4.7 Article

Deep brain electrical neurofeedback allows Parkinson patients to control pathological oscillations and quicken movements

Journal

SCIENTIFIC REPORTS
Volume 11, Issue 1, Pages -

Publisher

NATURE PORTFOLIO
DOI: 10.1038/s41598-021-87031-2

Keywords

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Funding

  1. Dr. Wilhelm Hurka Foundation
  2. Theodor und Ida Herzog Egli Foundation

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Patients with Parkinson's disease can volitionally control ongoing beta-oscillatory activity through deep brain electrical neurofeedback, leading to a gradual reduction in beta-oscillatory activity and improved motor performance. The strategies acquired through neurofeedback training are retained in the short-term and can result in motor improvement even without neurofeedback, suggesting the therapeutic potential of deep brain neurofeedback for Parkinson patients.
Parkinsonian motor symptoms are linked to pathologically increased beta-oscillations in the basal ganglia. While pharmacological treatment and deep brain stimulation (DBS) reduce these pathological oscillations concomitantly with improving motor performance, we set out to explore neurofeedback as an endogenous modulatory method. We implemented real-time processing of pathological subthalamic beta oscillations through implanted DBS electrodes to provide deep brain electrical neurofeedback. Patients volitionally controlled ongoing beta-oscillatory activity by visual neurofeedback within minutes of training. During a single one-hour training session, the reduction of beta-oscillatory activity became gradually stronger and we observed improved motor performance. Lastly, endogenous control over deep brain activity was possible even after removing visual neurofeedback, suggesting that neurofeedback-acquired strategies were retained in the short-term. Moreover, we observed motor improvement when the learnt mental strategies were applied 2 days later without neurofeedback. Further training of deep brain neurofeedback might provide therapeutic benefits for Parkinson patients by improving symptom control using strategies optimized through neurofeedback.

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