bioRxiv · 10.1101/2023.09.19.558378
Ventrointermediate thalamic stimulation improves motor learning in humans
Abstract
Ventrointermediate thalamic stimulation (VIM-DBS) modulates oscillatory activity in a cortical network including primary motor cortex, premotor cortex, and parietal cortex. Here we show that, beyond the beneficial effects of VIM-DBS on motor execution, this form of invasive stimulation facilitates production of sequential finger movements that follow a fixed sequence but not when the sequence is selected at random. These results highlight the role of thalamo-cortical activity in motor learning.
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Voegtle, A., Terzic, L., Farahat, A., Hartong, N., Galazky, I., Hinrichs, H., Nasuto, S. J., de Oliveira Andrade, A., Knight, R. T., Ivry, R. B., Voges, J., Deliano, M., Buentjen, L., Sweeney-Reed, C. M.. 2023-09-22. Ventrointermediate thalamic stimulation improves motor learning in humans. https://doi.org/10.1101/2023.09.19.558378
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