4.5 Article

Individual Differences in Sensorimotor Adaptation Are Conserved Over Time and Across Force-Field Tasks

期刊

FRONTIERS IN HUMAN NEUROSCIENCE
卷 15, 期 -, 页码 -

出版社

FRONTIERS MEDIA SA
DOI: 10.3389/fnhum.2021.692181

关键词

motor learning; adaptation; savings; individual differences; motor memory; force-field adaptation; visuomotor adaptation

资金

  1. NSERC Discovery Grant [2017-04829]
  2. Faculty of Kinesiology
  3. Cumming School of Medicine Graduate Scholarship
  4. Calgary Health Trust

向作者/读者索取更多资源

Individual differences in sensorimotor adaptation were found to be reliable across different stages of exposure to the same force field, with individuals who adapted more initially also adapting more upon re-exposure. However, correlations were weaker between adaptation to different force fields and visuomotor rotations, suggesting unique mechanisms at play during these different adaptation processes.
Sensorimotor adaptation enables the nervous system to modify actions for different conditions and environments. Many studies have investigated factors that influence adaptation at the group level. There is growing recognition that individuals vary in their ability to adapt motor skills and that a better understanding of individual differences in adaptation may inform how motor skills are taught and rehabilitated. Here we examined individual differences in the adaptation of upper-limb reaching movements. We quantified the extent to which participants adapted their movements to a velocity-dependent force field during an initial session, at 24 h, and again 1-week later. Participants (n = 28) displayed savings, which was expressed as greater initial adaptation when re-exposed to the force field. Individual differences in adaptation across various stages of the experiment displayed weak-strong reliability, such that individuals who adapted to a greater extent in the initial session tended to do so when re-exposed to the force field. Our second experiment investigated if individual differences in adaptation are also present when participants adapt to different force fields or a force field and visuomotor rotation. Separate groups of participants adapted to position- and velocity-dependent force fields (Experiment 2a; n = 20) or a velocity-dependent force field and visuomotor rotation in a single session (Experiment 2b; n = 20). Participants who adapted to a greater extent to velocity-dependent forces tended to show a greater extent of adaptation when exposed to position-dependent forces. In contrast, correlations were weak between various stages of adaptation to the force-field and visuomotor rotation. Collectively, our study reveals individual differences in adaptation that are reliable across repeated exposure to the same force field and present when adapting to different force fields.

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