bioRxiv · 10.1101/2024.11.11.622917
Oscillatory coupling between thalamus, cerebellum and motor cortex in essential tremor
Abstract
BackgroundEssential tremor is hypothesized to emerge from synchronized oscillatory activity within the cerebello-thalamo-cortical circuit. However, this hypothesis has not yet been tested using local field potentials directly recorded from the thalamus alongside signals from both the cortex and cerebellum, leaving a gap in the understanding of essential tremor. ObjectivesTo clarify the importance of cerebello-thalamo-cortical oscillatory coupling for essential tremor. MethodsWe investigated oscillatory coupling between thalamic local field potentials and simultaneously recorded magnetoencephalography in 19 essential tremor patients with externalized deep brain stimulation electrodes. Brain activity was measured while patients repeatedly adopted a tremor-provoking posture and while pouring rice from one cup to another. In a whole-brain analysis of coherence between the ventral intermediate nucleus of the thalamus and cortex, we contrasted epochs containing tremor and epochs lacking tremor. ResultsBoth postural and kinetic tremor were associated with an increase of thalamic power and thalamo-cortex coherence at individual tremor frequency in the bilateral cerebellum and primary sensorimotor cortex contralateral to tremor. These areas also exhibited an increase in corticomuscular coherence in the presence of tremor. The coupling of motor cortex to both thalamus and muscle correlated with tremor amplitude during postural tremor. ConclusionsThese results demonstrate that essential tremor is indeed associated with increased oscillatory coupling at tremor frequency within a cerebello-thalamo-cortical network, with coupling strength directly reflecting tremor severity.
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Steina, A., Sure, S., Butz, M., Vesper, J., Schnitzler, A., Hirschmann, J.. 2024-11-11. Oscillatory coupling between thalamus, cerebellum and motor cortex in essential tremor. https://doi.org/10.1101/2024.11.11.622917
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