Increases in muscle volume after plantarflexor strength training in children with spastic cerebral palsy

Anne E McNee1, Martin Gough, Matt C Morrissey

  • 1One Small Step Gait Laboratory, Guy's Hospital, St Thomas Street, London SE1 9RT, UK. anne.mcnee@gstt.nhs.uk

Insights

Resistance training significantly increased calf muscle size in children with spastic cerebral palsy (CP). This improvement in muscle volume was maintained long-term, though functional gains were not observed.

Area of Science:

  • Biomedical Engineering
  • Pediatric Rehabilitation
  • Neuromuscular Physiology

Background:

  • Children with spastic cerebral palsy (CP) often exhibit muscle weakness.
  • The impact of resistance training on muscle size in this population is not well-understood.

Purpose of the Study:

  • To investigate the effects of plantarflexor strengthening on muscle volume, gait, and function in children with spastic CP.
  • To assess the changes in muscle size and functional capacity following a 10-week resistance training program.

Main Methods:

  • 13 ambulant children with spastic CP underwent a 10-week resistance training program (heel raises or Thera-Band).
  • Muscle volume of the medial and lateral gastrocnemius was measured using 3D ultrasound.
  • Functional assessments included heel raises, gait analysis, timed up and go test, and functional mobility scales.

Main Results:

  • Significant increases in medial (17%) and lateral (14%) gastrocnemius muscle volumes were observed by week 5, maintained at week 10 and 3-month follow-up.
  • The number of unilateral heel raises significantly improved by week 5 and was sustained throughout the study.
  • No significant changes were noted in the measured functional outcomes.

Conclusions:

  • Plantarflexor resistance training effectively increases muscle volume in children with spastic CP.
  • While muscle hypertrophy is achievable, its direct translation to improved functional outcomes requires further investigation.
  • The potential role of progressive strength training in long-term functional maintenance warrants discussion.