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Isoflurane-Induced Burst Suppression Is a Thalamus-Modulated, Focal-Onset Rhythm With Persistent Local Asynchrony and Variable Propagation Patterns in Rats

Background: Inhalational anesthetic-induced burst suppression (BS) is classically considered a bilaterally synchronous rhythm. However, local asynchrony has been predicted in theoretical studies and reported in patients with pre-existing focal pathology. Method: We used high-speed widefield calcium...

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Autores principales: Ming, Qianwen, Liou, Jyun-You, Yang, Fan, Li, Jing, Chu, Chaojia, Zhou, Qingchen, Wu, Dan, Xu, Shujia, Luo, Peijuan, Liang, Jianmin, Li, Dan, Pryor, Kane O., Lin, Weihong, Schwartz, Theodore H., Ma, Hongtao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7835516/
https://www.ncbi.nlm.nih.gov/pubmed/33510621
http://dx.doi.org/10.3389/fnsys.2020.599781
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author Ming, Qianwen
Liou, Jyun-You
Yang, Fan
Li, Jing
Chu, Chaojia
Zhou, Qingchen
Wu, Dan
Xu, Shujia
Luo, Peijuan
Liang, Jianmin
Li, Dan
Pryor, Kane O.
Lin, Weihong
Schwartz, Theodore H.
Ma, Hongtao
author_facet Ming, Qianwen
Liou, Jyun-You
Yang, Fan
Li, Jing
Chu, Chaojia
Zhou, Qingchen
Wu, Dan
Xu, Shujia
Luo, Peijuan
Liang, Jianmin
Li, Dan
Pryor, Kane O.
Lin, Weihong
Schwartz, Theodore H.
Ma, Hongtao
author_sort Ming, Qianwen
collection PubMed
description Background: Inhalational anesthetic-induced burst suppression (BS) is classically considered a bilaterally synchronous rhythm. However, local asynchrony has been predicted in theoretical studies and reported in patients with pre-existing focal pathology. Method: We used high-speed widefield calcium imaging to study the spatiotemporal dynamics of isoflurane-induced BS in rats. Results: We found that isoflurane-induced BS is not a globally synchronous rhythm. In the neocortex, neural activity first emerged in a spatially shifting, variably localized focus. Subsequent propagation across the whole cortex was rapid, typically within <100 milliseconds, giving the superficial resemblance to global synchrony. Neural activity remained locally asynchronous during the bursts, forming complex recurrent propagating waves. Despite propagation variability, spatial sequences of burst propagation were largely preserved between the hemispheres, and neural activity was highly correlated between the homotopic areas. The critical role of the thalamus in cortical burst initiation was demonstrated by using unilateral thalamic tetrodotoxin injection. Conclusion: The classical impression that anesthetics-induced BS is a state of global brain synchrony is inaccurate. Bursts are a series of shifting local cortical events facilitated by thalamic projection that unfold as rapid, bilaterally asynchronous propagating waves.
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spelling pubmed-78355162021-01-27 Isoflurane-Induced Burst Suppression Is a Thalamus-Modulated, Focal-Onset Rhythm With Persistent Local Asynchrony and Variable Propagation Patterns in Rats Ming, Qianwen Liou, Jyun-You Yang, Fan Li, Jing Chu, Chaojia Zhou, Qingchen Wu, Dan Xu, Shujia Luo, Peijuan Liang, Jianmin Li, Dan Pryor, Kane O. Lin, Weihong Schwartz, Theodore H. Ma, Hongtao Front Syst Neurosci Neuroscience Background: Inhalational anesthetic-induced burst suppression (BS) is classically considered a bilaterally synchronous rhythm. However, local asynchrony has been predicted in theoretical studies and reported in patients with pre-existing focal pathology. Method: We used high-speed widefield calcium imaging to study the spatiotemporal dynamics of isoflurane-induced BS in rats. Results: We found that isoflurane-induced BS is not a globally synchronous rhythm. In the neocortex, neural activity first emerged in a spatially shifting, variably localized focus. Subsequent propagation across the whole cortex was rapid, typically within <100 milliseconds, giving the superficial resemblance to global synchrony. Neural activity remained locally asynchronous during the bursts, forming complex recurrent propagating waves. Despite propagation variability, spatial sequences of burst propagation were largely preserved between the hemispheres, and neural activity was highly correlated between the homotopic areas. The critical role of the thalamus in cortical burst initiation was demonstrated by using unilateral thalamic tetrodotoxin injection. Conclusion: The classical impression that anesthetics-induced BS is a state of global brain synchrony is inaccurate. Bursts are a series of shifting local cortical events facilitated by thalamic projection that unfold as rapid, bilaterally asynchronous propagating waves. Frontiers Media S.A. 2021-01-12 /pmc/articles/PMC7835516/ /pubmed/33510621 http://dx.doi.org/10.3389/fnsys.2020.599781 Text en Copyright © 2021 Ming, Liou, Yang, Li, Chu, Zhou, Wu, Xu, Luo, Liang, Li, Pryor, Lin, Schwartz and Ma. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Neuroscience
Ming, Qianwen
Liou, Jyun-You
Yang, Fan
Li, Jing
Chu, Chaojia
Zhou, Qingchen
Wu, Dan
Xu, Shujia
Luo, Peijuan
Liang, Jianmin
Li, Dan
Pryor, Kane O.
Lin, Weihong
Schwartz, Theodore H.
Ma, Hongtao
Isoflurane-Induced Burst Suppression Is a Thalamus-Modulated, Focal-Onset Rhythm With Persistent Local Asynchrony and Variable Propagation Patterns in Rats
title Isoflurane-Induced Burst Suppression Is a Thalamus-Modulated, Focal-Onset Rhythm With Persistent Local Asynchrony and Variable Propagation Patterns in Rats
title_full Isoflurane-Induced Burst Suppression Is a Thalamus-Modulated, Focal-Onset Rhythm With Persistent Local Asynchrony and Variable Propagation Patterns in Rats
title_fullStr Isoflurane-Induced Burst Suppression Is a Thalamus-Modulated, Focal-Onset Rhythm With Persistent Local Asynchrony and Variable Propagation Patterns in Rats
title_full_unstemmed Isoflurane-Induced Burst Suppression Is a Thalamus-Modulated, Focal-Onset Rhythm With Persistent Local Asynchrony and Variable Propagation Patterns in Rats
title_short Isoflurane-Induced Burst Suppression Is a Thalamus-Modulated, Focal-Onset Rhythm With Persistent Local Asynchrony and Variable Propagation Patterns in Rats
title_sort isoflurane-induced burst suppression is a thalamus-modulated, focal-onset rhythm with persistent local asynchrony and variable propagation patterns in rats
topic Neuroscience
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7835516/
https://www.ncbi.nlm.nih.gov/pubmed/33510621
http://dx.doi.org/10.3389/fnsys.2020.599781
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