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Updated: Aug 19, 2026

Electromagnetic Source Imaging in Presurgical Evaluation of Children with Drug-Resistant Epilepsy
Published on: September 20, 2024
[Imaging in paediatric epilepsy]
1Hôpital universitaire des enfants Reine-Fabiola, 15, avenue J.J.-Crocq, 1020 Bruxelles, Belgique. gretel.guissard@huderf.be
Insights
Pediatric epilepsy diagnosis often requires brain imaging, with MRI being the preferred method for identifying causes like malformations or lesions. Imaging guides treatment and prognosis for children with epilepsy.
Area of Science:
- Neurology
- Pediatric Neurology
- Medical Imaging
Background:
- Epilepsy affects 0.5-1% of children under 16.
- The 2001 International League Against Epilepsy (ILEA) classification considers genetics and seizure types.
- Imaging indications vary based on epilepsy presentation and clinical context.
Purpose of the Study:
- To outline the role and indications of neuroimaging in pediatric epilepsy.
- To detail the utility of MRI and CT scans in diagnosing epilepsy causes.
- To emphasize how imaging guides therapeutic management and prognosis.
Main Methods:
- Review of current classification systems for pediatric epilepsy.
- Comparison of MRI and CT scan sensitivity and applications.
- Discussion of specific imaging sequences like diffusion-weighted imaging.
Main Results:
- Imaging is indicated in most pediatric epilepsy cases, except for simple febrile seizures or benign idiopathic epilepsy.
- Common causes identified by imaging include malformations, hypoxic-ischemic lesions, trauma, infections, metabolic diseases, and tumors.
- MRI is superior to CT for detecting underlying causes, with diffusion-weighted imaging useful in acute settings.
Conclusions:
- Neuroimaging, particularly MRI, is crucial for diagnosing symptomatic pediatric epilepsy.
- Imaging helps determine the nature and extent of epileptogenic lesions, guiding treatment.
- MRI also aids in monitoring seizure consequences and establishing prognosis.
Abstract:
Epilepsy is a chronic disease, often with an onset during childhood and characterized by spontaneous and recurrent seizures. It concerns 0.5-1% of children under 16 years of age. A classification proposed by the International League Against Epilepsy (ILEA) in 2001 takes into account recent genetic factors involved in epilepsy and attenuates the sharp demarcation between generalized and partial seizures. This classification tends to define whether imaging is indicated or not. Imaging is useless in simple cases of fits associated with hyperthermia and in benign idiopathic epilepsy. It is debated if it is a first episode of epilepsy without a particular context and no neurological signs. In all other cases of epilepsy in children, imaging is indicated. In descending order of frequency the possible causes include malformations (as abnormal gyral development and phakomatoses), hypoxic-ischemic lesions, non-accidental injuries, infections, metabolic diseases and tumors. Being much more sensitive than computed tomography (CT), magnetic resonance imaging (MRI) is the technique of choice to identify an underlying cause in symptomatic epilepsy. Clinical data are mandatory in order to direct a proper MRI investigation. The recently developed diffusion-weighted sequence is particularly useful in the acute phase of certain events such as hypoxia-ischemia, trauma and metabolic disease. CT scan is used in emergency situations and also as a complement to MRI for example to identify calcified lesions. In this way, imaging contributes to establish the nature and define the extension of epileptogenic lesions, thereby guiding therapeutic management. MRI also allows follow-up of the consequences of repeated seizures (such as mesial temporal sclerosis and selective neuronal necrosis) on the cerebral parenchyma and plays a role in the establishment of a prognosis.
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