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耳迷走神经刺激的当前发展方向II——工程学视角

Current Directions in the Auricular Vagus Nerve Stimulation II - An Engineering Perspective.

作者信息

Kaniusas Eugenijus, Kampusch Stefan, Tittgemeyer Marc, Panetsos Fivos, Gines Raquel Fernandez, Papa Michele, Kiss Attila, Podesser Bruno, Cassara Antonino Mario, Tanghe Emmeric, Samoudi Amine Mohammed, Tarnaud Thomas, Joseph Wout, Marozas Vaidotas, Lukosevicius Arunas, Ištuk Niko, Lechner Sarah, Klonowski Wlodzimierz, Varoneckas Giedrius, Széles Jozsef Constantin, Šarolić Antonio

机构信息

Institute of Electrodynamics, Microwave and Circuit Engineering, Vienna University of Technology, Vienna, Austria.

SzeleSTIM GmbH, Vienna, Austria.

出版信息

Front Neurosci. 2019 Jul 24;13:772. doi: 10.3389/fnins.2019.00772. eCollection 2019.

Abstract

Electrical stimulation of the auricular vagus nerve (aVNS) is an emerging electroceutical technology in the field of bioelectronic medicine with applications in therapy. Artificial modulation of the afferent vagus nerve - a powerful entrance to the brain - affects a large number of physiological processes implicating interactions between the brain and body. Engineering aspects of aVNS determine its efficiency in application. The relevant safety and regulatory issues need to be appropriately addressed. In particular, modeling acts as a tool for aVNS optimization. The evolution of personalized electroceuticals using novel architectures of the closed-loop aVNS paradigms with biofeedback can be expected to optimally meet therapy needs. For the first time, two international workshops on aVNS have been held in Warsaw and Vienna in 2017 within the scope of EU COST Action "European network for innovative uses of EMFs in biomedical applications (BM1309)." Both workshops focused critically on the driving physiological mechanisms of aVNS, its experimental and clinical studies in animals and humans, aVNS studies, technological advancements, and regulatory barriers. The results of the workshops are covered in two reviews, covering physiological and engineering aspects. The present review summarizes on engineering aspects - a discussion of physiological aspects is provided by our accompanying article (Kaniusas et al., 2019). Both reviews build a reasonable bridge from the rationale of aVNS as a therapeutic tool to current research lines, all of them being highly relevant for the promising aVNS technology to reach the patient.

摘要

耳迷走神经电刺激(aVNS)是生物电子医学领域中一种新兴的电治疗技术,具有治疗应用价值。对传入迷走神经(通向大脑的一条重要通路)进行人工调制,会影响大量涉及大脑与身体相互作用的生理过程。aVNS的工程学方面决定了其应用效率。相关的安全和监管问题需要得到妥善解决。特别是,建模可作为优化aVNS的工具。利用具有生物反馈的闭环aVNS范式的新型架构开发个性化电治疗产品,有望最佳地满足治疗需求。2017年,在欧盟“生物医学应用中电磁场创新利用欧洲网络(BM1309)”成本行动范围内,首次在华沙和维也纳举办了两次关于aVNS的国际研讨会。这两次研讨会都重点关注了aVNS的驱动生理机制、其在动物和人类中的实验及临床研究、aVNS研究、技术进步以及监管障碍。研讨会的结果在两篇综述中进行了阐述,分别涵盖生理和工程方面。本综述总结了工程学方面的内容——我们的配套文章(Kaniusas等人,2019年)提供了对生理方面的讨论。这两篇综述为aVNS作为一种治疗工具的原理与当前研究方向之间搭建了合理的桥梁,所有这些对于使有前景的aVNS技术惠及患者都高度相关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/af86/6667675/ba70e0b8766b/fnins-13-00772-g001.jpg

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