Vagal nerve stimulation triggers widespread responses and alters large-scale functional connectivity in the rat brain.

Vagus nerve stimulation (VNS) is a therapy for epilepsy and depression. However, its efficacy varies and its mechanism remains unclear. Prior studies have used functional magnetic resonance imaging (fMRI) to map brain activations with VNS in human brains, but have reported inconsistent findings. The...

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Main Authors: Jiayue Cao, Kun-Han Lu, Terry L Powley, Zhongming Liu
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2017-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC5730194?pdf=render
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author Jiayue Cao
Kun-Han Lu
Terry L Powley
Zhongming Liu
author_facet Jiayue Cao
Kun-Han Lu
Terry L Powley
Zhongming Liu
author_sort Jiayue Cao
collection DOAJ
description Vagus nerve stimulation (VNS) is a therapy for epilepsy and depression. However, its efficacy varies and its mechanism remains unclear. Prior studies have used functional magnetic resonance imaging (fMRI) to map brain activations with VNS in human brains, but have reported inconsistent findings. The source of inconsistency is likely attributable to the complex temporal characteristics of VNS-evoked fMRI responses that cannot be fully explained by simplified response models in the conventional model-based analysis for activation mapping. To address this issue, we acquired 7-Tesla blood oxygenation level dependent fMRI data from anesthetized Sprague-Dawley rats receiving electrical stimulation at the left cervical vagus nerve. Using spatially independent component analysis, we identified 20 functional brain networks and detected the network-wise activations with VNS in a data-driven manner. Our results showed that VNS activated 15 out of 20 brain networks, and the activated regions covered >76% of the brain volume. The time course of the evoked response was complex and distinct across regions and networks. In addition, VNS altered the strengths and patterns of correlations among brain networks relative to those in the resting state. The most notable changes in network-network interactions were related to the limbic system. Together, such profound and widespread effects of VNS may underlie its unique potential for a wide range of therapeutics to relieve central or peripheral conditions.
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spelling doaj.art-c63a7625a01f41538b35edbb6559cea42022-12-21T18:18:25ZengPublic Library of Science (PLoS)PLoS ONE1932-62032017-01-011212e018951810.1371/journal.pone.0189518Vagal nerve stimulation triggers widespread responses and alters large-scale functional connectivity in the rat brain.Jiayue CaoKun-Han LuTerry L PowleyZhongming LiuVagus nerve stimulation (VNS) is a therapy for epilepsy and depression. However, its efficacy varies and its mechanism remains unclear. Prior studies have used functional magnetic resonance imaging (fMRI) to map brain activations with VNS in human brains, but have reported inconsistent findings. The source of inconsistency is likely attributable to the complex temporal characteristics of VNS-evoked fMRI responses that cannot be fully explained by simplified response models in the conventional model-based analysis for activation mapping. To address this issue, we acquired 7-Tesla blood oxygenation level dependent fMRI data from anesthetized Sprague-Dawley rats receiving electrical stimulation at the left cervical vagus nerve. Using spatially independent component analysis, we identified 20 functional brain networks and detected the network-wise activations with VNS in a data-driven manner. Our results showed that VNS activated 15 out of 20 brain networks, and the activated regions covered >76% of the brain volume. The time course of the evoked response was complex and distinct across regions and networks. In addition, VNS altered the strengths and patterns of correlations among brain networks relative to those in the resting state. The most notable changes in network-network interactions were related to the limbic system. Together, such profound and widespread effects of VNS may underlie its unique potential for a wide range of therapeutics to relieve central or peripheral conditions.http://europepmc.org/articles/PMC5730194?pdf=render
spellingShingle Jiayue Cao
Kun-Han Lu
Terry L Powley
Zhongming Liu
Vagal nerve stimulation triggers widespread responses and alters large-scale functional connectivity in the rat brain.
PLoS ONE
title Vagal nerve stimulation triggers widespread responses and alters large-scale functional connectivity in the rat brain.
title_full Vagal nerve stimulation triggers widespread responses and alters large-scale functional connectivity in the rat brain.
title_fullStr Vagal nerve stimulation triggers widespread responses and alters large-scale functional connectivity in the rat brain.
title_full_unstemmed Vagal nerve stimulation triggers widespread responses and alters large-scale functional connectivity in the rat brain.
title_short Vagal nerve stimulation triggers widespread responses and alters large-scale functional connectivity in the rat brain.
title_sort vagal nerve stimulation triggers widespread responses and alters large scale functional connectivity in the rat brain
url http://europepmc.org/articles/PMC5730194?pdf=render
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