Area of research
Neurology · Cellular and Molecular Neuroscience
Research interest
Research interests include Neurological disorders and treatments, Parkinson's Disease Mechanisms and Treatments, Transcranial Magnetic Stimulation Studies, and Neuroscience and Neural Engineering.
Movement-responsive deep brain stimulation for Parkinson's disease using a remotely optimized neural decoder.
Parkinson's disease as a somato-cognitive action network disorder.
Author Correction: Challenges and opportunities of acquiring cortical recordings for chronic adaptive deep brain stimulation.
Stimulation and Medication Effects on Subthalamic Nucleus Beta-Band Power in Parkinson's Disease: Implications for Adaptive Deep Brain Stimulation.
Multitarget brain implants enable generalized decoding of Parkinson’s disease symptoms from chronic home recordings
Long-Term Personalized Adaptive Deep Brain Stimulation in Parkinson Disease
Engaging dystonia networks with subthalamic stimulation
Movement-responsive deep brain stimulation for Parkinson’s disease using a remotely optimized neural decoder
Five-Year Outcomes from Deep Brain Stimulation of the Subthalamic Nucleus for Parkinson Disease
Will adaptive deep brain stimulation for Parkinson’s disease become a real option soon? A Delphi consensus study
Modeling and optimizing deep brain stimulation to enhance gait in Parkinson’s disease: personalized treatment with neurophysiological insights
Deep brain stimulation-entrained gamma oscillations in chronic home recordings in Parkinson's disease
Boundary complexity of cortical and subcortical areas predicts deep brain stimulation outcomes in Parkinson’s disease
Challenges and opportunities of acquiring cortical recordings for chronic adaptive deep brain stimulation.
Prediction of Pathological Subthalamic Nucleus Beta Burst Occurrence in Parkinson's Disease
Beta Burst Characteristics and Coupling within the Sensorimotor Cortical-Subthalamic Nucleus Circuit Dynamically Relate to Bradykinesia in Parkinson's Disease.
Invasive brain mapping identifies personalized therapeutic neuromodulation targets that suppress OCD network activity
Boundary complexity of cortical and subcortical areas predicts deep brain stimulation outcomes in Parkinson's disease.
Oscillatory dynamics in isolated dystonia: five hundred hours of chronic invasive multisite motor network recordings.
Toward a standard preoperative MRI protocol for functional neurosurgery
Characterizing Deep Brain Stimulation Dual Device Beat Frequency Artifacts
Chronic adaptive deep brain stimulation versus conventional stimulation in Parkinson’s disease: a blinded randomized feasibility trial
Mapping dysfunctional circuits in the frontal cortex using deep brain stimulation
Chronic adaptive deep brain stimulation versus conventional stimulation in Parkinson's disease: a blinded randomized feasibility trial.
Mapping dysfunctional circuits in the frontal cortex using deep brain stimulation.
Motor network gamma oscillations in chronic home recordings predict dyskinesia in Parkinson’s disease
Multi-night cortico-basal recordings reveal mechanisms of NREM slow-wave suppression and spontaneous awakenings in Parkinson’s disease
Proceedings of the 11th Annual Deep Brain Stimulation Think Tank: pushing the forefront of neuromodulation with functional network mapping, biomarkers for adaptive DBS, bioethical dilemmas, AI-guided neuromodulation, and translational advancements
Multi-night cortico-basal recordings reveal mechanisms of NREM slow-wave suppression and spontaneous awakenings in Parkinson's disease.
Beta and theta oscillations track effort and previous reward in the human basal ganglia and prefrontal cortex during decision making