Area of research
Neurology · Cellular and Molecular Neuroscience
Research interest
Research interests include Neurological disorders and treatments, Neuroscience and Neural Engineering, Parkinson's Disease Mechanisms and Treatments, and Transcranial Magnetic Stimulation Studies.
The aperiodic exponent of subthalamic field potentials reflects excitation/inhibition balance in Parkinsonism
The aperiodic exponent of subthalamic field potentials reflects excitation/inhibition balance in Parkinsonism.
Moving, fast and slow: behavioural insights into bradykinesia in Parkinson’s disease
Dynamic modulation of subthalamic nucleus activity facilitates adaptive behavior
Dynamic control of decision and movement speed in the human basal ganglia
Dynamic control of decision and movement speed in the human basal ganglia.
Non-invasive vagus nerve stimulation modulates subthalamic beta activity in Parkinson's disease
Author response: The aperiodic exponent of subthalamic field potentials reflects excitation/inhibition balance in Parkinsonism
Technology of deep brain stimulation: current status and future directions.
Neural signatures of hyperdirect pathway activity in Parkinson's disease.
The sensitivity of ECG contamination to surgical implantation site in brain computer interfaces
The sensitivity of ECG contamination to surgical implantation site in brain computer interfaces
Average beta burst duration profiles provide a signature of dynamical changes between the ON and OFF medication states in Parkinson's disease.
Gait-Phase Modulates Alpha and Beta Oscillations in the Pedunculopontine Nucleus.
Increased theta/alpha synchrony in the habenula-prefrontal network with negative emotional stimuli in human patients.
Increased theta/alpha synchrony in the habenula-prefrontal network with negative emotional stimuli in human patients
Author response: Increased theta/alpha synchrony in the habenula-prefrontal network with negative emotional stimuli in human patients
Technology of deep brain stimulation: current status and future directions
Debugging Adaptive Deep Brain Stimulation for Parkinson's Disease
Cross-frequency coupling between gamma oscillations and deep brain stimulation frequency in Parkinson’s disease
Local field potential activity dynamics in response to deep brain stimulation of the subthalamic nucleus in Parkinson's disease
Acute effects of adaptive Deep Brain Stimulation in Parkinson’s disease
Motor Cortex Inputs at the Optimum Phase of Beta Cortical Oscillations Undergo More Rapid and Less Variable Corticospinal Propagation.
The Cumulative Effect of Transient Synchrony States on Motor Performance in Parkinson's Disease
Neurofeedback-Linked Suppression of Cortical β Bursts Speeds Up Movement Initiation in Healthy Motor Control: A Double-Blind Sham-Controlled Study.
The Cumulative Effect of Transient Synchrony States on Motor Performance in Parkinson's Disease.
Abnormal patterns of corticomuscular and intermuscular coherence in childhood dystonia
Subthalamic beta-targeted neurofeedback speeds up movement initiation but increases tremor in Parkinsonian patients.
Parkinson's disease uncovers an underlying sensitivity of subthalamic nucleus neurons to beta-frequency cortical input in vivo.
Movement-related coupling of human subthalamic nucleus spikes to cortical gamma.