Progressive resistance training for children with cerebral palsy: A randomized controlled trial evaluating the

Britta Hanssen1,2, Nicky Peeters1,2, Nathalie De Beukelaer1

  • 1Department of Rehabilitation Sciences, KU Leuven, Leuven, Belgium.

Frontiers in Physiology
|October 21, 2022
PubMed

Insights

Progressive resistance training (PRT) significantly improved muscle strength and function in children with spastic cerebral palsy (SCP). This home-based program, supervised by physiotherapists, showed no adverse effects on muscle properties, highlighting its effectiveness for enhancing physical capabilities in children with SCP.

Area of Science:

  • Pediatric Rehabilitation
  • Neuromuscular Disorders
  • Exercise Physiology

Background:

  • Children with spastic cerebral palsy (SCP) often experience muscle weakness due to neural and muscular impairments.
  • While progressive resistance training (PRT) is known to improve muscle weakness, its impact on muscle morphology in SCP remains unclear.

Purpose of the Study:

  • To evaluate the effects of a 12-week PRT program on lower limb muscle strength, morphology, and gross motor function in children with SCP.
  • To compare the outcomes between an intervention group undergoing PRT and a control group receiving usual care.

Main Methods:

  • Forty-nine children with SCP were randomized into an intervention group (PRT) and a control group.
  • The intervention group followed a 12-week PRT program (3-4 sessions/week, 3 sets of 10 reps at 60%-80% of 1RM), supervised at home.
  • Assessments included isometric strength (knee/plantar flexion), muscle morphology (ultrasound), functional strength, and gross motor function; data analyzed using linear mixed models.

Main Results:

  • The PRT group showed significant improvements in knee flexion strength and unilateral heel raises compared to the control group.
  • Significant improvements were observed in knee extension and plantar flexion isometric strength, rectus femoris and medial gastrocnemius muscle echo-intensity (MV), sit-to-stand, and lateral step-up within the intervention group.
  • Muscle echo-intensity, muscle lengths, and gross motor function showed limited changes; PRT effectively maintained muscle size relative to skeletal growth.

Conclusions:

  • A home-based, physiotherapy-supervised PRT program is effective in improving isometric and functional muscle strength in children with SCP.
  • The PRT program demonstrated significant benefits for muscle strength and function without adverse effects on muscle properties or serious adverse events.
  • PRT offers a viable strategy for enhancing physical capabilities and potentially mitigating muscle-related complications in children with SCP.