Developmental MRI markers cosegregate juvenile patients with myoclonic epilepsy and their healthy siblings

Author:

Wandschneider Britta,Hong Seok-Jun,Bernhardt Boris C.,Fadaie Fatemeh,Vollmar Christian,Koepp Matthias J.,Bernasconi Neda,Bernasconi Andrea

Abstract

ObjectiveMRI studies of genetic generalized epilepsies have mainly described group-level changes between patients and healthy controls. To determine the endophenotypic potential of structural MRI in juvenile myoclonic epilepsy (JME), we examined MRI-based cortical morphologic markers in patients and their healthy siblings.MethodsIn this prospective, cross-sectional study, we obtained 3T MRI in patients with JME, siblings, and controls. We mapped sulco-gyral complexity and surface area, morphologic markers of brain development, and cortical thickness. Furthermore, we calculated mean geodesic distance, a surrogate marker of cortico-cortical connectivity.ResultsCompared to controls, patients and siblings showed increased folding complexity and surface area in prefrontal and cingulate cortices. In these regions, they also displayed abnormally increased geodesic distance, suggesting network isolation and decreased efficiency, with strongest effects for limbic, fronto-parietal, and dorsal-attention networks. In areas of findings overlap, we observed strong patient–sibling correlations. Conversely, neocortical thinning was present in patients only and related to disease duration. Patients showed subtle impairment in mental flexibility, a frontal lobe function test, as well as deficits in naming and design learning. Siblings' performance fell between patients and controls.ConclusionMRI markers of brain development and connectivity are likely heritable and may thus serve as endophenotypes. The topography of morphologic anomalies and their abnormal structural network integration likely explains cognitive impairments in patients with JME and their siblings. By contrast, cortical atrophy likely represents a marker of disease.

Publisher

Ovid Technologies (Wolters Kluwer Health)

Subject

Neurology (clinical)

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1. Sodium valproate is associated with cortical thinning of disease-specific areas in juvenile myoclonic epilepsy;Journal of Neurology, Neurosurgery & Psychiatry;2024-07-23

2. Potential of brain MRI in the diagnosis of Juvenile Myoclonic Epilepsy: An overview;2024 IEEE 7th International Conference on Advanced Technologies, Signal and Image Processing (ATSIP);2024-07-11

3. Cognitive impairment in patients with juvenile myoclonic epilepsy;Epilepsy and paroxysmal conditions;2024-04-16

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5. Sodium Valproate Modulates Cortical Morphology in Juvenile Myoclonic Epilepsy;2024-01-10

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