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Corticospinal and spinal responses following a single session of lower limb motor skill and resistance training.

Authors :
Woodhead, Alex
Rainer, Christopher
Hill, Jessica
Murphy, Colm P.
North, Jamie S.
Kidgell, Dawson
Tallent, Jamie
Source :
European Journal of Applied Physiology. Mar2024, p1-16.
Publication Year :
2024

Abstract

Prior studies suggest resistance exercise as a potential form of motor learning due to task-specific corticospinal responses observed in single sessions of motor skill and resistance training. While existing literature primarily focuses on upper limb muscles, revealing a task-dependent nature in eliciting corticospinal responses, our aim was to investigate such responses after a single session of lower limb motor skill and resistance training. Twelve participants engaged in a visuomotor force tracking task, self-paced knee extensions, and a control task. Corticospinal, spinal, and neuromuscular responses were measured using transcranial magnetic stimulation (TMS) and peripheral nerve stimulation (PNS). Assessments occurred at baseline, immediately post, and at 30-min intervals over two hours. Force steadiness significantly improved in the visuomotor task (<italic>P</italic> < 0.001). Significant fixed-effects emerged between conditions for corticospinal excitability, corticospinal inhibition, and spinal excitability (all <italic>P</italic> < 0.001). Lower limb motor skill training resulted in a greater corticospinal excitability compared to resistance training (mean difference [MD] = 35%, <italic>P</italic> < 0.001) and control (MD; 37%, <italic>P</italic> < 0.001). Motor skill training resulted in a lower corticospinal inhibition compared to control (MD; – 10%, <italic>P</italic> < 0.001) and resistance training (MD; – 9%, <italic>P</italic> < 0.001). Spinal excitability was lower following motor skill training compared to control (MD; – 28%, <italic>P</italic> < 0.001). No significant fixed effect of Time or Time*Condition interactions were observed. Our findings highlight task-dependent corticospinal responses in lower limb motor skill training, offering insights for neurorehabilitation program design. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
14396319
Database :
Academic Search Index
Journal :
European Journal of Applied Physiology
Publication Type :
Academic Journal
Accession number :
176242359
Full Text :
https://doi.org/10.1007/s00421-024-05464-9