Neurological disorders and treatments Open access

Entrainment of cortical gamma oscillations predicts improved bradykinesia and dyskinesia in Parkinson's disease

Philip A. Starr, Maria Shcherbakova, Stephanie Cernera, Amelia G. Hahn and 1 more

medRxiv | Jun 18, 2026

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Stimulation-entrained gamma oscillations in the motor network are a physiomarker for optimal DBS response in PD, and could have a role in physiology-guided DBS programming, complementing existing strategies based on suppression of basal ganglia beta activity.

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Background: Deep brain stimulation (DBS) of the subthalamic nucleus (STN) is hypothesized to improve motor symptoms in Parkinson's disease (PD) by suppressing pathologically elevated beta activity and promoting "prokinetic" gamma activity in the cortico-basal ganglia-thalamo-cortical loop. Advances in bidirectional DBS devices have revealed that stimulation can modify gamma oscillations via subharmonic entrainment, though entrainment's therapeutic role remains unclear. Objectives: To identify stimulation parameters that entrain motor cortical and STN gamma oscillations in PD at rest and during movement, and examine their association with motor function. Methods: Sensorimotor cortex and STN field potentials were collected using a bidirectional DBS system in four subjects with PD over a range of stimulation amplitudes and frequencies. Entrainment amplitude at half the stimulation frequency was quantified at rest and during a finger-tapping task in the ON-medication state. The presence or absence of entrainment was studied as a physiomarker of motor symptom severity. Results: The amplitude of stimulation-entrained gamma oscillations was non-linearly related to stimulation intensity and frequency and varied by stimulation contact choice. Entrainment amplitude was highest in precentral gyrus and increased with movement. In the ON-medication state, precentral gyrus gamma entrainment was associated with reduced bradykinesia, dyskinesia, and dystonia. Subthalamic gamma entrainment predicted improved dystonia but was a less significant marker for motor benefit than cortical entrainment. Conclusions: Stimulation-entrained gamma oscillations in the motor network are a physiomarker for optimal DBS response in PD, and could have a role in physiology-guided DBS programming, complementing existing strategies based on suppression of basal ganglia beta activity.

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Philip A. Starr

last | University of California, San Francisco | ORCID 0000-0003-2733-4003

Maria Shcherbakova

first | California University of Pennsylvania | ORCID 0009-0005-6099-4822

Stephanie Cernera

middle | University of California, San Francisco | ORCID 0000-0002-6885-6791

Amelia G. Hahn

middle | Loyola University Chicago

Simon Little

middle | University of California, San Francisco | ORCID 0000-0001-6249-6230

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BibTeX

@article{Starr2026Entrainment,
  title = {Entrainment of cortical gamma oscillations predicts improved bradykinesia and dyskinesia in Parkinson's disease},
  author = {Philip A. Starr and Maria Shcherbakova and Stephanie Cernera and Amelia G. Hahn and Simon Little},
  journal = {medRxiv},
  year = {2026},
  doi = {10.64898/2026.06.10.26354720},
  url = {https://doi.org/10.64898/2026.06.10.26354720}
}

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