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Optogenetically Induced Seizure and the Longitudinal Hippocampal Network Dynamics
Epileptic seizure is a paroxysmal and self-limited phenomenon characterized by abnormal hypersynchrony of a large population of neurons. However, our current understanding of seizure dynamics is still limited. Here we propose a novel in vivo model of seizure-like afterdischarges using optogenetics,...
Autores principales: | , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Public Library of Science
2013
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3622611/ https://www.ncbi.nlm.nih.gov/pubmed/23593349 http://dx.doi.org/10.1371/journal.pone.0060928 |
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author | Osawa, Shin-ichiro Iwasaki, Masaki Hosaka, Ryosuke Matsuzaka, Yoshiya Tomita, Hiroshi Ishizuka, Toru Sugano, Eriko Okumura, Eiichi Yawo, Hiromu Nakasato, Nobukazu Tominaga, Teiji Mushiake, Hajime |
author_facet | Osawa, Shin-ichiro Iwasaki, Masaki Hosaka, Ryosuke Matsuzaka, Yoshiya Tomita, Hiroshi Ishizuka, Toru Sugano, Eriko Okumura, Eiichi Yawo, Hiromu Nakasato, Nobukazu Tominaga, Teiji Mushiake, Hajime |
author_sort | Osawa, Shin-ichiro |
collection | PubMed |
description | Epileptic seizure is a paroxysmal and self-limited phenomenon characterized by abnormal hypersynchrony of a large population of neurons. However, our current understanding of seizure dynamics is still limited. Here we propose a novel in vivo model of seizure-like afterdischarges using optogenetics, and report on investigation of directional network dynamics during seizure along the septo-temporal (ST) axis of hippocampus. Repetitive pulse photostimulation was applied to the rodent hippocampus, in which channelrhodopsin-2 (ChR2) was expressed, under simultaneous recording of local field potentials (LFPs). Seizure-like afterdischarges were successfully induced after the stimulation in both W-TChR2V4 transgenic (ChR2V-TG) rats and in wild type rats transfected with adeno-associated virus (AAV) vectors carrying ChR2. Pulse frequency at 10 and 20 Hz, and a 0.05 duty ratio were optimal for afterdischarge induction. Immunohistochemical c-Fos staining after a single induced afterdischarge confirmed neuronal activation of the entire hippocampus. LFPs were recorded during seizure-like afterdischarges with a multi-contact array electrode inserted along the ST axis of hippocampus. Granger causality analysis of the LFPs showed a bidirectional but asymmetric increase in signal flow along the ST direction. State space presentation of the causality and coherence revealed three discrete states of the seizure-like afterdischarge phenomenon: 1) resting state; 2) afterdischarge initiation with moderate coherence and dominant septal-to-temporal causality; and 3) afterdischarge termination with increased coherence and dominant temporal-to-septal causality. A novel in vivo model of seizure-like afterdischarge was developed using optogenetics, which was advantageous in its reproducibility and artifact-free electrophysiological observations. Our results provide additional evidence for the potential role of hippocampal septo-temporal interactions in seizure dynamics in vivo. Bidirectional networks work hierarchically along the ST hippocampus in the genesis and termination of epileptic seizures. |
format | Online Article Text |
id | pubmed-3622611 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2013 |
publisher | Public Library of Science |
record_format | MEDLINE/PubMed |
spelling | pubmed-36226112013-04-16 Optogenetically Induced Seizure and the Longitudinal Hippocampal Network Dynamics Osawa, Shin-ichiro Iwasaki, Masaki Hosaka, Ryosuke Matsuzaka, Yoshiya Tomita, Hiroshi Ishizuka, Toru Sugano, Eriko Okumura, Eiichi Yawo, Hiromu Nakasato, Nobukazu Tominaga, Teiji Mushiake, Hajime PLoS One Research Article Epileptic seizure is a paroxysmal and self-limited phenomenon characterized by abnormal hypersynchrony of a large population of neurons. However, our current understanding of seizure dynamics is still limited. Here we propose a novel in vivo model of seizure-like afterdischarges using optogenetics, and report on investigation of directional network dynamics during seizure along the septo-temporal (ST) axis of hippocampus. Repetitive pulse photostimulation was applied to the rodent hippocampus, in which channelrhodopsin-2 (ChR2) was expressed, under simultaneous recording of local field potentials (LFPs). Seizure-like afterdischarges were successfully induced after the stimulation in both W-TChR2V4 transgenic (ChR2V-TG) rats and in wild type rats transfected with adeno-associated virus (AAV) vectors carrying ChR2. Pulse frequency at 10 and 20 Hz, and a 0.05 duty ratio were optimal for afterdischarge induction. Immunohistochemical c-Fos staining after a single induced afterdischarge confirmed neuronal activation of the entire hippocampus. LFPs were recorded during seizure-like afterdischarges with a multi-contact array electrode inserted along the ST axis of hippocampus. Granger causality analysis of the LFPs showed a bidirectional but asymmetric increase in signal flow along the ST direction. State space presentation of the causality and coherence revealed three discrete states of the seizure-like afterdischarge phenomenon: 1) resting state; 2) afterdischarge initiation with moderate coherence and dominant septal-to-temporal causality; and 3) afterdischarge termination with increased coherence and dominant temporal-to-septal causality. A novel in vivo model of seizure-like afterdischarge was developed using optogenetics, which was advantageous in its reproducibility and artifact-free electrophysiological observations. Our results provide additional evidence for the potential role of hippocampal septo-temporal interactions in seizure dynamics in vivo. Bidirectional networks work hierarchically along the ST hippocampus in the genesis and termination of epileptic seizures. Public Library of Science 2013-04-10 /pmc/articles/PMC3622611/ /pubmed/23593349 http://dx.doi.org/10.1371/journal.pone.0060928 Text en © 2013 Osawa et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited. |
spellingShingle | Research Article Osawa, Shin-ichiro Iwasaki, Masaki Hosaka, Ryosuke Matsuzaka, Yoshiya Tomita, Hiroshi Ishizuka, Toru Sugano, Eriko Okumura, Eiichi Yawo, Hiromu Nakasato, Nobukazu Tominaga, Teiji Mushiake, Hajime Optogenetically Induced Seizure and the Longitudinal Hippocampal Network Dynamics |
title | Optogenetically Induced Seizure and the Longitudinal Hippocampal Network Dynamics |
title_full | Optogenetically Induced Seizure and the Longitudinal Hippocampal Network Dynamics |
title_fullStr | Optogenetically Induced Seizure and the Longitudinal Hippocampal Network Dynamics |
title_full_unstemmed | Optogenetically Induced Seizure and the Longitudinal Hippocampal Network Dynamics |
title_short | Optogenetically Induced Seizure and the Longitudinal Hippocampal Network Dynamics |
title_sort | optogenetically induced seizure and the longitudinal hippocampal network dynamics |
topic | Research Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3622611/ https://www.ncbi.nlm.nih.gov/pubmed/23593349 http://dx.doi.org/10.1371/journal.pone.0060928 |
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