4.5 Article

Thalamic nuclei volumes and intrinsic thalamic network in patients with occipital lobe epilepsy

期刊

BRAIN AND BEHAVIOR
卷 13, 期 4, 页码 -

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WILEY
DOI: 10.1002/brb3.2968

关键词

epilepsies; magnetic resonance imaging; occipital lobe; thalamus

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This study investigated the alterations in individual thalamic nuclei volumes in patients with occipital lobe epilepsy compared with healthy controls, and analyzed the intrinsic thalamic network based on these volumes using graph theory. The results showed significant changes in the volumes of several thalamic nuclei in patients with OLE, especially increased volumes of the medial geniculate and suprageniculate nuclei, and decreased volumes of the parafascicular nuclei. These findings suggest the important role of the thalamus in the epileptic network of OLE.
IntroductionThis study aimed to investigate the alterations in individual thalamic nuclei volumes in patients with occipital lobe epilepsy (OLE) compared with those of healthy controls, and to analyze the intrinsic thalamic network based on these volumes using graph theory. MethodsThirty adult patients with newly diagnosed OLE and 42 healthy controls were retrospectively enrolled (mean age, 33.8 +/- 17.0 and 32.2 +/- 6.6 years, respectively). The study participants underwent brain magnetic resonance imaging with three-dimensional T1-weighted imaging. The right and left total thalamic and individual thalamic nuclei volumes were obtained using the FreeSurfer program. Then, the intrinsic thalamic network was calculated based on the individual thalamic nuclei volumes and graph theory using a BRAPH program. ResultsThere were no differences in the right and left whole-thalamic volumes between the two groups (0.445% vs. 0.469%, p = .142 and 0.481% vs. 0.490%, p = .575, respectively). However, significant differences were observed in the volumes of several thalamic nuclei between the two groups. The right medial geniculate and right suprageniculate nuclei volumes were increased (0.0077% vs. 0.0064%, p = .0003 and 0.0013% vs. 0.0010%, p = .0004, respectively), whereas the right and left parafascicular nuclei volumes were decreased in patients with OLE compared with those in healthy controls (0.0038% vs. 0.0048%, p < .0001 and 0.0037% vs. 0.0045%, p = .0001, respectively). There were no differences in the network measures regarding intrinsic thalamic network between the two groups. ConclusionWe successfully demonstrated the alterations in individual thalamic nuclei volumes, especially the increased medial geniculate and suprageniculate, and decreased parafascicular nuclei volumes in patients with OLE compared with those of healthy controls despite no changes in the whole-thalamic volumes. These findings suggest an important role of the thalamus in the epileptic network of OLE.

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