Determinants of gait as applied to children with cerebral palsy

S D Russell1, B C Bennett, D C Kerrigan

  • 1Department of Mechanical and Aerospace Engineering, University of Virginia, Charlottesville, VA 22903, USA.

Gait & Posture
|November 23, 2006
PubMed

Insights

Children with cerebral palsy (CP) exhibit exaggerated gait determinant effects on vertical center of mass (CoM) displacement compared to typically developing children. Excessive knee flexion during double support is a primary cause of increased CoM excursion in CP.

Area of Science:

  • Biomechanics
  • Pediatric Gait Analysis

Background:

  • Understanding gait determinants is crucial for analyzing mobility in children.
  • Previous research has not isolated the impact of specific gait determinants on vertical center of mass (CoM) displacement in children, particularly those with cerebral palsy (CP).

Purpose of the Study:

  • To quantify the isolated contributions of eight gait determinants on vertical CoM displacement in typically developing children and children with CP.
  • To compare the effects of these determinants between the two groups and test the hypothesis that their relative contributions would be similar.

Main Methods:

  • Quantification of eight determinants of gait.
  • Analysis of vertical center of mass (CoM) displacement.
  • Comparison between typically developing children and children with cerebral palsy (CP).

Main Results:

  • Children with CP showed similar but slightly exaggerated effects of gait determinants compared to controls, indicating a mature gait pattern in typically developing children.
  • Determinants negatively affecting CoM excursion were significantly worse in children with CP.
  • Increased knee flexion during double support was the main cause of increased vertical CoM excursion in children with CP, aggravated by higher CoM lift due to heel lifting during single support.

Conclusions:

  • Gait determinant analysis provides insights into gait kinematics but has limitations in quantifying dynamics and kinetics crucial for individuals with walking disabilities.
  • Specific kinematic deviations, like excessive knee flexion and heel rise, contribute significantly to altered vertical CoM displacement in children with CP.
  • While some determinants had similar effects across groups, others like pelvic rotation and leg inclination showed group-specific influences.

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