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Hypothalamic hamartoma: epilepsy and neurodevelopmental profiles in a clinical cohort
Clair Pridmore1, Felice D'Arco2, Varsha Siyani2
1Women’s and Children’s Hospital (WCH), 72 King William Road, North Adelaide 5006, Australia
Insights
Children with hypothalamic hamartoma (HH) have a high prevalence of epilepsy and neurodevelopmental disorders, including autism. The hamartoma
Area of Science:
- Pediatric Neurology
- Neurodevelopmental Disorders
- Epilepsy Research
Background:
- Hypothalamic hamartoma (HH) is a rare brain malformation.
- Associated neurodevelopmental disorders and epilepsy present significant challenges.
Purpose of the Study:
- Determine epilepsy and neurodevelopmental disorder prevalence in children with HH.
- Explore links between neurodevelopmental comorbidities and epilepsy.
- Assess the predictive value of hamartoma structural characteristics.
Main Methods:
- Retrospective cohort study of 62 children with HH.
- Analysis of neuroimaging, clinical records, and cognitive/language data.
- Review of MRI scans from 2008-2018.
Main Results:
- High prevalence of epilepsy (56%) and autism (19%) observed.
- Neurodevelopmental disorders and autistic features often preceded or occurred independently of seizures.
- Hamartoma structural characteristics correlated significantly with epilepsy and neurodevelopmental comorbidities.
Conclusions:
- HH structural characteristics are likely primary determinants of epilepsy and neurodevelopmental profiles.
- Epilepsy, neurodevelopmental impairment, and HH may indicate an underlying genetic aetiology.
- Atypical neurodevelopmental profiles in HH may represent a developmental and epileptic encephalopathy.
Objective:
We aimed to determine the prevalence of epilepsy and neurodevelopmental disorders, including autism spectrum disorder, in children and adolescents with hypothalamic hamartoma (HH). We also sought to explore the relationship between these neurodevelopmental comorbidities and epilepsy and to establish the predictive value of structural characteristics of the hamartoma itself.
Methods:
We retrospectively studied a cohort of 62 children with HH, with neuroimaging reviewed at Great Ormond Street Hospital (GOSH) between 2008 and 2018. Clinical records were reviewed, cognitive and language data analysed, and MRI scans studied.
Results:
We confirmed a high burden of epilepsy (56%), autism (19%) and other neurodevelopmental disorders. Although rates of some neurodevelopmental disorders were significantly higher in those with epilepsy, autistic features and/or early developmental concerns often predated the onset of seizures, in particular generalized seizures, or occurred independently of seizures. We found a significant correlation between certain structural characteristics of the hamartoma itself and both epilepsy and certain neurodevelopmental comorbidities.
Significance:
These findings suggest that although seizure burden clearly contributes to the cognitive and behavioural phenotypes seen, the hamartoma itself, and particular characteristics of it, are likely to be primary determinants of both the epilepsy and neurodevelopmental profiles. It is also probable that the underlying aetiology, likely genetic, directly contributes to the clinical profile, with epilepsy, neurodevelopmental impairment and the hamartoma itself representing markers of this aetiology. We propose that atypical neurodevelopmental profiles in HH could best be conceptualized as a developmental and epileptic encephalopathy. These findings have implications for counselling, monitoring and treatment.
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