The spectrum of structural and functional imaging abnormalities in temporal lobe epilepsy

下托 颞叶 海马硬化 海马结构 神经科学 癫痫 胶质增生 磁共振成像 心理学 磁共振弥散成像 萎缩 病理 医学 齿状回 放射科
作者
Boris C. Bernhardt,Andrea Bernasconi,Min Liu,Seok‐Jun Hong,Benoît Caldairou,Maged Goubran,Marie Christine Guiot,Jeff Hall,Neda Bernasconi
出处
期刊:Annals of Neurology [Wiley]
卷期号:80 (1): 142-153 被引量:149
标识
DOI:10.1002/ana.24691
摘要

Objective Although most temporal lobe epilepsy (TLE) patients show marked hippocampal sclerosis (HS) upon pathological examination, 40% present with no significant cell loss but gliotic changes only. To evaluate effects of hippocampal pathology on brain structure and functional networks, we aimed at dissociating multimodal magnetic resonance imaging (MRI) characteristics in patients with HS (TLE‐HS) and those with gliosis only (TLE‐G). Methods In 20 TLE‐HS, 19 TLE‐G, and 25 healthy controls, we carried out a novel MRI‐based hippocampal subfield surface analysis that integrated volume, T2 signal intensity, and diffusion markers with seed‐based hippocampal functional connectivity. Results Compared to controls, TLE‐HS presented with marked ipsilateral atrophy, T2 hyperintensity, and mean diffusivity increases across all subfields, whereas TLE‐G presented with dentate gyrus hypertrophy, focal increases in T2 intensity and mean diffusivity. Multivariate assessment confirmed a more marked ipsilateral load of anomalies across all subfields in TLE‐HS, whereas anomalies in TLE‐G were restricted to the subiculum. A between‐cohort dissociation was independently suggested by resting‐state functional connectivity analysis, revealing marked hippocampal decoupling from anterior and posterior default mode hubs in TLE‐HS, whereas TLE‐G did not differ from controls. Back‐projection connectivity analysis from cortical targets revealed consistently decreased network embedding across all subfields in TLE‐HS, while changes in TLE‐G were limited to the subiculum. Hippocampal disconnectivity strongly correlated to T2 hyperintensity and marginally to atrophy. Interpretation Multimodal MRI reveals diverging structural and functional connectivity profiles across the TLE spectrum. Pathology‐specific modulations of large‐scale functional brain networks lend novel evidence for a close interplay of structural and functional disruptions in focal epilepsy. Ann Neurol 2016;80:142–153
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