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Evaluation of postural stability in children with hemiplegic cerebral palsy
Ozge Kenis-Coskun1, Esra Giray2, Beyhan Eren3
1Physical Medicine and Rehabilitation Department, Kartal Dr. Lutfu Kirdar Training Hospital, Turkey.
Insights
Children with hemiplegic cerebral palsy exhibit impaired static and dynamic postural stability. This affects their balance control, impacting daily activities like standing and turning.
Area of Science:
- Neurology
- Biomechanics
- Pediatrics
Background:
- Postural stability, crucial for maintaining body position, is often compromised in individuals with cerebral palsy.
- Hemiplegic cerebral palsy specifically affects motor function on one side of the body.
Purpose of the Study:
- To compare static and dynamic postural stability between children with hemiplegic cerebral palsy and healthy controls.
- To identify specific balance deficits in children with hemiplegic cerebral palsy.
Main Methods:
- Thirty-seven children with hemiplegic cerebral palsy (ages 5-14) and 23 healthy controls participated.
- Postural stability was assessed using the Neurocom Balance system, measuring sway velocity (eyes open/closed).
- Sit to stand and turning abilities were evaluated using specific functional tests.
Main Results:
- Children with hemiplegic cerebral palsy demonstrated significantly greater sway velocities compared to controls.
- Weight transfer during sit-to-stand tests was slower in the cerebral palsy group.
- Turning and dynamic balance on a force plate were also significantly impaired in children with cerebral palsy.
Conclusions:
- Both static and dynamic postural stability are demonstrably affected in hemiplegic cerebral palsy.
- Findings highlight the need for targeted rehabilitation strategies to improve balance in this population.
Abstract:
[Purpose] Postural stability is the ability of to maintain the position of the body within the support area. This function is affected in cerebral palsy. The aim of the present study was to compare static and dynamic postural stability between children with hemiplegic cerebral palsy and healthy controls. [Subjects and Methods] Thirty-seven children between the ages of 5 and 14 diagnosed with hemiplegic cerebral palsy (19 right, 18 left) and 23 healthy gender- and age-matched controls were included in the study. Postural stability was evaluated in both of the groups using a Neurocom Balance. Sway velocity was measured both with the eyes open and closed. Sit to stand and turning abilities were also assessed. [Results] The sway velocities with the eyes open and closed were significantly different between the groups. The weight transfer time in the Sit to Stand test was also significantly slower in children with cerebral palsy. Children with cerebral palsy also showed slower turning times and greater sway velocities during the Step and Quick Turn test on a force plate compared with their healthy counterparts. [Conclusion] Both static and dynamic postural stability parameters are affected in hemiplegic cerebral palsy. Further research is needed to define rehabilitation interventions to improve these parameters in patients.
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