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Force field adaptation does not alter space representation.

Carine Michel1, Lucie Bonnetain2, Sarah Amoura2

  • 1INSERM UMR1093-CAPS, Université Bourgogne Franche-Comté, UFR des Sciences du Sport, F-21000, Dijon, France. carine.michel@u-bourgogne.fr.

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Adaptation to novel sensorimotor environments, like prism exposure, can affect spatial cognition. However, adapting to a dynamic force field during pointing movements did not alter spatial representation in healthy individuals.

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Area of Science:

  • Neuroscience
  • Cognitive Science
  • Motor Control

Background:

  • Prism adaptation studies reveal sensorimotor after-effects extend to spatial cognition.
  • Investigating if this cognitive expansion is unique to prism adaptation is crucial.

Purpose of the Study:

  • To determine if adaptation to a novel dynamic environment (force field) also induces spatial cognitive after-effects.
  • To differentiate between prism adaptation and dynamic adaptation effects on space representation.

Main Methods:

  • Healthy individuals underwent adaptation to a leftward or rightward force field during pointing tasks.
  • Representational after-effects were measured using the perceptual line bisection task before and after adaptation.

Main Results:

  • Sensorimotor adaptation occurred following exposure to the force field.
  • No significant influence on space representation or representational after-effects was observed.

Conclusions:

  • Adaptation to dynamic environments like force fields does not necessarily extend to spatial cognition.
  • Findings have methodological implications for studying sensorimotor plasticity, especially in patient populations where space cognition should be preserved.