Publication details

Local Field Aperiodic Spectral Power Modulated by Deep Brain Stimulation in Parkinson's Disease

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Authors

LAMOŠ Martin ŽÁČKOVÁ Aneta ULČÁK David GURKA Benjamín BRZUCHANSKI Daniel ŠMAHOVSKÁ Lucia BOČKOVÁ Martina

Year of publication 2026
Type Peer-reviewed scientific article
Magazine / Source Movement Disorders
MU Faculty or unit

Faculty of Medicine

Citation
web https://movementdisorders.onlinelibrary.wiley.com/doi/10.1002/mds.70232
Doi https://doi.org/10.1002/mds.70232
Keywords aperiodic spectral components; deep brain stimulation; new biomarker; Parkinson's disease; STN-LFPs
Description Background: Aperiodic spectral broadband power has been described recently as reflecting Parkinson's disease (PD) severity. It has therefore become an increasing focus of research interest in the context of the new adaptive deep brain stimulation (DBS) approach. Objective: We aimed to study the influence of DBS on the main parameters of the aperiodic spectral component of local field potentials (LFPs). Methods: LFPs were recorded from the subthalamic nucleus (STN) in patients with PD (n = 22) during a simple experimental paradigm that included 5 minutes of resting state and a short gait task during DBS OFF and ON conditions (off medication). Classical spectral analysis was performed using fast Fourier transform; the analysis of the aperiodic component was performed by fitting oscillations and a one-over-F approach. In a subset of the patients (n = 14), it was possible to evaluate the symptom progression over time after 1 year by analyzing the control measurement. Results: The severity of hypokinetic/rigid symptomatology, measured by International Parkinson and Movement Disorders Society Unified Parkinson's Disease Rating Scale, correlated significantly with both of the aperiodic components characteristics of the STN LFPs: the slope and the offset. These parameters were significantly modified by DBS, as evaluated with a Wilcoxon signed-rank test during the resting state and during the gait task. Aperiodic power remained stable over time during the control measurements. Conclusions: The aperiodic component in LFPs may reflect pathological activity of the neuronal network and might serve as a new potential clinical marker in PD. The variable relation to conventional beta oscillopathy indicates the involvement of multiple neural mechanisms. (c) 2026 The Author(s). Movement Disorders published by Wiley Periodicals LLC on behalf of International Parkinson and Movement Disorder Society.
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