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Updated: Dec 18, 2025

Postural Organization of Gait Initiation for Biomechanical Analysis Using Force Platform Recordings
Published on: July 26, 2022
Canonical correlation between body-posture deviations and gait disorders in children with cerebral palsy
Andrzej Szopa1, Małgorzata Domagalska-Szopa2, Andrzej Siwiec3
1Department of Physiotherapy, School of Health Sciences in Katowice, Medical University of Silesia, Katowice, Poland.
Insights
Children with Cerebral Palsy (CP) exhibit distinct postural and gait issues. This study links specific standing posture deviations to gait problems, aiding early recognition in children with CP.
Area of Science:
- Biomedical Engineering
- Orthopedics
- Pediatrics
Background:
- Children with Cerebral Palsy (CP) experience postural and gait impairments due to brain injury.
- Previous research defined characteristic postural and gait patterns in children with CP.
Purpose of the Study:
- To identify specific standing posture deviations strongly correlated with gait deviations in independently ambulatory children with CP.
- To differentiate postural-gait disorder models between unilateral and bilateral CP.
Main Methods:
- Cross-sectional study involving 120 independently ambulatory children with CP (aged 7-13 years).
- Surface topography used to examine body posture during standing.
- Three-dimensional instrumented gait analysis used to assess gait parameters.
Main Results:
- Sagittal spine curvature misalignment significantly correlated with pelvic tilt, inadequate swing phase and knee flexion, and peak dorsiflexion.
- Pelvic and trunk asymmetry associated with pelvic rotation, hip abduction, knee flexion range of motion, and peak dorsiflexion.
- Distinct sagittal and coronal plane postural-gait disorder models identified for bilateral and unilateral CP, respectively.
Conclusions:
- Specific standing posture features, measurable by surface topography, are strongly related to gait deviations in children with CP.
- This research differentiates postural-gait disorder models, suggesting distinct patterns for bilateral and unilateral CP.
- Surface topography offers a clinically applicable tool for early recognition of postural deviations in CP, potentially reducing reliance on complex 3-D gait analysis.
Abstract:
Children with Cerebral Palsy (CP) show the postural constraints while standing, and gait disorders, resulting from both primary and secondary impairments of brain injury. In our previous studies, several characteristic postural and gait patterns in children with unilateral as well as with bilateral CP were defined, and the relationship between these patterns was demonstrated. The purpose of present study was to identify which features of body posture deviation during standing were strongly related to gait deviations in independently ambulatory children with CP. For this aim we explored the cross-relationship between features of body posture while standing examined by surface topography and the selected gait parameters from three-dimensional instrumented gait analysis in one hundred twenty children with cerebral palsy, aged between 7 and 13 years, who were able to walk independently. First, our study documented that that sagittal misalignment of the spine curvature was significantly related to kinematic deviations such as deviations of pelvic tilt, inadequate swing phase and knee flexion, and peak dorsiflexion in stance. Second, the study shows that the static asymmetry of pelvis and trunk was significantly associated with kinematic deviations during gait cycle such as pelvic rotation, hip abduction in swing, ROM of knee flexion, peak dorsiflexion in stance. Based on obtained results and referring to our previous findings it can be assumed that the first model of the relationship between postural deviation and gait disturbances, called 'postural and gait complex of disorders in sagittal plane', is related to children with bilateral CP, whereas the second model 'postural and gait complex of disorders in coronal plane' to children with unilateral CP. The clinical applications of this study relate to the early recognition of particular features of postural deviation using surface topography, instead of more difficult and demanding expensive tools 3-D gait analysis.
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