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Bone Mineral Density in Children with Cerebral Palsy: Associations with Anthropometric and Clinical Characteristics-A
Aqeelah Abdulelah Aljishi1, Mohammed A Al-Omari2, Ayat H Al Safar2
1Alahsa Health Cluster, Ministry of Health, Hofuf 36421, Saudi Arabia.
Insights
Children with moderate to severe cerebral palsy (CP) have lower bone mineral density (BMD). Factors like limited walking ability and sedentary time significantly impact bone health in these children.
Area of Science:
- Pediatric Neurology
- Orthopedics
- Bone Metabolism
Background:
- Cerebral palsy (CP) is a leading cause of childhood neurological disability.
- CP is often linked to reduced bone mineral density (BMD) and elevated fracture risk.
Purpose of the Study:
- To evaluate BMD in children with CP.
- Compare pediatric CP BMD with normative data.
- Investigate associations between BMD and clinical/anthropometric factors in CP.
Main Methods:
- Dual-energy X-ray absorptiometry (DXA) for areal BMD and Z-scores.
- Evaluated 36 children (6-15 years) with CP across GMFCS levels.
- Regression analysis to identify BMD predictors.
Main Results:
- GMFCS levels III-V showed significantly lower total and subtotal Z-scores than levels I-II.
- Weight, height, and sedentary time predicted total Z-score.
- Lack of walking ability predicted subtotal Z-score.
Conclusions:
- Moderate to severe CP is associated with significantly lower BMD.
- Limited ambulation and higher spasticity correlate with poorer bone health.
- Early screening and interventions are crucial for bone health in children with CP.
Abstract:
Background/Objectives: Cerebral palsy (CP) is the most common cause of neurological disability in children and is frequently associated with low bone mineral density (BMD) and increased risk of fractures. This study aimed to assess BMD in children with CP, compare it with normative standards, and explore potential associations with anthropometric parameters and the clinical characteristics of children with CP. Methods: Thirty-six children with CP aging 6-15 years from both sexes with varying levels of Gross Motor Functional Classification System (GMFCS) and spasticity were evaluated. Areal BMD and Z-scores (total and subtotal) were measured using dual-energy X-ray absorptiometry (DXA). Regression analysis identified predictors of BMD. Results: Children with GMFCS levels III-V had significantly lower total and subtotal Z-scores compared to those with levels I-II (p = 0.001 and p = 0.02, respectively). Total Z-score was significantly predicted by weight (β = 1.02, p = 0.002), height (β = -0.72, p = 0.02), and sedentary time (β = -0.47, p = 0.005). "No walking" was the only significant predictor for subtotal Z-score (β = -0.50, p = 0.004). Conclusions: Children with moderate to severe CP exhibited significantly lower BMD, particularly those with limited ambulation and higher spasticity levels. These findings underscore the importance of early screening and targeted interventions to optimize bone health in this population.
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