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Published on: December 11, 2013
Evaluation of Static Balance in Children with Cerebral Palsy Using an Innovative Image Processing Software
Zekiye Basaran1, Halil Ibrahim Celik2, Onder Polat3
1Department of Physiotherapy and Rehabilitation, Gazi University, 06560 Ankara, Turkey.
Insights
A new video-based software offers a valid, low-cost method for assessing static balance in children with cerebral palsy (CP). This portable tool can be used in various settings to aid rehabilitation strategies for improving balance in children with CP.
Area of Science:
- Pediatric rehabilitation
- Biomechanical analysis
- Assistive technology
Background:
- Impaired balance is a primary limitation for children with cerebral palsy (CP), impacting motor skills and quality of life.
- Traditional force platforms for balance assessment are expensive, non-portable, and require specialized labs, limiting clinical use.
Purpose of the Study:
- To develop and validate a novel, low-cost, image processing-based software for assessing static balance in children with CP.
- To compare the validity of the new software against gold-standard force platform measurements.
Main Methods:
- 83 children (63 with CP, GMFCS I-II; 20 controls) aged 5-15 years participated.
- Static balance was measured using a force platform and the new video-based software under four conditions.
- The software used frame differencing to track center of mass movement, calculating velocity and displacement.
Main Results:
- The video-based software showed moderate to strong positive correlations with force platform data, especially with eyes open.
- Correlations were weaker but significant in more challenging conditions like eyes closed or feet together.
- The software demonstrated good validity as a balance assessment tool.
Conclusions:
- The developed image-based software is a valid, affordable, and portable alternative for static balance assessment in children with CP.
- This tool can be utilized in diverse clinical and home environments to support personalized rehabilitation.
- The software facilitates accessible and effective balance monitoring for improved outcomes in pediatric cerebral palsy.
Abstract:
Background: Impaired balance is one of the most common and functionally limiting problems in children with cerebral palsy (CP), significantly affecting their motor abilities and quality of life. Although force platforms are considered the gold standard for evaluating postural stability, they are often costly, non-portable, and require specialized laboratory environments, limiting their accessibility in routine clinical settings. Objective: This study aimed to develop a novel software program based on image processing techniques to assess static balance in children with CP and to evaluate its validity against traditional force platform measurements. Methods: A total of 83 children aged 5-15 years (63 with CP, GMFCS levels I-II; 20 healthy controls) participated. Static balance was assessed under four different standing conditions using both a force platform and a newly developed video-based software tool. The software utilized the frame difference method to detect center of mass movements, and parameters such as velocity and total displacement were calculated. Correlation analyses were conducted between the image processing and force platform data. Results: The software demonstrated moderate to strong positive correlations with force platform parameters in the majority of test conditions, particularly when participants stood with eyes open. In more challenging balance scenarios (e.g., eyes closed, feet together), correlations were weaker but still significant. Conclusions: The findings suggest that this image-based software is a valid, low-cost, and portable alternative for static balance assessment in children with CP. It has the potential for use in diverse clinical or home settings, supporting individualized rehabilitation strategies.

