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PMID: 39891875 Published · epublish English

Cerebellar Oscillatory Patterns in Essential Tremor: Modulatory Effects of VIM-DBS.

Cerebellum (London, England) ·Vol. 24 ·No. 2 ·2025-02-01

Bosch TJ, Groth C, Espinoza AI, Bharmauria V, Flouty O, Singh A

Abstract

Essential tremor (ET) is a common movement disorder, and while ventral intermediate nucleus deep brain stimulation (VIM-DBS) is a well-established treatment, its precise mechanisms or modulatory effects, particularly in relation to cerebellar oscillations, remain unclear. In this study, we hypothesized that VIM-DBS would modulate cerebellar oscillatory activity across both resting and motor task conditions, reflecting its impact on cerebello-thalamic pathways. Ten patients diagnosed with ET participated in this study. We examined the effects of VIM-DBS on mid-cerebellar oscillations during resting-state and lower-limb pedaling motor tasks. Frequency analysis was conducted on the resting-state signal and time-frequency analysis was performed on motor task-related signals. We explored the modulatory effects of VIM-DBS on oscillatory activity across delta, theta, alpha, beta, and gamma frequency bands. We found that ON VIM-DBS increased mid-cerebellar relative theta power during resting-state conditions, with no significant changes in other frequency bands. During a pedaling motor task, VIM-DBS led to significant reductions in theta, alpha, and gamma power, highlighting the frequency-specific effects of stimulation. VIM-DBS also increased peak acceleration of leg movements during the pedaling task. Furthermore, VIM-DBS selectively increased mid-frontal relative theta and beta power as well as mid-occipital relative theta power during resting condition, suggesting localized mid-cerebellar modulation. Moreover, similarity analyses between mid-cerebellar and nearby mid-occipital signals revealed differences in coherence, phase coherence, and cross-spectrum phase coherence. Overall, these results support the role of VIM-DBS in modulating mid-cerebellar oscillations in ET and provide new insights into the neural mechanisms underlying DBS efficacy.

Keywords
Cerebellar Deep brain stimulation Essential tremor Oscillations Ventral intermediate nucleus
MeSH 主题词
Humans Essential Tremor/physiopathology,therapy Deep Brain Stimulation/methods Male Cerebellum/physiopathology Female Middle Aged Aged Ventral Thalamic Nuclei/physiopathology,physiology Brain Waves/physiology
Article Info
Journal
Cerebellum (London, England)
Abbr.
Cerebellum
ISSN
1473-4230
Corresponding email
Published
2025-02-01
Language
English
Country/Region
United States
NLM ID
101089443
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