Related Experiment Video
Updated: Jul 16, 2026

Controlling Parkinson's Disease With Adaptive Deep Brain Stimulation
Published on: July 16, 2014
Cognitive impairment in Parkinson's disease is associated with enhanced modulation of subthalamic beta-oscillations
Raphael Heinrich1,2, Lennart Stieglitz1,2, Oliver Bichsel1,2
1Department of Neurosurgery, University Hospital Zurich, University of Zurich, Zurich, Switzerland.
Background:
Deep brain stimulation (DBS) neurofeedback enables Parkinson's disease (PD) patients to voluntarily control pathological subthalamic beta-oscillations. While neurofeedback has shown promise in improving motor performance, the clinical factors that influence individual modulation capacity remain unclear.
Methods:
We retrospectively analysed 26 PD patients from three previously published deep DBS-neurofeedback cohorts. Participants were classified as cognitively normal (MoCA score ≥26) or cognitively impaired ( < 26) based on their preoperative scores. Neurofeedback performance was quantified as the percentage reduction in subthalamic beta-peak power during the final training round compared to baseline, z-normalised within each cohort. Group comparisons were conducted using t-tests and non-parametric tests. Correlations and stepwise linear regression were employed to examine associations between neurofeedback performance and clinical variables, including MoCA, age, Hoehn and Yahr stage, levodopa equivalent dose, and MDS-UPDRS scores.
Results:
Participants with cognitive impairment (n = 9) showed significantly better neurofeedback performance compared to cognitively normal participants (p = 0.0108). Additionally, a negative correlation was found between MoCA scores and neurofeedback capacity. Stepwise regression revealed that MoCA was the sole significant predictor of performance (, p = 0.0032), while age, motor symptom severity, and medication status did not contribute independently.
Conclusions:
Cognitive impairment in PD is associated with enhanced modulation of subthalamic beta-oscillations during DBS-neurofeedback. This finding challenges the assumption that preserved cognition is necessary for effective neurofeedback, suggesting that compensatory or disease-related network dynamics may underpin modulation capacity. Future studies should investigate mechanistic explanations and assess whether stratifying patients by cognitive status can optimise personalised neuromodulation strategies.
More Related Videos
08:25Combined Invasive Subcortical and Non-invasive Surface Neurophysiological Recordings for the Assessment of Cognitive and Emotional Functions in Humans
Published on: May 19, 2016
05:44Using Saccadometry with Deep Brain Stimulation to Study Normal and Pathological Brain Function
Published on: July 14, 2016
Related Concept Videos
Neural Regulation
Parkinson's Disease: Overview
Parkinson's Disease: Treatment
Parkinson's Disease is primarily a result of the loss of dopaminergic neurons in the substantia nigra pars compacta. The cornerstone of its...
Parkinson Disease l: Introduction
Parkinson Disease ll: Pathophysiology
Alterations in Muscle Tone lll