EEG-fMRI in awake rat and whole-brain simulations show decreased brain responsiveness to sensory stimulations during absence seizures
In patients suffering absence epilepsy, recurring seizures can significantly decrease their quality of life and lead to yet untreatable comorbidities. Absence seizures are characterized by spike-and-wave discharges on the electroencephalogram associated with a transient alteration of consciousness....
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| Main Authors: | , , , , , , , , , |
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eLife Sciences Publications Ltd
2024-07-01
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| Online Access: | https://elifesciences.org/articles/90318 |
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| author | Petteri Stenroos Isabelle Guillemain Federico Tesler Olivier Montigon Nora Collomb Vasile Stupar Alain Destexhe Veronique Coizet Olivier David Emmanuel L Barbier |
| author_facet | Petteri Stenroos Isabelle Guillemain Federico Tesler Olivier Montigon Nora Collomb Vasile Stupar Alain Destexhe Veronique Coizet Olivier David Emmanuel L Barbier |
| author_sort | Petteri Stenroos |
| collection | DOAJ |
| container_title | eLife |
| description | In patients suffering absence epilepsy, recurring seizures can significantly decrease their quality of life and lead to yet untreatable comorbidities. Absence seizures are characterized by spike-and-wave discharges on the electroencephalogram associated with a transient alteration of consciousness. However, it is still unknown how the brain responds to external stimuli during and outside of seizures. This study aimed to investigate responsiveness to visual and somatosensory stimulation in Genetic Absence Epilepsy Rats from Strasbourg (GAERS), a well-established rat model for absence epilepsy. Animals were imaged under non-curarized awake state using a quiet, zero echo time, functional magnetic resonance imaging (fMRI) sequence. Sensory stimulations were applied during interictal and ictal periods. Whole-brain hemodynamic responses were compared between these two states. Additionally, a mean-field simulation model was used to explain the changes of neural responsiveness to visual stimulation between states. During a seizure, whole-brain responses to both sensory stimulations were suppressed and spatially hindered. In the cortex, hemodynamic responses were negatively polarized during seizures, despite the application of a stimulus. The mean-field simulation revealed restricted propagation of activity due to stimulation and agreed well with fMRI findings. Results suggest that sensory processing is hindered or even suppressed by the occurrence of an absence seizure, potentially contributing to decreased responsiveness during this absence epileptic process. |
| format | Article |
| id | doaj-art-e9f3bb85f044470aa8ea39e9b16fb4b4 |
| institution | Directory of Open Access Journals |
| issn | 2050-084X |
| language | English |
| publishDate | 2024-07-01 |
| publisher | eLife Sciences Publications Ltd |
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| spelling | doaj-art-e9f3bb85f044470aa8ea39e9b16fb4b42025-08-19T22:52:30ZengeLife Sciences Publications LtdeLife2050-084X2024-07-011210.7554/eLife.90318EEG-fMRI in awake rat and whole-brain simulations show decreased brain responsiveness to sensory stimulations during absence seizuresPetteri Stenroos0https://orcid.org/0000-0002-4733-5014Isabelle Guillemain1Federico Tesler2https://orcid.org/0000-0001-5093-6913Olivier Montigon3Nora Collomb4Vasile Stupar5Alain Destexhe6https://orcid.org/0000-0001-7405-0455Veronique Coizet7https://orcid.org/0000-0001-5192-6610Olivier David8Emmanuel L Barbier9https://orcid.org/0000-0002-4952-1240University Grenoble Alpes, Inserm, U1216, Grenoble Institut Neurosciences, Grenoble, France; A.I. Virtanen Institute for Molecular Sciences, University of Eastern Finland, Kuopio, FinlandUniversity Grenoble Alpes, Inserm, U1216, Grenoble Institut Neurosciences, Grenoble, FranceParis-Saclay University, CNRS, Institut des Neurosciences (NeuroPSI), France, Saclay, FranceUniversity Grenoble Alpes, Inserm, U1216, Grenoble Institut Neurosciences, Grenoble, France; University Grenoble Alpes, Inserm, US17, CNRS, UAR 3552, CHU Grenoble Alpes, IRMaGe, Grenoble, FranceUniversity Grenoble Alpes, Inserm, US17, CNRS, UAR 3552, CHU Grenoble Alpes, IRMaGe, Grenoble, FranceUniversity Grenoble Alpes, Inserm, U1216, Grenoble Institut Neurosciences, Grenoble, France; University Grenoble Alpes, Inserm, US17, CNRS, UAR 3552, CHU Grenoble Alpes, IRMaGe, Grenoble, FranceParis-Saclay University, CNRS, Institut des Neurosciences (NeuroPSI), France, Saclay, FranceUniversity Grenoble Alpes, Inserm, U1216, Grenoble Institut Neurosciences, Grenoble, FranceUniversity Grenoble Alpes, Inserm, U1216, Grenoble Institut Neurosciences, Grenoble, France; Aix Marseille University, INSERM, INS, Inst Neurosci Syst, Marseille, FranceUniversity Grenoble Alpes, Inserm, U1216, Grenoble Institut Neurosciences, Grenoble, France; University Grenoble Alpes, Inserm, US17, CNRS, UAR 3552, CHU Grenoble Alpes, IRMaGe, Grenoble, FranceIn patients suffering absence epilepsy, recurring seizures can significantly decrease their quality of life and lead to yet untreatable comorbidities. Absence seizures are characterized by spike-and-wave discharges on the electroencephalogram associated with a transient alteration of consciousness. However, it is still unknown how the brain responds to external stimuli during and outside of seizures. This study aimed to investigate responsiveness to visual and somatosensory stimulation in Genetic Absence Epilepsy Rats from Strasbourg (GAERS), a well-established rat model for absence epilepsy. Animals were imaged under non-curarized awake state using a quiet, zero echo time, functional magnetic resonance imaging (fMRI) sequence. Sensory stimulations were applied during interictal and ictal periods. Whole-brain hemodynamic responses were compared between these two states. Additionally, a mean-field simulation model was used to explain the changes of neural responsiveness to visual stimulation between states. During a seizure, whole-brain responses to both sensory stimulations were suppressed and spatially hindered. In the cortex, hemodynamic responses were negatively polarized during seizures, despite the application of a stimulus. The mean-field simulation revealed restricted propagation of activity due to stimulation and agreed well with fMRI findings. Results suggest that sensory processing is hindered or even suppressed by the occurrence of an absence seizure, potentially contributing to decreased responsiveness during this absence epileptic process.https://elifesciences.org/articles/90318EEG-fMRIabsence seizureGAERSawakesensory perceptionmean-field model |
| spellingShingle | Petteri Stenroos Isabelle Guillemain Federico Tesler Olivier Montigon Nora Collomb Vasile Stupar Alain Destexhe Veronique Coizet Olivier David Emmanuel L Barbier EEG-fMRI in awake rat and whole-brain simulations show decreased brain responsiveness to sensory stimulations during absence seizures EEG-fMRI absence seizure GAERS awake sensory perception mean-field model |
| title | EEG-fMRI in awake rat and whole-brain simulations show decreased brain responsiveness to sensory stimulations during absence seizures |
| title_full | EEG-fMRI in awake rat and whole-brain simulations show decreased brain responsiveness to sensory stimulations during absence seizures |
| title_fullStr | EEG-fMRI in awake rat and whole-brain simulations show decreased brain responsiveness to sensory stimulations during absence seizures |
| title_full_unstemmed | EEG-fMRI in awake rat and whole-brain simulations show decreased brain responsiveness to sensory stimulations during absence seizures |
| title_short | EEG-fMRI in awake rat and whole-brain simulations show decreased brain responsiveness to sensory stimulations during absence seizures |
| title_sort | eeg fmri in awake rat and whole brain simulations show decreased brain responsiveness to sensory stimulations during absence seizures |
| topic | EEG-fMRI absence seizure GAERS awake sensory perception mean-field model |
| url | https://elifesciences.org/articles/90318 |
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