Breakdown of thalamo-cortical connectivity precedes spike generation in focal epilepsies

  • Electroencephalography (EEG) spikes and focal epileptic seizures are generated in circumscribed cerebral networks that have been insufficiently described. For precise time and spatial domain network characterization, we applied in patients with focal epilepsy dense array 256-channel EEG recordings with causal connectivity estimation by using time-resolved partial directed coherence and 3T-magnetic resonance imaging-derived cortical and thalamus integrity reconstruction. Before spike generation, significant theta and alpha bands driven information flows alterations were noted from both temporal and frontal lobes to the thalamus and from the thalamus to the frontal lobe. Medial dorsal and ventral anterior nuclei of the thalamus were delimited as possible pacemakers. Markedly reduced thalamic volumes and impaired cortical integrity in widespread areas predicted the altered information flows. Our data reveal distinct patterns of connectivity involving the thalamus and frontal cortex thatElectroencephalography (EEG) spikes and focal epileptic seizures are generated in circumscribed cerebral networks that have been insufficiently described. For precise time and spatial domain network characterization, we applied in patients with focal epilepsy dense array 256-channel EEG recordings with causal connectivity estimation by using time-resolved partial directed coherence and 3T-magnetic resonance imaging-derived cortical and thalamus integrity reconstruction. Before spike generation, significant theta and alpha bands driven information flows alterations were noted from both temporal and frontal lobes to the thalamus and from the thalamus to the frontal lobe. Medial dorsal and ventral anterior nuclei of the thalamus were delimited as possible pacemakers. Markedly reduced thalamic volumes and impaired cortical integrity in widespread areas predicted the altered information flows. Our data reveal distinct patterns of connectivity involving the thalamus and frontal cortex that are both directly and causally involved in spike generation. These structures might play an essential role in epileptogenesis and could be targeted in future therapeutic approaches.show moreshow less

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Metadaten
Author:Vitalie Chiosa, Stanislav A. Groppa, Dumitru Ciolac, Nabin Koirala, Liudmila Mişina, Yaroslav Winter, Maria Moldovanu, Muthuraman MuthuramanORCiDGND, Sergiu Groppa
Frontdoor URLhttps://opus.bibliothek.uni-augsburg.de/opus4/110035
ISSN:2158-0014OPAC
ISSN:2158-0022OPAC
Parent Title (English):Brain Connectivity
Publisher:Mary Ann Liebert
Place of publication:New Rochelle, NY
Type:Article
Language:English
Year of first Publication:2017
Release Date:2023/12/11
Tag:General Neuroscience
Volume:7
Issue:5
First Page:309
Last Page:320
DOI:https://doi.org/10.1089/brain.2017.0487
Institutes:Fakultät für Angewandte Informatik
Fakultät für Angewandte Informatik / Institut für Informatik
Fakultät für Angewandte Informatik / Institut für Informatik / Professur für Informatik in der Medizintechnik
Dewey Decimal Classification:0 Informatik, Informationswissenschaft, allgemeine Werke / 00 Informatik, Wissen, Systeme / 004 Datenverarbeitung; Informatik