Savings in Human Force Field Learning Supported by Feedback Adaptation

eNeuro. 2021 Sep 21;8(5):ENEURO.0088-21.2021. doi: 10.1523/ENEURO.0088-21.2021. Print 2021 Sep-Oct.

Abstract

Savings have been described as the ability of healthy humans to relearn a previously acquired motor skill faster than the first time, which in the context of motor adaptation suggests that the learning rate in the brain could be adjusted when a perturbation is recognized. Alternatively, it has been argued that apparent savings were the consequence of a distinct process that instead of reflecting a change in the learning rate, revealed an explicit re-aiming strategy. Based on recent evidence that feedback adaptation may be central to both planning and control, we hypothesized that this component could genuinely accelerate relearning in human adaptation to force fields (FFs) during reaching. Consistent with our hypothesis, we observed that on re-exposure to a previously learned FF, the very first movement performed by healthy volunteers in the relearning context was better adapted to the external disturbance, and this occurred without any anticipation or cognitive strategy because the relearning session was started unexpectedly. We conclude that feedback adaptation is a medium by which the nervous system can genuinely accelerate learning across movements.

Keywords: adaptive feedback control; force field adaptation; readaptation; savings; sensorimotor control; sensorimotor learning.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Adaptation, Physiological*
  • Feedback
  • Humans
  • Learning
  • Movement
  • Psychomotor Performance*