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临床迷走神经刺激期间首次对人体迷走神经进行微电极记录。

First-in-human microelectrode recordings from the vagus nerve during clinical vagus nerve stimulation.

作者信息

Patros Mikaela, Farmer David G S, Moneghetti Kegan, Ottaviani Matteo M, Sivathamboo Shobi, Simpson Hugh D, O'Brien Terence J, Macefield Vaughan G

机构信息

Department of Neuroscience, School of Translational Medicine, The Alfred Centre, Monash University, Melbourne, Victoria, Australia.

Baker Heart and Diabetes Institute, Melbourne, Victoria, Australia.

出版信息

Epilepsia Open. 2024 Dec;9(6):2522-2527. doi: 10.1002/epi4.13083. Epub 2024 Oct 28.

DOI:10.1002/epi4.13083
PMID:39465627
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC11633718/
Abstract

INTRODUCTION

Vagus nerve stimulation (VNS) is an effective treatment for people with drug-resistant epilepsy. However, its mechanisms of action are poorly understood, including which nerve fibers are activated in humans during VNS in typical clinical settings and which are required for clinical efficacy. In particular, there have been no intraneural recordings of vagus nerve fiber activation in awake humans undergoing chronic VNS. In this study, for the first time, we report recordings from the vagus nerve in this setting.

METHODS

The recordings were performed using a sterile tungsten microelectrode inserted percutaneously into the cervical vagus nerve under ultrasound guidance. The clinical VNS systems were used to deliver stimulation while activity in the vagus nerve was recorded.

RESULTS

In addition to activating myelinated axons at low currents, we provide evidence that VNS can also activate unmyelinated C fibers in the vagus nerve at currents <1 mA.

CONCLUSIONS

These results add to our understanding of how VNS exerts its beneficial effects in drug-resistant epilepsy.

PLAIN LANGUAGE STATEMENT

Here we describe for the first time, electrical recordings from the vagus nerve in awake drug-resistant epilepsy patients with an implanted vagus nerve stimulation (VNS) device. We found that the VNS device was able to activate both myelinated and unmyelinated fibers within the vagus nerve, which contributes to our understanding of how VNS works in the context of drug-resistant epilepsy.

摘要

引言

迷走神经刺激术(VNS)是治疗耐药性癫痫患者的一种有效方法。然而,其作用机制尚不清楚,包括在典型临床环境中VNS期间人体哪些神经纤维被激活以及临床疗效需要哪些神经纤维。特别是,对于接受慢性VNS的清醒人类,尚未有迷走神经纤维激活的神经内记录。在本研究中,我们首次报告了在这种情况下迷走神经的记录。

方法

记录是在超声引导下经皮将无菌钨微电极插入颈迷走神经进行的。使用临床VNS系统进行刺激,同时记录迷走神经的活动。

结果

除了在低电流下激活有髓轴突外,我们还提供证据表明VNS在电流<1 mA时也能激活迷走神经中的无髓C纤维。

结论

这些结果加深了我们对VNS如何在耐药性癫痫中发挥有益作用的理解。

通俗易懂的陈述

在这里,我们首次描述了对植入迷走神经刺激(VNS)装置的清醒耐药性癫痫患者迷走神经的电记录。我们发现VNS装置能够激活迷走神经内的有髓和无髓纤维,这有助于我们理解VNS在耐药性癫痫中的作用机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9aee/11633718/d3c332cc87c6/EPI4-9-2522-g001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9aee/11633718/d3c332cc87c6/EPI4-9-2522-g001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9aee/11633718/d3c332cc87c6/EPI4-9-2522-g001.jpg

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