Targeted brain activation using an MR-compatible wrist torque measurement device and isometric motor tasks during functional magnetic resonance imaging

Journal Article (2016)
Author(s)

M.P. Vlaar (TU Delft - Biomechatronics & Human-Machine Control)

W. Mugge (MOVE Research Institute Amsterdam, Vrije Universiteit Amsterdam, TU Delft - Biomechatronics & Human-Machine Control)

Paul F C Groot (Universiteit van Amsterdam)

Sarvi Sharifi (Universiteit van Amsterdam)

Lo J. Bour (Universiteit van Amsterdam)

F.C.T. van der Helm (TU Delft - Biomechatronics & Human-Machine Control)

A. F. Van Rootselaar (Universiteit van Amsterdam)

A.C. Schouten (University of Twente, TU Delft - Biomechatronics & Human-Machine Control)

Research Group
Biomechatronics & Human-Machine Control
DOI related publication
https://doi.org/10.1016/j.mri.2016.02.002
More Info
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Publication Year
2016
Language
English
Research Group
Biomechatronics & Human-Machine Control
Issue number
6
Volume number
34
Pages (from-to)
795-802

Abstract

Dedicated pairs of isometric wrist flexion tasks, with and without visual feedback of the exerted torque, were designed to target activation of the CBL and BG in healthy subjects during functional magnetic resonance imaging (fMRI). Selective activation of the cerebellum (CBL) and basal ganglia (BG), often implicated in movement disorders such as tremor and dystonia, may help identify pathological changes and expedite diagnosis. A prototyped MR-compatible wrist torque measurement device, free of magnetic and conductive materials, allowed safe execution of tasks during fMRI without causing artifacts. A significant increase of activity in CBL and BG was found in healthy volunteers during a constant torque task with visual feedback compared to a constant torque task without visual feedback. This study shows that specific pairs of motor tasks using MR-compatible equipment at the wrist allow for targeted activation of CBL and BG, paving a new way for research into the pathophysiology of movement disorders.

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