Literature DB >> 32015766

Variation of functional brain connectivity in epileptic seizures: an EEG analysis with cross-frequency phase synchronization.

Haitao Yu1, Lin Zhu1, Lihui Cai1, Jiang Wang1, Chen Liu1, Nan Shi2, Jing Liu2.   

Abstract

Frequency coupling in nervous system is believed to be associated with normal and impaired brain functions. However, most of the existing experiments have been concentrated on the coupling strength within frequency bands, while the coupling strength between different bands is ignored. In this work, we apply phase synchronization index (PSI) to investigate the cross-frequency coupling (CFC) of Electroencephalogram (EEG) signals. The PSI matrixes for the multi-channel EEG signals are calculated from interictal to ictal period in each sliding time window. The results show that CFC changes obviously once seizure occurs between the different bands, and such alteration is earlier than the appearance of clinical symptoms in seizure. Considering the similar role of the within-frequency coupling (WFC), we further reconstruct multi-layered brain networks, including CFC networks and WFC networks. The graph metrics are applied to investigate the variation of network structure of the epileptic brain. Significant decreases/increases of the local/global efficiency are found in δ-β, δ-α, θ-α and δ-θ bands from the CFC network, while WFC network shows a significant decline in the local efficiency in θ and α bands. These findings suggest that CFC may provide a new perspective to observe the alteration of brain structure when seizure occurs, and the investigation of functional connectivity across the full frequency spectrum can give us a deeper understanding of epileptic brains. © Springer Nature B.V. 2019.

Entities:  

Keywords:  Cross-frequency coupling; Epilepsy; Functional brain network; Phase synchronization index; Synchronization

Year:  2019        PMID: 32015766      PMCID: PMC6973936          DOI: 10.1007/s11571-019-09551-y

Source DB:  PubMed          Journal:  Cogn Neurodyn        ISSN: 1871-4080            Impact factor:   5.082


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