Literature DB >> 32814957

White matter abnormalities across different epilepsy syndromes in adults: an ENIGMA-Epilepsy study.

Sean N Hatton1, Khoa H Huynh2, Leonardo Bonilha3, Eugenio Abela4, Saud Alhusaini5,6, Andre Altmann7, Marina K M Alvim8, Akshara R Balachandra9,10, Emanuele Bartolini11,12, Benjamin Bender13, Neda Bernasconi14, Andrea Bernasconi14, Boris Bernhardt15, Núria Bargallo16, Benoit Caldairou14, Maria E Caligiuri17, Sarah J A Carr18, Gianpiero L Cavalleri19,20, Fernando Cendes8, Luis Concha21, Esmaeil Davoodi-Bojd22, Patricia M Desmond23, Orrin Devinsky24, Colin P Doherty25,26, Martin Domin27, John S Duncan28,29, Niels K Focke30,31, Sonya F Foley32, Antonio Gambardella19,33, Ezequiel Gleichgerrcht3, Renzo Guerrini11, Khalid Hamandi34,35, Akari Ishikawa8, Simon S Keller36,37, Peter V Kochunov38, Raviteja Kotikalapudi39,40, Barbara A K Kreilkamp36,37, Patrick Kwan41,42, Angelo Labate17,33, Soenke Langner43,44, Matteo Lenge11,45, Min Liu46, Elaine Lui23,47, Pascal Martin31, Mario Mascalchi48, José C V Moreira8, Marcia E Morita-Sherman8,49, Terence J O'Brien41,42,50, Heath R Pardoe51, José C Pariente16, Letícia F Ribeiro8, Mark P Richardson52, Cristiane S Rocha8, Raúl Rodríguez-Cruces15,21, Felix Rosenow53,54, Mariasavina Severino55, Benjamin Sinclair42,50, Hamid Soltanian-Zadeh56,57, Pasquale Striano58,59, Peter N Taylor60, Rhys H Thomas61,62, Domenico Tortora56, Dennis Velakoulis63,64, Annamaria Vezzani65, Lucy Vivash41,42, Felix von Podewils66, Sjoerd B Vos67,68, Bernd Weber69, Gavin P Winston68,70,71, Clarissa L Yasuda8, Alyssa H Zhu72, Paul M Thompson72, Christopher D Whelan6,73, Neda Jahanshad72, Sanjay M Sisodiya71,74, Carrie R McDonald75.   

Abstract

The epilepsies are commonly accompanied by widespread abnormalities in cerebral white matter. ENIGMA-Epilepsy is a large quantitative brain imaging consortium, aggregating data to investigate patterns of neuroimaging abnormalities in common epilepsy syndromes, including temporal lobe epilepsy, extratemporal epilepsy, and genetic generalized epilepsy. Our goal was to rank the most robust white matter microstructural differences across and within syndromes in a multicentre sample of adult epilepsy patients. Diffusion-weighted MRI data were analysed from 1069 healthy controls and 1249 patients: temporal lobe epilepsy with hippocampal sclerosis (n = 599), temporal lobe epilepsy with normal MRI (n = 275), genetic generalized epilepsy (n = 182) and non-lesional extratemporal epilepsy (n = 193). A harmonized protocol using tract-based spatial statistics was used to derive skeletonized maps of fractional anisotropy and mean diffusivity for each participant, and fibre tracts were segmented using a diffusion MRI atlas. Data were harmonized to correct for scanner-specific variations in diffusion measures using a batch-effect correction tool (ComBat). Analyses of covariance, adjusting for age and sex, examined differences between each epilepsy syndrome and controls for each white matter tract (Bonferroni corrected at P < 0.001). Across 'all epilepsies' lower fractional anisotropy was observed in most fibre tracts with small to medium effect sizes, especially in the corpus callosum, cingulum and external capsule. There were also less robust increases in mean diffusivity. Syndrome-specific fractional anisotropy and mean diffusivity differences were most pronounced in patients with hippocampal sclerosis in the ipsilateral parahippocampal cingulum and external capsule, with smaller effects across most other tracts. Individuals with temporal lobe epilepsy and normal MRI showed a similar pattern of greater ipsilateral than contralateral abnormalities, but less marked than those in patients with hippocampal sclerosis. Patients with generalized and extratemporal epilepsies had pronounced reductions in fractional anisotropy in the corpus callosum, corona radiata and external capsule, and increased mean diffusivity of the anterior corona radiata. Earlier age of seizure onset and longer disease duration were associated with a greater extent of diffusion abnormalities in patients with hippocampal sclerosis. We demonstrate microstructural abnormalities across major association, commissural, and projection fibres in a large multicentre study of epilepsy. Overall, patients with epilepsy showed white matter abnormalities in the corpus callosum, cingulum and external capsule, with differing severity across epilepsy syndromes. These data further define the spectrum of white matter abnormalities in common epilepsy syndromes, yielding more detailed insights into pathological substrates that may explain cognitive and psychiatric co-morbidities and be used to guide biomarker studies of treatment outcomes and/or genetic research.
© The Author(s) (2020). Published by Oxford University Press on behalf of the Guarantors of Brain. All rights reserved. For permissions, please email: journals.permissions@oup.com.

Entities:  

Keywords:  diffusion tensor imaging; epilepsy; multisite analysis; white matter

Mesh:

Year:  2020        PMID: 32814957      PMCID: PMC7567169          DOI: 10.1093/brain/awaa200

Source DB:  PubMed          Journal:  Brain        ISSN: 0006-8950            Impact factor:   13.501


  65 in total

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