Motor imagery enhances performance beyond the imagined action

M Magdalena Gippert (Department of Neurology) P Pei-Cheng Shih (Sony Computer Science Laboratories) T Tobias Heed (Department of Psychology and Centre for Cognitive Neuroscience) I Ian S. Howard (School of Engineering, Computing and Mathematics, Faculty of Science and Engineering) M Mina Jamshidi Idaji (Department of Neurology) A Arno Villringer (Department of Neurology) B Bernhard Sehm (Department of Neurology) V Vadim V. Nikulin (Department of Neurology)

Abstract

Motor imagery is frequently utilized to improve the performance of specific target movements in sports and rehabilitation. In this study, we show that motor imagery can facilitate learning of not only the imagined target movements but also sequentially linked overt movements. Hybrid sequences comprising imagined and physically executed segments allowed participants to learn specific movement characteristics of the executed segments when they were consistently associated with specific imagined segments. Electrophysiological recordings revealed that the degree of event-related synchronization in the alpha and beta bands during a basic motor imagery task was correlated with imagery-evoked motor learning. Thus, both behavioral and neural evidence indicate that motor imagery’s benefits extend beyond the imagined movements, improving performance in linked overt movements. This provides decisive evidence for the functional equivalence of imagined and overt movements and suggests applications for imagery in sports and rehabilitation.

Article Details

Volume / Issue Vol. 122, Issue 20
Published May 20, 2025
ISSN 0027-8424
Publisher National Academy of Sciences

Authors (8)

M

Magdalena Gippert

Department of Neurology

P

Pei-Cheng Shih

Sony Computer Science Laboratories

T

Tobias Heed

Department of Psychology and Centre for Cognitive Neuroscience

I

Ian S. Howard

School of Engineering, Computing and Mathematics, Faculty of Science and Engineering

M

Mina Jamshidi Idaji

Department of Neurology

A

Arno Villringer

Department of Neurology

B

Bernhard Sehm

Department of Neurology

V

Vadim V. Nikulin

Department of Neurology