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Published on: February 2, 2024
Altered skeletal maturation in moderate to severe cerebral palsy
Richard C Henderson1, Shawn R Gilbert, Meagan E Clement
1Department of Orthopaedics and Pediatrics, University of North Carolina, Campus Box 7055, Chapel Hill, NC 27599, USA. rchh@med.unc.edu
Insights
Children with cerebral palsy (CP) often have growth and development issues. This study found that diminished linear growth, low bone density, and low body fat are linked to delayed skeletal maturation in children with moderate to severe CP.
Area of Science:
- Pediatric Endocrinology
- Developmental Pediatrics
- Orthopedic Surgery
Background:
- Children with cerebral palsy (CP) frequently exhibit growth and developmental abnormalities.
- Skeletal maturation, or 'bone age,' is a key indicator of overall development.
Purpose of the Study:
- To evaluate skeletal maturation in children with moderate to severe CP.
- To identify factors associated with altered skeletal maturation in this population.
Main Methods:
- Assessed skeletal maturation using the Fels method on hand-wrist radiographs in 80 participants with moderate to severe CP (GMFCS levels III-V).
- Collected clinical, anthropometric, Tanner staging, bone density, and health status data.
- Performed multivariant analyses to identify factors associated with skeletal maturation delays.
Main Results:
- No significant difference in mean skeletal age versus chronological age for the group.
- High prevalence of individual skeletal age advancement (7%) or delay (10%) by over 2 years.
- Diminished linear growth (height), low lumbar-spine bone density, and low body fat independently associated with delayed skeletal maturation.
Conclusions:
- Skeletal maturation is frequently altered in children with moderate to severe CP.
- Factors such as reduced height, poor bone density, and low body fat are linked to delayed bone age in this cohort.
Abstract:
Abnormalities of growth and development are prevalent in children with cerebral palsy (CP). The purpose of this study was to assess skeletal maturation ('bone age') in this population and to identify those factors related to alterations in this aspect of development. The study group was a convenience sample of 80 participants (47 males, 33 females; age range 2 y 6 mo to 21 y 1 mo; mean age 10 y 10 mo, SD 4 y 2 mo). All had moderate to severe spastic or mixed spastic CP at Gross Motor Function Classification System level III (n=8, 10%); level IV (n=21, 26%); or level V (n=51, 64%). Skeletal maturation was assessed by the detailed Fels method of scoring hand-wrist radiographs. Each evaluation included clinical and anthropometric assessments, Tanner staging, bone density measurements, and the Children's Health Status Questionnaire. Follow-up evaluations were obtained for 41 participants, providing a total of 143 evaluations. Median interval between first and last evaluations was 24.7 months (range 11.9 to 45mo). For the study group as a whole there was no significant difference between a child's skeletal age and chronological age. However, there was a high prevalence of individual participants in whom skeletal age was advanced (7%) or delayed (10%), relative to chronological age, by more than 2 years. In multivariant analyses it was found that diminished linear growth (height), low lumbar-spine bone density, and low body fat as measured by triceps skinfolds were all independently associated with delays in skeletal maturation. Multiple aspects of skeletal growth and development, including skeletal maturation, are frequently altered in children with moderate to severe CP.
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