DBS-neurofeedback of beta-activity in Parkinson’s disease: Evidence for differential control from a pooled intra-individual analysis

PURPOSE: Neurofeedback based on deep brain stimulation (DBS) recordings has been shown to enable people with Parkinson's disease (PD) to voluntarily modulate pathological beta-oscillations in the subthalamic nucleus (STN). While previous studies suggested the feasibility of differential neurofeedback (up- vs. downregulation), their sample sizes were too small to provide definitive evidence that people with PD can differentially modulate beta oscillations through mental strategies alone. Here, we aimed to provide evidence for differential DBS neurofeedback control using a pooled, intra-individual design. METHODS: People with PD conducted differential neurofeedback experiments and tried to both increase and decrease abnormal STN beta-oscillations as compared to baseline (cognitive and motor rest). We pooled two previously published cohorts, to demonstrate differential neurofeedback learning. A linear mixed-effects model assessed the capacity of people with PD to differentially control beta-peak activity. RESULTS: Differential neurofeedback-control improved with training. We found a strong effect of neurofeedback on beta-oscillations for the clinically relevant downregulation, showing a reduction by about 22% as compared to baseline. However, even upregulation experiments resulted in beta-reductions as compared to baseline, where beta-activity was abnormally increased. CONCLUSION: We present the first evidence for differential modulation of subthalamic beta-activity using a pooled, intra-individual design. We also found that upregulation experiments generally reduced beta-activity as compared to mental rest. Therefore, we propose that exaggerated subthalamic beta-oscillations could signal, or even promote, not only the lack of motor flexibility, but also the lack of cognitive flexibility seen in PD.

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Publication Details

Journal
Neurophysiologie Clinique
Published
2026-09-15
DOI
https://doi.org/10.1016/j.neucli.2026.103198
Citations
1
Primary Topic
Neurological disorders and treatments
Type
article
Field-Weighted Citation Impact
5.61
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article

DBS-neurofeedback of beta-activity in Parkinson’s disease: Evidence for differential control from a pooled intra-individual analysis

Oliver Bichsel, Roger Gassert, L. Imbach
1 citations
Neurophysiologie Clinique
Neurological disorders and treatments
5.61
article

DBS-neurofeedback of beta-activity in Parkinson’s disease: Evidence for differential control from a pooled intra-individual analysis

Oliver Bichsel, Roger Gassert, L. Imbach
article en
1 citations

Abstract

PURPOSE: Neurofeedback based on deep brain stimulation (DBS) recordings has been shown to enable people with Parkinson's disease (PD) to voluntarily modulate pathological beta-oscillations in the subthalamic nucleus (STN). While previous studies suggested the feasibility of differential neurofeedback (up- vs. downregulation), their sample sizes were too small to provide definitive evidence that people with PD can differentially modulate beta oscillations through mental strategies alone. Here, we aimed to provide evidence for differential DBS neurofeedback control using a pooled, intra-individual design. METHODS: People with PD conducted differential neurofeedback experiments and tried to both increase and decrease abnormal STN beta-oscillations as compared to baseline (cognitive and motor rest). We pooled two previously published cohorts, to demonstrate differential neurofeedback learning. A linear mixed-effects model assessed the capacity of people with PD to differentially control beta-peak activity. RESULTS: Differential neurofeedback-control improved with training. We found a strong effect of neurofeedback on beta-oscillations for the clinically relevant downregulation, showing a reduction by about 22% as compared to baseline. However, even upregulation experiments resulted in beta-reductions as compared to baseline, where beta-activity was abnormally increased. CONCLUSION: We present the first evidence for differential modulation of subthalamic beta-activity using a pooled, intra-individual design. We also found that upregulation experiments generally reduced beta-activity as compared to mental rest. Therefore, we propose that exaggerated subthalamic beta-oscillations could signal, or even promote, not only the lack of motor flexibility, but also the lack of cognitive flexibility seen in PD.

Neurophysiologie CliniqueVol. 56(6)
University of Zurich (CH), ETH Zurich (CH), University Hospital of Zurich (CH), Center for Pediatric Endocrinology Zurich (CH), Swiss Epilepsy Center (CH)
Openalex Percentile: Top 3%
Neurological disorders and treatments
5.61
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