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Frontiers in Human Neuroscience|February 22, 2024
Tractography-based DBS lead repositioning improves outcome in refractory OCD and depressionGenevieve Basich-Pease, Natalya Slepneva, Adam C Frank, et al.Journal of Neurophysiology|May 9, 2019
Effect of levodopa on electroencephalographic biomarkers of the parkinsonian stateAndrew M Miller, Svjetlana Miocinovic, Nicole C Swann, et al.Molecular Biology of the Cell|September 23, 2011
Nesprin-3 regulates endothelial cell morphology, perinuclear cytoskeletal architecture, and flow-induced polarizationJoshua T Morgan, Emily R Pfeiffer, Twanda L Thirkill, et al.Journal of Neural Engineering|May 10, 2018
Adaptive deep brain stimulation for Parkinson's disease using motor cortex sensingNicole C Swann, Coralie de Hemptinne, Margaret C Thompson, et al.Nature Communications|July 2, 2025
Boundary complexity of cortical and subcortical areas predicts deep brain stimulation outcomes in Parkinson's diseaseDevin Schoen, Skyler Deutsch, Juhi Mehta, et al.Neuropsychobiology|January 1, 1995
EEG delta, positron emission tomography, and memory deficit in Alzheimer's diseaseD C Valladares-Neto, M S Buchsbaum, W J Evans, et al.Movement Disorders : Official Journal of the Movement Disorder Society|September 24, 2025
Preoperative Functional Connectivity Predicts Antiparkinson Drug Change after Deep Brain StimulationDavid Mikhael, Skyler Deutsch, Juhi Mehta, et al.Brain : a Journal of Neurology|January 9, 2024
Motor network gamma oscillations in chronic home recordings predict dyskinesia in Parkinson's diseaseMaria Olaru, Stephanie Cernera, Amelia Hahn, et al.Iscience|March 22, 2022
Embedding digital chronotherapy into bioelectronic medicinesJohn E Fleming, Vaclav Kremen, Ro'ee Gilron, et al.Nature Medicine|June 15, 2026
Adaptive deep brain stimulation for dynamic gait control in Parkinson's disease: a randomized feasibility trialKenneth H Louie, Jannine P Balakid, Jessica E Bath, et al.Pageof 71