Area of research
Cognitive Neuroscience · Cellular and Molecular Neuroscience
Research interest
Research interests include Neural dynamics and brain function, EEG and Brain-Computer Interfaces, Functional Brain Connectivity Studies, and Visual perception and processing mechanisms.
The coming decade of digital brain research: A vision for neuroscience at the intersection of technology and computing
Structural basis of envelope and phase intrinsic coupling modes in the cerebral cortex
The coming decade of digital brain research - A vision for neuroscience at the intersection of technology and computing
The coming decade of digital brain research - A vision for neuroscience at the intersection of technology and computing
Topological reorganization of brain network might contribute to the resilience of cognitive functioning in mildly disabled relapsing remitting multiple sclerosis
BiPOLES is an optogenetic tool developed for bidirectional dual-color control of neurons
Continuing versus tapering glucocorticoids after achievement of low disease activity or remission in rheumatoid arthritis (SEMIRA): a double-blind, multicentre, randomised controlled trial
Aerobic Exercise Induces Functional and Structural Reorganization of CNS Networks in Multiple Sclerosis: A Randomized Controlled Trial
Data-Driven Classification of Spectral Profiles Reveals Brain Region-Specific Plasticity in Blindness
Spatial Hearing by Bilateral Cochlear Implant Users With Temporal Fine-Structure Processing
Entrainment of Brain Oscillations by Transcranial Alternating Current Stimulation
Selective attention modulates high-frequency activity in the face-processing network
Intrinsic Coupling Modes: Multiscale Interactions in Ongoing Brain Activity
Altered Intrinsic Neuronal Interactions in the Visual Cortex of the Blind
Spectral fingerprints of large-scale neuronal interactions
Large-scale cortical correlation structure of spontaneous oscillatory activity
Auditory Evoked Bursts in Mouse Visual Cortex during Isoflurane Anesthesia
Restoration of Synaptic Plasticity and Learning in Young and Aged NCAM-Deficient Mice by Enhancing Neurotransmission Mediated by GluN2A-Containing NMDA Receptors