Altered Dynamic Functional Network Connectivity in Frontal Lobe Epilepsy.
Adolescent
Adult
Brain
/ diagnostic imaging
Brain Mapping
Case-Control Studies
Cerebellum
/ diagnostic imaging
Epilepsy, Frontal Lobe
/ diagnostic imaging
Female
Functional Neuroimaging
Humans
Magnetic Resonance Imaging
Male
Middle Aged
Neural Pathways
/ diagnostic imaging
Seizures
/ diagnostic imaging
Young Adult
Double regression
Dynamic functional network connectivity
Dynamic functional state interaction
Frontal lobe epilepsy
Resting-state fMRI
Journal
Brain topography
ISSN: 1573-6792
Titre abrégé: Brain Topogr
Pays: United States
ID NLM: 8903034
Informations de publication
Date de publication:
05 2019
05 2019
Historique:
received:
13
05
2018
accepted:
10
09
2018
pubmed:
27
9
2018
medline:
7
9
2019
entrez:
27
9
2018
Statut:
ppublish
Résumé
Frontal lobe epilepsy has recently been associated with disrupted brain functional connectivity; variations among various resting-state networks (RSNs) across time remains largely unclear. This study applied dynamic functional network connectivity (dFNC) analysis to investigate functional patterns in the temporal and spatial domains of various functional systems in FLE. Resting-state fMRI data were acquired from 19 FLE patients and 18 controls. Independent component analysis was used to decompose RSNs, which were grouped into seven functional systems. Sliding windows and clustering approach were used to identify the dFNC patterns. Then, state-specific connectivity pattern and dynamic functional state interactions (dFSIs) were evaluated. Compared with healthy controls, FLE patients exhibited decreased dFNC in almost all four patterns, changes that were mostly related to the frontoparietal system, suggesting a disturbed communication of the frontoparietal system with other systems in FLE. Additionally, regarding the fundamental connectivity pattern (state 3 in this study), FLE showed decreased time spent in this state. Moreover, the duration positively correlated with seizure onset. Furthermore, significantly reduced dynamic connections in this state were observed in the frontoparietal system linked to the cerebellar and subcortical systems. These findings imply abnormal fundamental dynamic interactions and dysconnectivity associated with the subcortical and cerebellar regulation of dysfunctions in frontoparietal regions in FLE. Finally, based on the developed FSI analysis, temporal dynamic abnormalities among states were observed in FLE. Therefore, this altered dynamic FNC extended our understanding of the abnormalities in the frontoparietal system in FLE. The dynamic FNC provided novel insight into the fundamental pathophysiological mechanisms in FLE.
Identifiants
pubmed: 30255350
doi: 10.1007/s10548-018-0678-z
pii: 10.1007/s10548-018-0678-z
doi:
Types de publication
Journal Article
Research Support, Non-U.S. Gov't
Langues
eng
Sous-ensembles de citation
IM