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Journal Article

Visuomotor Adaptation Deficits in Patients with Essential Tremor

Laura Bindel; Christoph Mühlberg; Victoria Pfeiffer; Matthias Nitschke; Annekatrin Müller; Mirko Wegscheider; Jost-Julian Rumpf; Kirsten E. Zeuner; Jos S. Becktepe; Julius Welzel; Miriam Güthe; Joseph Classen; Elinor Tzvi
The Cerebellum · Vol. 22, Issue 5 · pp. 925-937 · 2022

Abstract

Essential tremor (ET) is a progressive movement disorder whose pathophysiology is not fully understood. Current evidence supports the view that the cerebellum is critically involved in the genesis of the tremor in ET. However, it is still unknown whether cerebellar dysfunction affects not only the control of current movements but also the prediction of future movements through dynamic adaptation toward a changed environment. Here, we tested the capacity of 28 patients with ET to adapt in a visuomotor adaptation task known to depend on intact cerebellar function. We found specific impairments in that task compared to age-matched healthy controls. Adaptation to the visual perturbation was disrupted in ET patients, while de-adaptation, the phase after abrupt removal of the perturbation, developed similarly to control subjects. Baseline tremor-independent motor performance was as well similar to healthy controls, indicating that adaptation deficits in ET patients were not rooted in an inability to perform goal-directed movements. There was no association between clinical severity scores of ET and early visuomotor adaptation abilities. These results provide further evidence that the cerebellum is dysfunctional in ET.

Bibliographic Information

JournalThe Cerebellum
PublisherSpringer
Publication Date2022-09-09
Publication Year2022
Volume22
Issue5
Pages925-937
Document TypeJournal Article
eISSN1473-4230
DOI10.1007/s12311-022-01474-5

Access Information

NARA Access Coverage2002-01-01~Current
Journal Homepagehttps://www.springer.com/journal/12311
Publisher PageOpen Publisher Page
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