Arpan Banerjee
Orcid: 0000-0002-3725-0463
According to our database1,
Arpan Banerjee
authored at least 16 papers
between 2007 and 2024.
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Bibliography
2024
Metastability indexes global changes in the dynamic working point of the brain following brain stimulation.
Frontiers Neurorobotics, 2024
2023
Editorial: Temporal structure of neural processes coupling sensory, motor and cognitive functions of the brain, volume II.
Frontiers Comput. Neurosci., February, 2023
2022
Frontiers Comput. Neurosci., 2022
2021
Organization of directed functional connectivity among nodes of ventral attention network reveals the common network mechanisms underlying saliency processing across distinct spatial and spatio-temporal scales.
NeuroImage, 2021
2020
NeuroImage, 2020
Large-scale Functional Integration, Rather than Functional Dissociation along Dorsal and Ventral Streams, Underlies Visual Perception and Action.
J. Cogn. Neurosci., 2020
Editorial: Temporal Structure of Neural Processes Coupling Sensory, Motor and Cognitive Functions of the Brain.
Frontiers Comput. Neurosci., 2020
2019
Empirical Mode Decomposition Algorithms for Classification of Single-Channel EEG Manifesting McGurk Effect.
Proceedings of the Intelligent Human Computer Interaction - 11th International Conference, 2019
2017
Proceedings of the 2017 International Joint Conference on Neural Networks, 2017
2016
Does the regulation of local excitation-inhibition balance aid in recovery of functional connectivity? A computational account.
NeuroImage, 2016
2014
Corrigendum to "Temporal microstructure of cortical networks (TMCN) underlying task-related differences" [Neuroimage 62 (2012) 1643-1657].
NeuroImage, 2014
2012
Spatiotemporal re-organization of large-scale neural assemblies underlies bimanual coordination.
NeuroImage, 2012
Temporal microstructure of cortical networks (TMCN) underlying task-related differences.
NeuroImage, 2012
Parametric models to relate spike train and LFP dynamics with neural information processing.
Frontiers Comput. Neurosci., 2012
2008
Mode level cognitive subtraction (MLCS) quantifies spatiotemporal reorganization in large-scale brain topographies.
NeuroImage, 2008
2007
Biol. Cybern., 2007