Area of research
Cognitive Neuroscience · Radiology, Nuclear Medicine and Imaging
Research interest
Research interests include Functional Brain Connectivity Studies, Neural dynamics and brain function, Neural and Behavioral Psychology Studies, and EEG and Brain-Computer Interfaces.
Hierarchical and non-hierarchical network flows generate complementary representational dynamics in human visual cortex
Functional redundancy of the posterior hippocampi is selectively disrupted in non-demented older adults with β-amyloid deposition
Constructing neural network models from brain data reveals representational transformations linked to adaptive behavior
Thalamocortical contributions to cognitive task activity
Functional Redundancy of the Posterior Hippocampi, but not Anterior Hippocampi or Left Frontal Cortex, is Disrupted in Pathological Brain Aging
Task-evoked activity quenches neural correlations and variability across cortical areas
Advancing functional connectivity research from association to causation
How to study the neural mechanisms of multiple tasks
Deep Graph Similarity Learning for Brain Data Analysis
Mapping the human brain's cortical-subcortical functional network organization
Heterogeneity within the frontoparietal control network and its relationship to the default and dorsal attention networks
Activity flow over resting-state networks shapes cognitive task activations
Early-Course Unmedicated Schizophrenia Patients Exhibit Elevated Prefrontal Connectivity Associated with Longitudinal Change
Functional connectivity change as shared signal dynamics
Intrinsic and Task-Evoked Network Architectures of the Human Brain
The Frontoparietal Control System
Altered global brain signal in schizophrenia
Mediodorsal and Visual Thalamic Connectivity Differ in Schizophrenia and Bipolar Disorder With and Without Psychosis History
Multi-task connectivity reveals flexible hubs for adaptive task control
Connectivity, Pharmacology, and Computation: Toward a Mechanistic Understanding of Neural System Dysfunction in Schizophrenia
The role of default network deactivation in cognition and disease
Rapid instructed task learning: A new window into the human brain’s unique capacity for flexible cognitive control