J 2025

Human brain local field potential recordings during a battery of multilingual cognitive and eye-tracking tasks

CIMBÁLNÍK, Jan; J. S. GARCIA-SALINAS; N. HAMEDI; S. PRATHAPAGIRI; F. SARMIENTO RIVERA L. et. al.

Základní údaje

Originální název

Human brain local field potential recordings during a battery of multilingual cognitive and eye-tracking tasks

Autoři

CIMBÁLNÍK, Jan; J. S. GARCIA-SALINAS; N. HAMEDI; S. PRATHAPAGIRI; F. SARMIENTO RIVERA L.; M. GALANINA; J. DOLEZAL; Lenka JURKOVIČOVÁ ORCID; Pavel DANIEL ORCID; Martin KOJAN ORCID; Robert ROMAN ORCID; Martin PAIL; W. SREDNIAWA; W. FORTUNA; M. SLUZEWSKA-NIEDZWIEDZ; K. SMARZEWSKA; P. REINACHER; A. WEISER; T. SKOK; T. PIERNICKI; A. ORZOL; A. LIER; S. SEIFZADEH; Bozena KOSTEK; Andrzej CZYZEWSKI; Pawel TABAKOW; Milan BRÁZDIL a Michal T. KUCEWICZ

Vydání

Scientific Data, London, Springer Nature, 2025, 2052-4463

Další údaje

Jazyk

angličtina

Typ výsledku

Článek v odborném periodiku

Obor

30103 Neurosciences

Stát vydavatele

Německo

Utajení

není předmětem státního či obchodního tajemství

Odkazy

Impakt faktor

Impact factor: 6.900 v roce 2024

Organizační jednotka

Lékařská fakulta

UT WoS

001498580100014

EID Scopus

2-s2.0-105006825232

Klíčová slova anglicky

HIGH-FREQUENCY OSCILLATIONS; EEG

Štítky

Příznaky

Mezinárodní význam, Recenzováno
Změněno: 17. 6. 2025 14:15, Mgr. Eva Dubská

Anotace

V originále

Intracranial human brain recordings from multiple implanted depth electrodes using stereo-EEG (sEEG) technology for seizure localization provide unique local field potential signals (LFP) sampled with standard macro- and special micro-electrode contacts. Over one hundred macro- and micro-contact LFP signals localized in particular brain regions were recorded from each sEEG monitoring case as patients engaged in an automated battery of verbal memory and non-verbal gaze movement tasks. Subject eye and vocal responses in both visual and auditory task versions were automatically detected in Polish, Czech, and Slovak languages with accurate timing of the correct and incorrect verbal responses using our web-based transcription tool. The behavioral events, LFP and pupillometric signals were synchronized and stored in a standard BIDS data structure with corresponding metadata. Each dataset contains recordings from at least one battery task performed over at least one day. The same set of 180 common nouns in the three languages was used across different battery tasks and recording days to enable the analysis of selective responses to specific word stimuli.