Literature DB >> 33746727

Case Report: Aperiodic Fluctuations of Neural Activity in the Ictal MEG of a Child With Drug-Resistant Fronto-Temporal Epilepsy.

Saskia van Heumen1, Jeremy T Moreau1,2,3, Elisabeth Simard-Tremblay4, Steffen Albrecht5, Roy Wr Dudley2, Sylvain Baillet1.   

Abstract

Successful surgical treatment of patients with focal drug-resistant epilepsy remains challenging, especially in cases for which it is difficult to define the area of cortex from which seizures originate, the seizure onset zone (SOZ). Various diagnostic methods are needed to select surgical candidates and determine the extent of resection. Interictal magnetoencephalography (MEG) with source imaging has proven to be useful for presurgical evaluation, but the use of ictal MEG data remains limited. The purpose of the present study was to determine whether pre-ictal variations of spectral properties of neural activity from ictal MEG recordings are predictive of SOZ location.We performed a 4 h overnight MEG recording in an 8-year-old child with drug-resistant focal epilepsy of suspected right fronto-temporal origin and captured one ~45-s seizure. The patient underwent a right temporal resection from the anterior temporal neocortex and amygdala to the mid-posterior temporal neocortex, sparing the hippocampus proper. She remains seizure-free 21 months postoperatively. The histopathological assessment confirmed frank focal cortical dysplasia (FCD) type IIa in the MEG-defined SOZ, which was based on source imaging of averaged ictal spikes at seizure onset. We investigated temporal changes (inter-ictal, pre-ictal, and ictal periods) together with spatial differences (SOZ vs. control regions) in spectral parameters of background brain activity, namely the aperiodic broadband offset and slope, and assessed how they confounded the interpretation of apparent variations of signal power in typical electrophysiological bands. Our data show that the SOZ was associated with a higher aperiodic offset and exponent during the seizure compared to control regions. Both parameters increased in all regions from 2 min before the seizure onwards. Regions anatomically closer to the SOZ also expressed higher values compared to contralateral regions, potentially indicating ictal spread. We also show that narrow-band power changes were caused by these fluctuations in the aperiodic component of ongoing brain activity. Our results indicate that the broadband aperiodic component of ongoing brain activity cannot be reduced to background noise of no physiological interest, and rather may be indicative of the neuropathophysiology of the SOZ. We believe these findings will inspire future studies of ictal MEG cases and confirm their significance.
Copyright © 2021 van Heumen, Moreau, Simard-Tremblay, Albrecht, Dudley and Baillet.

Entities:  

Keywords:  MEG (magnetoencephalography); cortical networks; epilepsy; neural dynamics; pediatrics—children; seizure

Year:  2021        PMID: 33746727      PMCID: PMC7969518          DOI: 10.3389/fnhum.2021.646426

Source DB:  PubMed          Journal:  Front Hum Neurosci        ISSN: 1662-5161            Impact factor:   3.169


  3 in total

1.  Time-resolved parameterization of aperiodic and periodic brain activity.

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Journal:  Elife       Date:  2022-09-12       Impact factor: 8.713

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Authors:  Alex I Wiesman; Jason da Silva Castanheira; Sylvain Baillet
Journal:  Neuroimage       Date:  2021-12-16       Impact factor: 6.556

3.  Spatially resolved neural slowing predicts impairment and amyloid burden in Alzheimer's disease.

Authors:  Alex I Wiesman; Daniel L Murman; Rebecca A Losh; Mikki Schantell; Nicholas J Christopher-Hayes; Hallie J Johnson; Madelyn P Willett; Sara L Wolfson; Kathryn L Losh; Craig M Johnson; Pamela E May; Tony W Wilson
Journal:  Brain       Date:  2022-06-30       Impact factor: 15.255

  3 in total

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