Kinetic Relationships between the Hip and Ankle Joints during Gait in Children with Cerebral Palsy: A Pilot Study

Misako Ishihara1, Yumi Higuchi2

  • 1Graduate School of Comprehensive Rehabilitation, Osaka Prefecture University, Japan ; Department of Rehabilitation, Iseikai Gakkentoshi Hospital, Japan.

Insights

Children with spastic cerebral palsy (CP) rely on hip power, not ankle power, for walking propulsion. This study reveals altered ankle and hip joint kinetics in CP gait.

Area of Science:

  • Biomechanical analysis
  • Pediatric gait studies
  • Neuromuscular disorders

Background:

  • Spastic cerebral palsy (CP) affects motor control, impacting gait mechanics.
  • Understanding joint kinetic contributions is crucial for targeted interventions in CP.

Purpose of the Study:

  • To investigate the kinetic interrelationships between ankle and hip joints during the late stance phase of gait in children with spastic hemiplegic CP.
  • To compare these relationships with typically developing children.

Main Methods:

  • Three-dimensional gait analysis with force data collection.
  • Comparison of peak joint moments, power generation, and ankle/hip power ratios.
  • Statistical analysis using Kruskal-Wallis and Steel-Dwass tests on mean values from 5 gait cycles.

Main Results:

  • Significantly lower peak ankle plantar flexor moments and power generation (A2) observed in children with CP compared to controls.
  • Higher peak hip flexor moments and power generation (H3) noted on both hemiplegic and uninvolved sides in CP.
  • Reduced ankle/hip power (A2/H3) ratios in children with CP, particularly on the hemiplegic side.

Conclusions:

  • Gait propulsion in children with spastic CP is predominantly driven by hip power generation, rather than ankle power.
  • Altered joint power distribution highlights compensatory strategies in CP gait.
  • Findings suggest potential therapeutic targets focusing on hip function for improved mobility.