Area of research
Cognitive Neuroscience · Neurology
Research interest
Research interests include Motor Control and Adaptation, Functional Brain Connectivity Studies, EEG and Brain-Computer Interfaces, and Parkinson's Disease Mechanisms and Treatments.
Magnetoencephalogram-based brain–computer interface for hand-gesture decoding using deep learning
Magnetoencephalogram-based brain-computer interface for hand-gesture decoding using deep learning.
Detection of Chronic Blast-Related Mild Traumatic Brain Injury with Diffusion Tensor Imaging and Support Vector Machines.
Internetwork Connectivity Predicts Cognitive Decline in Parkinson's and Is Altered by Genetic Variants.
Functional topologies of spatial cognition predict cognitive and motor progression in Parkinson's.
Resting-state magnetoencephalography source magnitude imaging with deep-learning neural network for classification of symptomatic combat-related mild traumatic brain injury.
Dopamine effects on memory load and distraction during visuospatial working memory in cognitively normal Parkinson's disease.
Semantic Recollection in Parkinson's Disease: Functional Reconfiguration and MAPT Variants.
Marked Increases in Resting-State MEG Gamma-Band Activity in Combat-Related Mild Traumatic Brain Injury.
Abnormal distraction and load-specific connectivity during working memory in cognitively normal Parkinson's disease.
Marked Increases in Resting-State MEG Gamma-Band Activity in Combat-Related Mild Traumatic Brain Injury
MEG Working Memory N-Back Task Reveals Functional Deficits in Combat-Related Mild Traumatic Brain Injury.
MEG Working Memory N-Back Task Reveals Functional Deficits in Combat-Related Mild Traumatic Brain Injury
Network topology and functional connectivity disturbances precede the onset of Huntington’s disease
Prediction of manifest Huntington's disease with clinical and imaging measures: a prospective observational study
Clinical and Biomarker Changes in Premanifest Huntington Disease Show Trial Feasibility: A Decade of the PREDICT-HD Study
Single-subject-based whole-brain MEG slow-wave imaging approach for detecting abnormality in patients with mild traumatic brain injury
Disruption of response inhibition circuits in prodromal Huntington disease
Neural Basis of the Perception and Estimation of Time
Collaborative Approach in the Development of High‐Performance Brain–Computer Interfaces for a Neuroprosthetic Arm: Translation from Animal Models to Human Control
White-Matter Changes Correlate with Cognitive Functioning in Parkinson’s Disease
MEG source imaging method using fast L1 minimum-norm and its applications to signals with brain noise and human resting-state source amplitude images
Regional Atrophy Associated with Cognitive and Motor Function in Prodromal Huntington Disease
Neuroanatomical correlates of cognitive functioning in prodromal Huntington disease
Volumetric correlates of cognitive functioning in nondemented patients with Parkinson's disease
An automatic MEG low-frequency source imaging approach for detecting injuries in mild and moderate TBI patients with blast and non-blast causes
Cognitive domains that predict time to diagnosis in prodromal Huntington disease