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Maximal Respiratory Muscle Strength and Vital Capacity in Children With Early Onset Scoliosis
Gregory Redding1, Oscar Henry Mayer2, Klane White3
1Department of Pediatrics, University of Washington School of Medicine, Seattle Children's Hospital, Seattle, WA.
Insights
Respiratory muscle weakness is common in children with early onset scoliosis (EOS), impacting vital capacity. This weakness is persistent and requires further investigation for surgical treatment strategies.
Area of Science:
- Pediatric Pulmonology
- Orthopedics
- Respiratory Physiology
Background:
- Progressive restrictive respiratory disease is a known complication in moderate to severe early onset scoliosis (EOS).
- Reduced respiratory muscle strength is linked to lung function decline in adolescents and adults with scoliosis.
- Hypothesized that reduced inspiratory and expiratory muscle strength occur in EOS children, correlating with lung function, nutritional status, and deformity severity.
Purpose of the Study:
- To quantify respiratory muscle function in children with EOS.
- To determine the prevalence of respiratory muscle weakness in this population.
- To correlate respiratory muscle strength with vital capacity, BMI, and Cobb angle.
Main Methods:
- A descriptive, cross-sectional study involving 49 children with EOS (no underlying muscle weakness).
- Measured maximum inspiratory pressure (MIP), maximum expiratory pressure (MEP), forced vital capacity (FVC), BMI, and Cobb angle.
- Serial measurements over 18 months in 12 children assessed the persistence of respiratory muscle function abnormalities.
Main Results:
- Mean FVC was 51% of predicted; 26 subjects had FVC <50% predicted.
- Mean MIP was 57% and mean MEP was 53% of predicted; 27% had MIP >2SD below norms.
- MIP and MEP significantly correlated with FVC (p<0.01 and p<0.001, respectively), but not BMI or Cobb angle. Reduced strength was sustained over time.
Conclusions:
- Respiratory muscle weakness is prevalent and persistent in children with EOS.
- This weakness correlates with reduced vital capacity.
- Understanding the mechanisms is crucial for developing surgical strategies to preserve respiratory muscle function in EOS.
Study Design:
Descriptive cross-sectional study.
Objective:
To measure respiratory muscle function in children with early onset scoliosis (EOS), determine the frequency of respiratory muscle weakness, and correlate these measures with vital capacity, body mass index, and Cobb angle.
Summary Of Background Data:
Progressive restrictive respiratory disease is common among children with moderate to severe EOS. Reduced respiratory muscle strength is associated with the loss of lung function in adolescents and adults with scoliosis. We hypothesized that reduced inspiratory and expiratory respiratory muscle strength also occur in children with EOS and correlate with reduced vital capacity, poor nutritional status, and severity of the spine deformity.
Methods:
We measured maximum inspiratory pressure (MIP) and maximum expiratory pressure (MEP), forced vital capacity (FVC), body mass index IBMI), and Cobb angle in 49 children with EOS but with no diagnosis of underlying muscle weakness. We measured these indices in 12 children serially over 18 months to see if abnormal respiratory muscle function was sustained.
Results:
FVC averaged 51% (SD 21) of predicted norms with 26 subjects having an FVC <50% predicted. The mean MIP was 57% (SD 25) and the mean MEP was 53% (SD 23) of predicted norms. Thirteen (27%) of the group had MIP values >2SD below the age and sex-based norms. BMI ranged between 1% and 99% of age-based norms. Cobb angle averaged 59° (SD27). MIP% and MEP% significantly correlated with FVC% (r =0.37, P = 0.01 and r = 0.52, P < 0.001 respectively)) but not with BMI or Cobb angle. Reduced MIP% and MEP% were sustained over 7 to 41 months.
Conclusion:
Respiratory muscle weakness is common and persistent in children with EOS and correlates with reductions in vital capacity. Mechanisms for abnormal respiratory function are unclear but must be determined to develop surgical treatment strategies that preserve respiratory muscle function in children with EOS throughout childhood.
Level Of Evidence:
2.
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