Associations between muscle morphology and spasticity in children with spastic cerebral palsy

Nicky Peeters1, Britta Hanssen1, Lynn Bar-On2

  • 1Department of Rehabilitation Sciences, KU Leuven, Leuven, Belgium; Department of Rehabilitation Sciences, Ghent University, Ghent, Belgium.

Insights

Higher spasticity in children with spastic cerebral palsy correlates with reduced muscle size and length, particularly in muscles activated at lower velocities. This highlights the link between spasticity and muscle morphology changes.

Area of Science:

  • Biomedical Engineering
  • Neurology
  • Pediatrics

Background:

  • Spastic cerebral palsy (SCP) presents heterogeneous clinical symptoms, complicating spasticity management.
  • Understanding the interplay between spasticity and muscle morphology is crucial for effective treatment.

Purpose of the Study:

  • To investigate associations between spasticity and muscle morphology in children with SCP.
  • To compare muscle morphology across different spasticity patterns, defined by muscle activation during passive stretching.

Main Methods:

  • Evaluated spasticity and muscle morphology (volume, length, echogenicity) in 74 children with SCP using instrumented assessments and 3D ultrasound.
  • Quantified spasticity based on muscle activation differences at low and high stretch velocities.
  • Classified spasticity patterns as mixed length-/velocity-dependent or pure velocity-dependent.

Main Results:

  • A moderate negative association was observed between spasticity and medial gastrocnemius (MG) muscle volume (r = -0.624).
  • Smaller normalized muscle volumes in MG and semitendinosus (ST) and reduced ST muscle belly length were found in muscles with mixed length-/velocity-dependent patterns.
  • These morphological differences were more pronounced in muscles activating at low velocities.

Conclusions:

  • Increased spasticity is linked to decreased MG and ST muscle volumes and shorter MG muscles in children with SCP.
  • Altered muscle morphology is more significant in muscles exhibiting length-/velocity-dependent spasticity patterns compared to purely velocity-dependent ones.
Abstract