Changes in brain functional connectivity associated with transcutaneous auricular vagus nerve stimulation in healthy controls.

IF 2.4 3区 医学 Q3 NEUROSCIENCES
Frontiers in Human Neuroscience Pub Date : 2025-03-06 eCollection Date: 2025-01-01 DOI:10.3389/fnhum.2025.1531123
Daniel A Monti, Nancy Wintering, Faezeh Vedaei, Alicia Steinmetz, Feroze B Mohamed, Andrew B Newberg
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引用次数: 0

Abstract

Purpose: A growing number of research studies have explored the potential effects of vagus nerve stimulation (VNS) on brain physiology as well as clinical effects particularly related to stress and anxiety. However, there currently are limited studies showing functional changes during different frequencies of stimulation and laterality effects transcutaneous auricular VNS (TaVNS). In this study, we evaluated whether TaVNS alters functional connectivity in the brain of healthy controls. We hypothesized that TaVNS would significantly alter connectivity in areas involved with emotional processing and regulation including the limbic areas, insula, frontal lobe regions, and cerebellum.

Methods: We enrolled 50 healthy controls. Participants were placed in the MRI scanner with MRI compatible ear buds that provided TaVNS. Subjects underwent TaVNS in the left, right, and both ears in a randomized manner during the MRI session. Stimulation was provided for 5 min on and then there was a 5 min off period in between. To evaluate the primary outcome of neurophysiological effects, all participants received blood oxygen level dependent (BOLD) functional magnetic resonance imaging (fMRI) during the TaVNS on and off states.

Results: The results demonstrated significant changes in functional connectivity during TaVNS that differed depending on the frequency of stimulation and which ear was stimulated. In general, areas of the brain that had altered functional connectivity included the frontoparietal regions, limbic regions, insula, and cerebellum. Interestingly, cognitive areas were also involved including parts of the temporal lobe, salience network, and default mode network.

Conclusion: This study is an initial step toward understanding the functional connectivity changes associated with TaVNS. The findings indicate significant brain changes, particularly in areas that are involved with emotional processing and regulation, as well as cognition. Future studies can expand on this data and focus on specific patient populations to determine the effects of TaVNS.

与经皮耳迷走神经刺激相关的健康对照组大脑功能连接变化。
目的:越来越多的研究探索迷走神经刺激(VNS)对大脑生理的潜在影响以及与压力和焦虑相关的临床效果。然而,目前有有限的研究表明,在不同频率的刺激和侧边性影响下,经皮耳穴VNS (TaVNS)的功能发生了变化。在这项研究中,我们评估了TaVNS是否会改变健康对照者大脑的功能连接。我们假设TaVNS会显著改变涉及情绪处理和调节的区域的连通性,包括边缘区域、脑岛、额叶区域和小脑。方法:选取50名健康对照。参与者被放置在核磁共振扫描仪中,配备核磁共振兼容的耳塞,提供TaVNS。在MRI期间,受试者以随机方式在左、右和双耳进行TaVNS。进行5 min的刺激,然后进行5 min的间歇。为了评估神经生理效应的主要结果,所有参与者在TaVNS打开和关闭状态下接受血氧水平依赖(BOLD)功能磁共振成像(fMRI)。结果:结果表明,TaVNS期间功能连通性的显著变化取决于刺激频率和刺激哪只耳朵。一般来说,大脑功能连通性发生改变的区域包括额顶叶区、边缘区、脑岛和小脑。有趣的是,认知区域也参与其中,包括部分颞叶、突出网络和默认模式网络。结论:本研究是了解与TaVNS相关的功能连接变化的第一步。研究结果表明,大脑发生了重大变化,特别是在涉及情绪处理和调节以及认知的区域。未来的研究可以扩展这些数据,并将重点放在特定的患者群体上,以确定TaVNS的效果。
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来源期刊
Frontiers in Human Neuroscience
Frontiers in Human Neuroscience 医学-神经科学
CiteScore
4.70
自引率
6.90%
发文量
830
审稿时长
2-4 weeks
期刊介绍: Frontiers in Human Neuroscience is a first-tier electronic journal devoted to understanding the brain mechanisms supporting cognitive and social behavior in humans, and how these mechanisms might be altered in disease states. The last 25 years have seen an explosive growth in both the methods and the theoretical constructs available to study the human brain. Advances in electrophysiological, neuroimaging, neuropsychological, psychophysical, neuropharmacological and computational approaches have provided key insights into the mechanisms of a broad range of human behaviors in both health and disease. Work in human neuroscience ranges from the cognitive domain, including areas such as memory, attention, language and perception to the social domain, with this last subject addressing topics, such as interpersonal interactions, social discourse and emotional regulation. How these processes unfold during development, mature in adulthood and often decline in aging, and how they are altered in a host of developmental, neurological and psychiatric disorders, has become increasingly amenable to human neuroscience research approaches. Work in human neuroscience has influenced many areas of inquiry ranging from social and cognitive psychology to economics, law and public policy. Accordingly, our journal will provide a forum for human research spanning all areas of human cognitive, social, developmental and translational neuroscience using any research approach.
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