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Updated: Aug 12, 2026

Event-related Potentials During Target-response Tasks to Study Cognitive Processes of Upper Limb Use in Children with Unilateral Cerebral Palsy
Published on: January 11, 2016
Cycling patterns in children with and without cerebral palsy
1Program in Physical Therapy-SHRP University of Medicine and Dentistry of New Jersey, Newark 07107, USA.
Insights
Children with spastic diplegic cerebral palsy exhibit irregular pedaling patterns and increased muscle co-contraction during cycling. This study quantifies these differences compared to typically developing children.
Area of Science:
- Biomedical Engineering
- Neuroscience
- Pediatrics
Background:
- Spastic diplegic cerebral palsy (CP) is a common motor disorder affecting muscle coordination.
- Understanding the biomechanics of movement in children with CP is crucial for developing effective interventions.
- Pedaling is a fundamental motor skill that can be affected by neurological impairments.
Purpose of the Study:
- To compare pedaling smoothness and muscle activity patterns in children with spastic diplegic CP versus typically developing children.
- To identify specific kinematic and electromyographic differences associated with CP during cycling.
- To provide quantitative data for understanding motor control deficits in pediatric CP.
Main Methods:
- Utilized video analysis to assess pedaling rhythm and smoothness.
- Employed electromyography (EMG) to measure muscle activity in key leg muscles (tibialis anterior, rectus femoris, medial hamstring, lateral gastrocnemius).
- Compared data between a cohort of children with spastic diplegic CP and a control group of typically developing children.
Main Results:
- Children with CP demonstrated irregular pedaling time periods and spent more time at the bottom of the pedal cycle.
- Increased muscle activity time and co-contraction time at the ankle and knee were observed in children with CP.
- The control group exhibited longer ankle co-contraction times than anticipated from adult studies, suggesting developmental differences.
Conclusions:
- Children with spastic diplegic CP exhibit significantly altered pedaling biomechanics and muscle activation patterns.
- These findings highlight the impact of CP on motor control during a functional activity like cycling.
- The quantitative data can inform targeted physical therapy and rehabilitation strategies for children with CP.
Abstract:
Pedaling smoothness and electromyography patterns were quantified in children with spastic diplegic cerebral palsy (CP) and a cohort of children with typical development. Video analysis of the pedaling rhythm yielded equivalent time periods for the control group and irregular time periods in the group with CP, with greater time spent at the bottom of the pedaling cycle. Electromyography patterns of the tibialis anterior, rectus femoris, medial hamstring and lateral gastrocnemius muscle groups yielded greater percentages of muscle activity time and co-contraction time at both the ankle and knee in the group with CP; however, the control group had longer ankle co-contraction times than were expected from previous adult studies.

