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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.
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.
Abstract:
Children with spastic cerebral palsy often present with muscle weakness, resulting from neural impairments and muscular alterations. While progressive resistance training (PRT) improves muscle weakness, the effects on muscle morphology remain inconclusive. This investigation evaluated the effects of a PRT program on lower limb muscle strength, morphology and gross motor function. Forty-nine children with spastic cerebral palsy were randomized by minimization. The intervention group (nparticipants = 26, age: 8.3 ± 2.0 years, Gross Motor Function Classification System [GMFCS] level I/II/III: 17/5/4, nlegs = 41) received a 12-week PRT program, consisting of 3-4 sessions per week, with exercises performed in 3 sets of 10 repetitions, aiming at 60%-80% of the 1-repetition maximum. Training sessions were performed under supervision with the physiotherapist and at home. The control group (nparticipants = 22, age: 8.5 ± 2.1 year, GMFCS level I/II/III: 14/5/3, nlegs = 36) continued usual care including regular physiotherapy and use of orthotics. We assessed pre- and post-training knee extension, knee flexion and plantar flexion isometric strength, rectus femoris, semitendinosus and medial gastrocnemius muscle morphology, as well as functional strength, gross motor function and walking capacity. Data processing was performed blinded. Linear mixed models were applied to evaluate the difference in evolution over time between the control and intervention group (interaction-effect) and within each group (time-effect). The α-level was set at p = 0.01. Knee flexion strength and unilateral heel raises showed a significant interaction-effect (p ≤ 0.008), with improvements in the intervention group (p ≤ 0.001). Moreover, significant time-effects were seen for knee extension and plantar flexion isometric strength, rectus femoris and medial gastrocnemius MV, sit-to-stand and lateral step-up in the intervention group (p ≤ 0.004). Echo-intensity, muscle lengths and gross motor function showed limited to no changes. PRT improved strength and MV in the intervention group, whereby strength parameters significantly or close to significantly differed from the control group. Although, relative improvements in strength were larger than improvements in MV, important effects were seen on the maintenance of muscle size relative to skeletal growth. In conclusion, this study proved the effectiveness of a home-based, physiotherapy supervised, PRT program to improve isometric and functional muscle strength in children with SCP without negative effects on muscle properties or any serious adverse events. Clinical Trial Registration: ClinicalTrials.gov, identifier NCT03863197.
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