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The effects of prior exposure to prism lenses onde novomotor skill learning

Authors :
Annmarie M. Lang-Hodge
Dylan F. Cooke
Daniel S. Marigold
Publication Year :
2023
Publisher :
Cold Spring Harbor Laboratory, 2023.

Abstract

Motor learning involves plasticity in a network of brain areas across the cortex and cerebellum. Such traces of learning have the potential to affect subsequent learning of other tasks. In some cases, prior learning can interfere with subsequent learning, but it may be possible to potentiate learning of one task with a prior task if they are sufficiently different. Because prism adaptation involves extensive neuroplasticity, we reasoned that the elevated excitability of neurons could increase their readiness to undergo structural changes, and in turn, create an optimal state for learning a subsequent task. We tested this idea, selecting two different forms of learning tasks, asking whether exposure to a sensorimotor adaptation task can improve subsequentde novomotor skill learning. Participants first learned a new visuomotor mapping induced by prism glasses in which prism strength varied trial-to-trial. Immediately after and the next day, we tested participants on a mirror tracing task, a form ofde novoskill learning. Prism-trained and control participants both learned the mirror tracing task, with similar reductions in error and increases in distance traced. Both groups also showed evidence of offline performance gains between the end of day 1 and the start of day 2. However, we did not detect differences between groups. Overall, our results do not support the idea that prism adaptation learning can potentiate subsequentde novolearning. We discuss factors that may have contributed to this result.

Details

Database :
OpenAIRE
Accession number :
edsair.doi...........84deb1f6370e3eb877e1df33ad95d890
Full Text :
https://doi.org/10.1101/2023.05.08.539850