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通过在腹部手动进行内脏整骨刺激迷走神经来改变局灶性癫痫中的功能性脑网络。

Modifying functional brain networks in focal epilepsy by manual visceral-osteopathic stimulation of the vagus nerve at the abdomen.

作者信息

Lehnertz Hendrik, Broehl Timo, Rings Thorsten, von Wrede Randi, Lehnertz Klaus

机构信息

BMT Internationale Akademie für Biodynamische Manuelle Therapie GmbH, Bühler, Switzerland.

Department of Epileptology, University of Bonn Medical Centre, Bonn, Germany.

出版信息

Front Netw Physiol. 2023 Jul 13;3:1205476. doi: 10.3389/fnetp.2023.1205476. eCollection 2023.

Abstract

Non-invasive transcutaneous vagus nerve stimulation elicits similar therapeutic effects as invasive vagus nerve stimulation, offering a potential treatment alternative for a wide range of diseases, including epilepsy. Here, we present a novel, non-invasive stimulation of the vagus nerve, which is performed manually viscero-osteopathically on the abdomen (voVNS). We explore the impact of short-term voVNS on various local and global characteristics of EEG-derived, large-scale evolving functional brain networks from a group of 20 subjects with and without epilepsy. We observe differential voVNS-mediated alterations of these characteristics that can be interpreted as a reconfiguration and modification of networks and their stability and robustness properties. Clearly, future studies are necessary to assess the impact of such a non-pharmaceutical intervention on clinical decision-making in the treatment of epilepsy. However, our findings may add to the current discussion on the importance of the gut-brain axis in health and disease. : https://drks.de/search/en/trial/DRKS00029914, identifier DRKS00029914.

摘要

非侵入性经皮迷走神经刺激与侵入性迷走神经刺激具有相似的治疗效果,为包括癫痫在内的多种疾病提供了一种潜在的治疗选择。在此,我们提出一种新型的非侵入性迷走神经刺激方法,即通过腹部内脏骨病手法进行手动刺激(voVNS)。我们研究了短期voVNS对一组20名有癫痫和无癫痫受试者的脑电图衍生的大规模动态功能脑网络的各种局部和全局特征的影响。我们观察到voVNS介导的这些特征的差异变化,这些变化可被解释为网络及其稳定性和鲁棒性属性的重新配置和改变。显然,未来有必要开展研究来评估这种非药物干预对癫痫治疗中临床决策的影响。然而,我们的研究结果可能会为当前关于肠脑轴在健康和疾病中的重要性的讨论增添内容。: https://drks.de/search/en/trial/DRKS00029914,标识符DRKS00029914。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/afa2/10374317/af97f15c3526/fnetp-03-1205476-g001.jpg

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