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Interdependence of clinical factors predicting cognition in children with tuberous sclerosis complex
I E Overwater1,2, B J H Verhaar1,2, H F Lingsma3
1Department of Neurology, Erasmus University Medical Centre, PO Box 2060, 3000 CB, Rotterdam, The Netherlands.
Insights
Predicting cognitive development in tuberous sclerosis complex (TSC) is crucial. Early seizure onset is the only independent predictor of cognitive outcomes in TSC patients, highlighting its importance for early intervention and support.
Area of Science:
- Neuroscience
- Developmental Pediatrics
- Genetics
Background:
- Cognitive development in tuberous sclerosis complex (TSC) is highly variable.
- Identifying early predictors is essential for parental counseling and developmental support.
Purpose of the Study:
- To confirm previously reported independent predictors of cognitive development in TSC.
- To identify key factors influencing cognitive outcomes in young TSC patients.
Main Methods:
- Retrospective analysis of data from 102 TSC patients up to 24 months of age.
- Cognitive development assessed using age-appropriate tests (median age 8.2 years).
- Univariable and multivariable regression analyses performed on epilepsy, motor development, and mutation status.
Main Results:
- Univariable analysis showed infantile spasms, polypharmacy, specific antiepileptic drug use, corticosteroid treatment, and delayed independent walking predicted lower cognitive scores.
- Older age at seizure onset predicted higher cognitive scores.
- Multivariable analysis revealed age at seizure onset as the sole independent predictor of cognitive development, explaining 28% of the variance.
Conclusions:
- Age at seizure onset is the most significant independent predictor of cognitive development in tuberous sclerosis complex.
- These findings can guide clinicians and parents in providing targeted support and educational planning for TSC patients.
Abstract:
Cognitive development in patients with tuberous sclerosis complex is highly variable. Predictors in the infant years would be valuable to counsel parents and to support development. The aim of this study was to confirm factors that have been reported to be independently correlated with cognitive development. 102 patients included in this study were treated at the ENCORE-TSC expertise center of the Erasmus Medical Center-Sophia Children's Hospital. Data from the first 24 months of life were used, including details on epilepsy, motor development and mutation status. Outcome was defined as cognitive development (intellectual equivalent, IE) as measured using tests appropriate to the patients age and cognitive abilities (median age at testing 8.2 years, IQR 4.7-12.0). Univariable and multivariable regression analyses were used. In a univariable analysis, predictors of lower IE were: the presence of infantile spasms (β = -18.3, p = 0.000), a larger number of antiepileptic drugs used (β = -6.3, p = 0.000), vigabatrin not used as first drug (β = -14.6, p = 0.020), corticosteroid treatment (β = -33.2, p = 0.005), and a later age at which the child could walk independently (β = -2.1, p = 0.000). An older age at seizure onset predicted higher IE (β = 1.7, p = 0.000). In a multivariable analysis, only age at seizure onset was significantly correlated to IE (β = 1.2, p = 0.005), contributing to 28% of the variation in IE. In our cohort, age at seizure onset was the only variable that independently predicted IE. Factors predicting cognitive development could aid parents and physicians in finding the appropriate support and schooling for these patients.
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