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Brain Stimulation|November 13, 2020
Temporal interference stimulation targets deep brain regions by modulating neural oscillationsZeinab Esmaeilpour, Greg Kronberg, Davide Reato, et al.Brain Stimulation|December 3, 2014
Methods for specific electrode resistance measurement during transcranial direct current stimulationNiranjan Khadka, Asif Rahman, Chris Sarantos, et al.Brain Stimulation|November 1, 2019
Direct current stimulation boosts hebbian plasticity in vitroGreg Kronberg, Asif Rahman, Mahima Sharma, et al.Frontiers in Cell and Developmental Biology|October 15, 2021
Direct Current Stimulation Disrupts Endothelial Glycocalyx and Tight Junctions of the Blood-Brain Barrier <i>in vitro</i>Yifan Xia, Yunfei Li, Wasem Khalid, et al.Frontiers in Psychiatry|October 26, 2012
Inter-Individual Variation during Transcranial Direct Current Stimulation and Normalization of Dose Using MRI-Derived Computational ModelsAbhishek Datta, Dennis Truong, Preet Minhas, et al.Neuroimage|October 9, 2012
Cranial electrotherapy stimulation and transcranial pulsed current stimulation: a computer based high-resolution modeling studyAbhishek Datta, Jacek P Dmochowski, Berkan Guleyupoglu, et al.Psychological Science|April 29, 2011
From body form to biological motion: the apparent velocity of human movement biases subjective timeGuido Orgs, Sven Bestmann, Friederike Schuur, et al.Elife|December 23, 2016
Response repetition biases in human perceptual decisions are explained by activity decay in competitive attractor modelsJames J Bonaiuto, Archy de Berker, Sven BestmannJournal of Cognitive Neuroscience|March 13, 2020
Uncoupling Sensation and Perception in Human Time ProcessingNicola Binetti, Alessandro Tomassini, Karl Friston, et al.Plos Biology|October 5, 2019
Human motor cortical beta bursts relate to movement planning and response errorsSimon Little, James Bonaiuto, Gareth Barnes, et al.Pageof 48