Cargando…

Endovascular Electroencephalogram Records Simultaneous Subdural Electrode-Detectable, Scalp Electrode-Undetectable Interictal Epileptiform Discharges

Introduction: We hypothesized that an endovascular electroencephalogram (eEEG) can detect subdural electrode (SDE)-detectable, scalp EEG-undetectable epileptiform discharges. The purpose of this study is, therefore, to measure SDE-detectable, scalp EEG-undetectable epileptiform discharges by an eEEG...

Descripción completa

Detalles Bibliográficos
Autores principales: Fujimoto, Ayataka, Matsumaru, Yuji, Masuda, Yosuke, Marushima, Aiki, Hosoo, Hisayuki, Araki, Kota, Ishikawa, Eiichi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8946704/
https://www.ncbi.nlm.nih.gov/pubmed/35326265
http://dx.doi.org/10.3390/brainsci12030309
_version_ 1784674256273014784
author Fujimoto, Ayataka
Matsumaru, Yuji
Masuda, Yosuke
Marushima, Aiki
Hosoo, Hisayuki
Araki, Kota
Ishikawa, Eiichi
author_facet Fujimoto, Ayataka
Matsumaru, Yuji
Masuda, Yosuke
Marushima, Aiki
Hosoo, Hisayuki
Araki, Kota
Ishikawa, Eiichi
author_sort Fujimoto, Ayataka
collection PubMed
description Introduction: We hypothesized that an endovascular electroencephalogram (eEEG) can detect subdural electrode (SDE)-detectable, scalp EEG-undetectable epileptiform discharges. The purpose of this study is, therefore, to measure SDE-detectable, scalp EEG-undetectable epileptiform discharges by an eEEG on a pig. Methods: A pig under general anesthesia was utilized to measure an artificially generated epileptic field by an eEEG that was able to be detected by an SDE, but not a scalp EEG as a primary outcome. We also compared the phase lag of each epileptiform discharge that was detected by the eEEG and SDE as a secondary outcome. Results: The eEEG electrode detected 113 (97%) epileptiform discharges (97% sensitivity). Epileptiform discharges that were localized within the three contacts (contacts two, three and four), but not spread to other parts, were detected by the eEEG with a 92% sensitivity. The latency between peaks of the eEEG and right SDE earliest epileptiform discharge ranged from 0 to 48 ms (mean, 13.3 ms; median, 11 ms; standard deviation, 9.0 ms). Conclusion: In a pig, an eEEG could detect epileptiform discharges that an SDE could detect, but that a scalp EEG could not.
format Online
Article
Text
id pubmed-8946704
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-89467042022-03-25 Endovascular Electroencephalogram Records Simultaneous Subdural Electrode-Detectable, Scalp Electrode-Undetectable Interictal Epileptiform Discharges Fujimoto, Ayataka Matsumaru, Yuji Masuda, Yosuke Marushima, Aiki Hosoo, Hisayuki Araki, Kota Ishikawa, Eiichi Brain Sci Communication Introduction: We hypothesized that an endovascular electroencephalogram (eEEG) can detect subdural electrode (SDE)-detectable, scalp EEG-undetectable epileptiform discharges. The purpose of this study is, therefore, to measure SDE-detectable, scalp EEG-undetectable epileptiform discharges by an eEEG on a pig. Methods: A pig under general anesthesia was utilized to measure an artificially generated epileptic field by an eEEG that was able to be detected by an SDE, but not a scalp EEG as a primary outcome. We also compared the phase lag of each epileptiform discharge that was detected by the eEEG and SDE as a secondary outcome. Results: The eEEG electrode detected 113 (97%) epileptiform discharges (97% sensitivity). Epileptiform discharges that were localized within the three contacts (contacts two, three and four), but not spread to other parts, were detected by the eEEG with a 92% sensitivity. The latency between peaks of the eEEG and right SDE earliest epileptiform discharge ranged from 0 to 48 ms (mean, 13.3 ms; median, 11 ms; standard deviation, 9.0 ms). Conclusion: In a pig, an eEEG could detect epileptiform discharges that an SDE could detect, but that a scalp EEG could not. MDPI 2022-02-24 /pmc/articles/PMC8946704/ /pubmed/35326265 http://dx.doi.org/10.3390/brainsci12030309 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Communication
Fujimoto, Ayataka
Matsumaru, Yuji
Masuda, Yosuke
Marushima, Aiki
Hosoo, Hisayuki
Araki, Kota
Ishikawa, Eiichi
Endovascular Electroencephalogram Records Simultaneous Subdural Electrode-Detectable, Scalp Electrode-Undetectable Interictal Epileptiform Discharges
title Endovascular Electroencephalogram Records Simultaneous Subdural Electrode-Detectable, Scalp Electrode-Undetectable Interictal Epileptiform Discharges
title_full Endovascular Electroencephalogram Records Simultaneous Subdural Electrode-Detectable, Scalp Electrode-Undetectable Interictal Epileptiform Discharges
title_fullStr Endovascular Electroencephalogram Records Simultaneous Subdural Electrode-Detectable, Scalp Electrode-Undetectable Interictal Epileptiform Discharges
title_full_unstemmed Endovascular Electroencephalogram Records Simultaneous Subdural Electrode-Detectable, Scalp Electrode-Undetectable Interictal Epileptiform Discharges
title_short Endovascular Electroencephalogram Records Simultaneous Subdural Electrode-Detectable, Scalp Electrode-Undetectable Interictal Epileptiform Discharges
title_sort endovascular electroencephalogram records simultaneous subdural electrode-detectable, scalp electrode-undetectable interictal epileptiform discharges
topic Communication
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8946704/
https://www.ncbi.nlm.nih.gov/pubmed/35326265
http://dx.doi.org/10.3390/brainsci12030309
work_keys_str_mv AT fujimotoayataka endovascularelectroencephalogramrecordssimultaneoussubduralelectrodedetectablescalpelectrodeundetectableinterictalepileptiformdischarges
AT matsumaruyuji endovascularelectroencephalogramrecordssimultaneoussubduralelectrodedetectablescalpelectrodeundetectableinterictalepileptiformdischarges
AT masudayosuke endovascularelectroencephalogramrecordssimultaneoussubduralelectrodedetectablescalpelectrodeundetectableinterictalepileptiformdischarges
AT marushimaaiki endovascularelectroencephalogramrecordssimultaneoussubduralelectrodedetectablescalpelectrodeundetectableinterictalepileptiformdischarges
AT hosoohisayuki endovascularelectroencephalogramrecordssimultaneoussubduralelectrodedetectablescalpelectrodeundetectableinterictalepileptiformdischarges
AT arakikota endovascularelectroencephalogramrecordssimultaneoussubduralelectrodedetectablescalpelectrodeundetectableinterictalepileptiformdischarges
AT ishikawaeiichi endovascularelectroencephalogramrecordssimultaneoussubduralelectrodedetectablescalpelectrodeundetectableinterictalepileptiformdischarges