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微爆式迷走神经刺激对丘脑的调节作用:一项可行性研究方案

Modulation of the thalamus by microburst vagus nerve stimulation: a feasibility study protocol.

作者信息

Verner Ryan, Szaflarski Jerzy P, Allendorfer Jane B, Vonck Kristl, Giannicola Gaia

机构信息

Clinical and Medical Affairs, LivaNova PLC (or a subsidiary), London, United Kingdom.

Department of Neurology, University of Alabama at Birmingham Heersink School of Medicine, Birmingham, AL, United States.

出版信息

Front Neurol. 2023 Jun 13;14:1169161. doi: 10.3389/fneur.2023.1169161. eCollection 2023.


DOI:10.3389/fneur.2023.1169161
PMID:37384278
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC10299807/
Abstract

Vagus nerve stimulation (VNS) was the first device-based therapy for epilepsy, having launched in 1994 in Europe and 1997 in the United States. Since then, significant advances in the understanding of the mechanism of action of VNS and the central neurocircuitry that VNS modulates have impacted how the therapy is practically implemented. However, there has been little change to VNS stimulation parameters since the late 1990s. Short bursts of high frequency stimulation have been of increasing interest to other neuromodulation targets e.g., the spine, and these high frequency bursts elicit unique effects in the central nervous system, especially when applied to the vagus nerve. In the current study, we describe a protocol design that is aimed to assess the impact of high frequency bursts of stimulation, called "Microburst VNS", in subjects with refractory focal and generalized epilepsies treated with this novel stimulation pattern in addition to standard anti-seizure medications. This protocol also employed an investigational, fMRI-guided titration protocol that permits personalized dosing of Microburst VNS among the treated population depending on the thalamic blood-oxygen-level-dependent signal. The study was registered on clinicaltrials.gov (NCT03446664). The first subject was enrolled in 2018 and the final results are expected in 2023.

摘要

迷走神经刺激术(VNS)是第一种基于设备的癫痫治疗方法,1994年在欧洲推出,1997年在美国推出。从那时起,在对VNS作用机制以及VNS所调节的中枢神经回路的理解方面取得了重大进展,这影响了该疗法的实际实施方式。然而,自20世纪90年代末以来,VNS刺激参数几乎没有变化。高频刺激的短脉冲对其他神经调节靶点(如脊柱)越来越受关注,并且这些高频脉冲在中枢神经系统中引发独特的效应,尤其是应用于迷走神经时。在当前的研究中,我们描述了一种方案设计,旨在评估称为“微脉冲VNS”的高频刺激脉冲对难治性局灶性和全身性癫痫患者的影响,这些患者除了接受标准抗癫痫药物治疗外,还采用这种新型刺激模式进行治疗。该方案还采用了一种研究性的、功能磁共振成像引导的滴定方案,该方案允许根据丘脑血氧水平依赖信号在接受治疗的人群中对微脉冲VNS进行个性化给药。该研究已在ClinicalTrials.gov(NCT03446664)上注册。第一名受试者于2018年入组,预计2023年得出最终结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dca9/10299807/46b64f530661/fneur-14-1169161-g0003.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dca9/10299807/b46b0a469a02/fneur-14-1169161-g0001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dca9/10299807/4114d5f13c4c/fneur-14-1169161-g0002.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dca9/10299807/46b64f530661/fneur-14-1169161-g0003.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dca9/10299807/b46b0a469a02/fneur-14-1169161-g0001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dca9/10299807/4114d5f13c4c/fneur-14-1169161-g0002.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dca9/10299807/46b64f530661/fneur-14-1169161-g0003.jpg

相似文献

[1]
Modulation of the thalamus by microburst vagus nerve stimulation: a feasibility study protocol.

Front Neurol. 2023-6-13

[2]
Optimized microburst VNS elicits fMRI responses beyond thalamic-specific response from standard VNS.

Ann Clin Transl Neurol. 2024-5

[3]
Feasibility study of microburst VNS therapy in drug-resistant focal and generalized epilepsy.

Brain Stimul. 2024

[4]
An economic evaluation of vagus nerve stimulation as an adjunctive treatment to anti-seizure medications for the treatment of drug resistant epilepsy in the United States.

J Med Econ. 2023

[5]
Regional brain perfusion changes during standard and microburst vagus nerve stimulation in dogs.

Epilepsy Res. 2014-2-19

[6]
Vagus nerve stimulation for partial seizures.

Cochrane Database Syst Rev. 2015-4-3

[7]
Evaluation of heart rate variability in dogs during standard and microburst vagus nerve stimulation: a pilot study.

Vet J. 2014-12

[8]
Anterior Nucleus of the Thalamus Deep Brain Stimulation with Concomitant Vagus Nerve Stimulation for Drug-Resistant Epilepsy.

Neurosurgery. 2021-9-15

[9]
An economic evaluation of vagus nerve stimulation as an adjunctive treatment to anti-seizure medications for the treatment of drug-resistant epilepsy in England.

J Med Econ. 2021

[10]
The Effectiveness of Vagus Nerve Stimulation in Drug-Resistant Epilepsy Correlates with Vagus Nerve Stimulation-Induced Electroencephalography Desynchronization.

Brain Connect. 2020-12

引用本文的文献

[1]
Left and right vagus nerve stimulation: historical perspectives, clinical efficacy, and future directions.

Front Hum Neurosci. 2025-7-29

[2]
Resting-state functional connectivity changes with microburst vagus nerve stimulation therapy.

Epilepsia Open. 2025-8

[3]
Characterization of Vagus Nerve Stimulation (VNS) Dose-Dependent Effects on EEG Power Spectrum and Synchronization.

Biomedicines. 2024-3-1

[4]
Optimized microburst VNS elicits fMRI responses beyond thalamic-specific response from standard VNS.

Ann Clin Transl Neurol. 2024-5

[5]
Compatibility of Standard Vagus Nerve Stimulation and Investigational Microburst Vagus Nerve Stimulation Therapy with fMRI.

AJNR Am J Neuroradiol. 2024-8-9

[6]
How to fail with paired VNS therapy.

Brain Stimul. 2023

本文引用的文献

[1]
Latest Views on the Mechanisms of Action of Surgically Implanted Cervical Vagal Nerve Stimulation in Epilepsy.

Neuromodulation. 2023-4

[2]
VNS parameters for clinical response in Epilepsy.

Brain Stimul. 2022

[3]
Responsive neurostimulation of the thalamus improves seizure control in idiopathic generalised epilepsy: initial case series.

J Neurol Neurosurg Psychiatry. 2022-5

[4]
Deep brain stimulation targets in epilepsy: Systematic review and meta-analysis of anterior and centromedian thalamic nuclei and hippocampus.

Epilepsia. 2022-3

[5]
Centromedian thalamic responsive neurostimulation for Lennox-Gastaut epilepsy and autism.

Ann Clin Transl Neurol. 2020-10

[6]
Nine-year prospective efficacy and safety of brain-responsive neurostimulation for focal epilepsy.

Neurology. 2020-7-20

[7]
High-frequency burst vagal nerve simulation therapy in a natural primate model of genetic generalized epilepsy.

Epilepsy Res. 2017-12

[8]
Long-term efficacy and safety of thalamic stimulation for drug-resistant partial epilepsy.

Neurology. 2015-3-10

[9]
The effect of vagus nerve stimulation on CSF monoamines and the PTZ seizure threshold in dogs.

Brain Stimul. 2014-8-8

[10]
Regional brain perfusion changes during standard and microburst vagus nerve stimulation in dogs.

Epilepsy Res. 2014-2-19

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