Structural Brain Damage and Upper Limb Kinematics in Children with Unilateral Cerebral Palsy

Lisa Mailleux1, Cristina Simon-Martinez1, Katrijn Klingels1,2

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

Insights

Brain lesion location and timing impact upper limb movement in children with unilateral cerebral palsy. Later lesions (CDGM) show more kinematic deviations, while posterior limb of internal capsule damage predicts pathology regardless of timing.

Area of Science:

  • Neuroscience
  • Pediatrics
  • Rehabilitation Medicine

Background:

  • Limited understanding of the relationship between structural brain damage and upper limb (UL) kinematics in children with unilateral cerebral palsy (uCP).
  • Exploration of differences in UL kinematics based on lesion timing (periventricular white matter vs. cortical/deep gray matter) and correlation with lesion characteristics.

Purpose of the Study:

  • To compare UL kinematics between children with early (PWM) and later (CDGM) brain lesions.
  • To investigate the association between UL kinematics and the location/extent of brain lesions within each timing group.

Main Methods:

  • Forty-eight children with uCP underwent 3D movement analysis (3DMA) of the UL during a reach-to-grasp task.
  • Spatiotemporal parameters, Arm Profile Score (APS), and Arm Variable Scores (AVS) were quantified.
  • Brain lesion location and extent were assessed using semi-quantitative MRI scales.

Main Results:

  • Children with CDGM lesions exhibited more aberrant spatiotemporal parameters and movement pathology (APS) compared to the PWM group.
  • In the CDGM group, lesion location/extent correlated with movement duration, velocity, trajectory straightness, and distal UL pathology.
  • Damage to the posterior limb of the internal capsule (PLIC) was a significant predictor of UL movement pathology across lesion timings.

Conclusions:

  • UL kinematic deviations are more strongly influenced by lesion location and extent in children with later (CDGM) lesions than earlier (PWM) lesions.
  • Posterior limb of the internal capsule damage is a key predictor of UL movement pathology, irrespective of lesion timing.
  • Findings highlight the differential impact of lesion timing and location on motor control in pediatric unilateral cerebral palsy.

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