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Children with corpus callosum anomalies: clinical characteristics and developmental outcomes
Iwona Jańczewska1, Joanna Preis-Orlikowska2, Iwona Domżalska-Popadiuk2
1Department of Neonatology, Faculty of Medicine, Medical University of Gdansk, Gdansk, Poland. iwona.janczewska@gumed.edu.pl.
Insights
Agenesis of the corpus callosum (ACC) often presents with other brain and body anomalies. These additional issues are linked to developmental delays and a higher risk of epilepsy in affected children.
Area of Science:
- Neuroscience
- Genetics
- Pediatrics
Background:
- Corpus callosum abnormalities are diverse and challenging to diagnose and predict.
- Understanding associated syndromes and neurodevelopmental prognosis is crucial for parental counseling.
Purpose of the Study:
- To describe clinical characteristics, anomalies, and neurodevelopmental outcomes in children with agenesis of the corpus callosum (ACC).
- To identify factors associated with developmental delay and epilepsy in ACC patients.
Main Methods:
- Retrospective review of medical records of 51 neonates with ACC or hypoplasia over 17 years.
- Classification of patients based on isolated versus associated anomalies.
- Analysis of neuroimaging, genetic etiology, and neurodevelopmental outcomes.
Main Results:
- 66.6% of patients had associated cerebral and extracerebral anomalies.
- An identifiable genetic etiology was found in 23.5% of cases.
- Among 42 followed patients, 38% had severe developmental delay and 35.7% had epilepsy.
Conclusions:
- Callosal defects frequently co-occur with brain and somatic anomalies.
- Associated abnormalities significantly increase the risk of developmental delay and epilepsy.
- Recommendations for extended neuroimaging and genetic testing are provided to aid clinical practice.
Introduction:
Corpus callosum abnormalities are complex, aetiologically diverse, and clinically heterogeneous conditions. Counselling parents regarding their causes and associated syndromes, and predicting the neurodevelopmental and seizure risk prognosis, is challenging.
Material And Methods:
We describe the clinical characteristics, associated anomalies, and neurodevelopmental outcomes of children with agenesis of corpus callosum (ACC). Fifty-one neonates with ACC/hypoplasia of the corpus callosum were identified over a 17-year period, and their medical records were retrospectively reviewed.
Results:
Patients were classified into two groups depending on the presence or absence of associated abnormalities. The first group (17 patients, 33.4%) presented with isolated callosal anomalies. The second group included 34 patients (66.6%) with associated cerebral and extracerebral anomalies. We achieved an identifiable genetic aetiology in 23.5% of our cohort. Magnetic resonance imaging was performed in 28 patients (55%), and of these 39.3% had additional brain anomalies. During the study period, five patients died early in the neonatal period and four were lost to follow up. Of the 42 followed patients, 13 (31%) showed normal neurodevelopment, 13 (31%) showed mild delay, and 16 (38%) had a severe delay. Fifteen (35.7%) had epilepsy.
Conclusions And Clinical Implications:
We have confirmed that callosal defects are frequently accompanied by brain and somatic anomalies. Additional abnormalities were shown to be significantly associated with developmental delay and increased risk of epilepsy. We have highlighted essential clinical features that may provide diagnostic clues to physicians and we have given examples of underlying genetic disorders. We have provided recommendations about extended neuroimaging diagnostics and widespread genetic testing that may impact upon daily clinical practice. Paediatric neurologists may therefore use our findings to help base their decisions regarding this matter.
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