Topological abnormality of structural covariance network in MRI-negative frontal lobe epilepsy

Frontal lobe epilepsy (FLE) is the second most common type of focal epilepsy, however, imaging studies of FLE have been far less than Temporal lobe epilepsy (TLE) and the structural findings were not consistent in previous literature. Investigate the changes in cortical thickness in patients with FL...

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Veröffentlicht in:Frontiers in neuroscience 2023-05, Vol.17, p.1136110-1136110
Hauptverfasser: Liu, Yin, Li, Quanji, Yi, Dali, Duan, Junhong, Zhang, Qingxia, Huang, Yunchen, He, Haibo, Liao, Yunjie, Song, Zhi, Deng, Lingling, Wang, Wei, Liu, Ding
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Sprache:eng
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Zusammenfassung:Frontal lobe epilepsy (FLE) is the second most common type of focal epilepsy, however, imaging studies of FLE have been far less than Temporal lobe epilepsy (TLE) and the structural findings were not consistent in previous literature. Investigate the changes in cortical thickness in patients with FLE and the alteration of the structural covariance networks (SCNs) of cortical thickness with graph-theory. Thirty patients with FLE (18 males/12 females; 28.33 ± 11.81 years) and 27 demographically matched controls (15 males/12 females; 29.22 ± 9.73 years) were included in this study with high-resolution structural brain MRI scans. The cortical thickness was calculated, and structural covariance network (SCN) of cortical thickness were reconstructed using 68 × 68 matrix and analyzed with graph-theory approach. Cortical thickness was not significantly different between two groups, but path length and node betweenness were significantly increased in patients with FLE, and the regional network alterations were significantly changed in right precentral gyrus and right temporal pole (FDR corrected,  
ISSN:1662-4548
1662-453X
1662-453X
DOI:10.3389/fnins.2023.1136110