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Comorbidities in cerebral palsy and their relationship to neurologic subtype and GMFCS level
Michael I Shevell1, Lynn Dagenais, Nicholas Hall
1Department of Neurology, McGill University, Montreal, Quebec, Canada. michael.shevell@muhc.mcgill.ca
Insights
Children with cerebral palsy (CP) experience higher comorbidity burdens, particularly those with spastic quadriplegic or nonambulatory status. These findings highlight the importance of classification systems in understanding CP complexity.
Area of Science:
- Neurology
- Pediatrics
- Public Health
Background:
- Cerebral palsy (CP) is a complex neurological disorder affecting motor function.
- Understanding the burden of comorbidities in children with CP is crucial for comprehensive care.
- Comorbidities can significantly impact the health and well-being of children with CP.
Purpose of the Study:
- To ascertain the burden of comorbidity in children with cerebral palsy.
- To stratify comorbidity burden by neurologic subtype and functional capability (Gross Motor Function Classification System - GMFCS).
Main Methods:
- Utilized the Quebec Cerebral Palsy Registry for a 4-year birth interval (1999-2002).
- Identified children with CP and collected data on neurologic subtype, GMFCS levels, and specific comorbidities.
- Comorbidities included cortical blindness, auditory limitations, nonverbal communication, gavage feeding, and seizures.
Main Results:
- Comorbidity burden showed a dichotomous distribution.
- Infrequent comorbidities were observed in spastic hemiplegic/diplegic CP and ambulatory GMFCS levels I-III.
- Frequent comorbidities were noted in spastic quadriplegic, dyskinetic, ataxic-hypotonic CP, and nonambulatory GMFCS levels IV-V.
Conclusions:
- Enhanced comorbidity burdens are unevenly distributed in children with CP.
- Comorbidity is associated with specific neurologic subtypes (spastic quadriplegic, dyskinetic, ataxic-hypotonic) and nonambulatory motor status (GMFCS levels IV-V).
- Classification systems (neurologic subtype, GMFCS) are valuable for understanding comorbidity distribution in CP.
Objective:
Utilizing a population-based registry, the burden of comorbidity was ascertained in a sample of children with cerebral palsy and stratified according to both neurologic subtype and functional capability with respect to gross motor skills.
Methods:
The Quebec Cerebral Palsy Registry was utilized to identify children over a 4-year birth interval (1999-2002 inclusive) with cerebral palsy. Information on neurologic subtype classified according to the qualitative nature and topographic distribution of the motor impairment on neurologic examination, Gross Motor Function Classification System (GMFCS) categorization of motor skills, and the presence of certain comorbidities (cortical blindness, auditory limitations, nonverbal communication skills, gavage feeding status, and coexisting afebrile seizures in the prior 12 months) was obtained.
Results:
The frequency of individual comorbidities, their proportional distribution, and mean number of occurrences basically falls into a significant dichotomous distribution. Across the spectrum of comorbidities considered, these comorbidities are relatively infrequently encountered in those with spastic hemiplegic or spastic diplegic variants or ambulatory GMFCS status (levels I-III), while these entities occur at a frequent level for those with spastic quadriplegic, dyskinetic, or ataxic-hypotonic variants or nonambulatory GMFCS status (levels IV and V).
Conclusion:
The enhanced burdens of comorbidity are unevenly distributed in children with cerebral palsy in a manner that can be associated with either a specific neurologic subtype (spastic quadriplegic, dyskinetic, ataxic-hypotonic) or nonambulatory motor status (Gross Motor Function Classification System levels IV and V). This provides enhanced value to the utilization of these classification approaches.
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