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Human interictal epileptiform discharges are bidirectional traveling waves echoing ictal discharges

Interictal epileptiform discharges (IEDs), also known as interictal spikes, are large intermittent electrophysiological events observed between seizures in patients with epilepsy. Although they occur far more often than seizures, IEDs are less studied, and their relationship to seizures remains uncl...

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Autores principales: Smith, Elliot H, Liou, Jyun-you, Merricks, Edward M, Davis, Tyler, Thomson, Kyle, Greger, Bradley, House, Paul, Emerson, Ronald G, Goodman, Robert, McKhann, Guy M, Sheth, Sameer, Schevon, Catherine, Rolston, John D
Formato: Online Artículo Texto
Lenguaje:English
Publicado: eLife Sciences Publications, Ltd 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8813051/
https://www.ncbi.nlm.nih.gov/pubmed/35050851
http://dx.doi.org/10.7554/eLife.73541
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author Smith, Elliot H
Liou, Jyun-you
Merricks, Edward M
Davis, Tyler
Thomson, Kyle
Greger, Bradley
House, Paul
Emerson, Ronald G
Goodman, Robert
McKhann, Guy M
Sheth, Sameer
Schevon, Catherine
Rolston, John D
author_facet Smith, Elliot H
Liou, Jyun-you
Merricks, Edward M
Davis, Tyler
Thomson, Kyle
Greger, Bradley
House, Paul
Emerson, Ronald G
Goodman, Robert
McKhann, Guy M
Sheth, Sameer
Schevon, Catherine
Rolston, John D
author_sort Smith, Elliot H
collection PubMed
description Interictal epileptiform discharges (IEDs), also known as interictal spikes, are large intermittent electrophysiological events observed between seizures in patients with epilepsy. Although they occur far more often than seizures, IEDs are less studied, and their relationship to seizures remains unclear. To better understand this relationship, we examined multi-day recordings of microelectrode arrays implanted in human epilepsy patients, allowing us to precisely observe the spatiotemporal propagation of IEDs, spontaneous seizures, and how they relate. These recordings showed that the majority of IEDs are traveling waves, traversing the same path as ictal discharges during seizures, and with a fixed direction relative to seizure propagation. Moreover, the majority of IEDs, like ictal discharges, were bidirectional, with one predominant and a second, less frequent antipodal direction. These results reveal a fundamental spatiotemporal similarity between IEDs and ictal discharges. These results also imply that most IEDs arise in brain tissue outside the site of seizure onset and propagate toward it, indicating that the propagation of IEDs provides useful information for localizing the seizure focus.
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spelling pubmed-88130512022-02-04 Human interictal epileptiform discharges are bidirectional traveling waves echoing ictal discharges Smith, Elliot H Liou, Jyun-you Merricks, Edward M Davis, Tyler Thomson, Kyle Greger, Bradley House, Paul Emerson, Ronald G Goodman, Robert McKhann, Guy M Sheth, Sameer Schevon, Catherine Rolston, John D eLife Computational and Systems Biology Interictal epileptiform discharges (IEDs), also known as interictal spikes, are large intermittent electrophysiological events observed between seizures in patients with epilepsy. Although they occur far more often than seizures, IEDs are less studied, and their relationship to seizures remains unclear. To better understand this relationship, we examined multi-day recordings of microelectrode arrays implanted in human epilepsy patients, allowing us to precisely observe the spatiotemporal propagation of IEDs, spontaneous seizures, and how they relate. These recordings showed that the majority of IEDs are traveling waves, traversing the same path as ictal discharges during seizures, and with a fixed direction relative to seizure propagation. Moreover, the majority of IEDs, like ictal discharges, were bidirectional, with one predominant and a second, less frequent antipodal direction. These results reveal a fundamental spatiotemporal similarity between IEDs and ictal discharges. These results also imply that most IEDs arise in brain tissue outside the site of seizure onset and propagate toward it, indicating that the propagation of IEDs provides useful information for localizing the seizure focus. eLife Sciences Publications, Ltd 2022-01-20 /pmc/articles/PMC8813051/ /pubmed/35050851 http://dx.doi.org/10.7554/eLife.73541 Text en © 2022, Smith et al https://creativecommons.org/licenses/by/4.0/This article is distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use and redistribution provided that the original author and source are credited.
spellingShingle Computational and Systems Biology
Smith, Elliot H
Liou, Jyun-you
Merricks, Edward M
Davis, Tyler
Thomson, Kyle
Greger, Bradley
House, Paul
Emerson, Ronald G
Goodman, Robert
McKhann, Guy M
Sheth, Sameer
Schevon, Catherine
Rolston, John D
Human interictal epileptiform discharges are bidirectional traveling waves echoing ictal discharges
title Human interictal epileptiform discharges are bidirectional traveling waves echoing ictal discharges
title_full Human interictal epileptiform discharges are bidirectional traveling waves echoing ictal discharges
title_fullStr Human interictal epileptiform discharges are bidirectional traveling waves echoing ictal discharges
title_full_unstemmed Human interictal epileptiform discharges are bidirectional traveling waves echoing ictal discharges
title_short Human interictal epileptiform discharges are bidirectional traveling waves echoing ictal discharges
title_sort human interictal epileptiform discharges are bidirectional traveling waves echoing ictal discharges
topic Computational and Systems Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8813051/
https://www.ncbi.nlm.nih.gov/pubmed/35050851
http://dx.doi.org/10.7554/eLife.73541
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