 28, 2015
Pathways for Emotions: Specializations in the Amygdalar, Mediodorsal Thalamic, and Posterior Orbitofrontal NetworkClare Timbie, Helen BarbasThe Journal of Neuroscience : the Official Journal of the Society for Neuroscience|June 13, 2014
Specialized pathways from the primate amygdala to posterior orbitofrontal cortexClare Timbie, Helen BarbasFrontiers in Systems Neuroscience|October 7, 2022
The inevitable inequality of cortical columnsHelen Barbas, Basilis Zikopoulos, Yohan J JohnBrain Structure & Function|February 11, 2019
The Structural Model: a theory linking connections, plasticity, pathology, development and evolution of the cerebral cortexMiguel Ángel García-Cabezas, Basilis Zikopoulos, Helen BarbasBrain and Language|December 6, 2012
Frontal-thalamic circuits associated with languageHelen Barbas, Miguel Ángel García-Cabezas, Basilis ZikopoulosThe Journal of Neuroscience : the Official Journal of the Society for Neuroscience|April 16, 2017
Posterior Orbitofrontal and Anterior Cingulate Pathways to the Amygdala Target Inhibitory and Excitatory Systems with Opposite FunctionsBasilis Zikopoulos, Malin Höistad, Yohan John, et al.Plos Biology|February 6, 2018
Parallel trends in cortical gray and white matter architecture and connections in primates allow fine study of pathways in humans and reveal network disruptions in autismBasilis Zikopoulos, Miguel Ángel García-Cabezas, Helen BarbasFrontiers in Neuroanatomy|September 4, 2018
Parallel Development of Chromatin Patterns, Neuron Morphology, and Connections: Potential for Disruption in AutismMiguel Á García-Cabezas, Helen Barbas, Basilis ZikopoulosComputational Psychiatry (Cambridge, Mass.)|January 11, 2019
Visual Attention Deficits in Schizophrenia Can Arise From Inhibitory Dysfunction in Thalamus or CortexYohan J John, Basilis Zikopoulos, Daniel Bullock, et al.Pageof 10