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经皮迷走神经刺激(tVNS)对P300和α-淀粉酶水平的影响:一项初步研究。

Effects of Transcutaneous Vagus Nerve Stimulation (tVNS) on the P300 and Alpha-Amylase Level: A Pilot Study.

作者信息

Ventura-Bort Carlos, Wirkner Janine, Genheimer Hannah, Wendt Julia, Hamm Alfons O, Weymar Mathias

机构信息

Department of Psychology, University of Potsdam, Potsdam, Germany.

Department of Psychology, University of Greifswald, Greifswald, Germany.

出版信息

Front Hum Neurosci. 2018 Jun 21;12:202. doi: 10.3389/fnhum.2018.00202. eCollection 2018.

Abstract

Recent research suggests that the P3b may be closely related to the activation of the locus coeruleus-norepinephrine (LC-NE) system. To further study the potential association, we applied a novel technique, the non-invasive transcutaneous vagus nerve stimulation (tVNS), which is speculated to increase noradrenaline levels. Using a within-subject cross-over design, 20 healthy participants received continuous tVNS and sham stimulation on two consecutive days (stimulation counterbalanced across participants) while performing a visual oddball task. During stimulation, oval non-targets (standard), normal-head (easy) and rotated-head (difficult) targets, as well as novel stimuli (scenes) were presented. As an indirect marker of noradrenergic activation we also collected salivary alpha-amylase (sAA) before and after stimulation. Results showed larger P3b amplitudes for target, relative to standard stimuli, irrespective of stimulation condition. Exploratory analyses, however, revealed that, in comparison to standard stimuli, easy (but not difficult) targets produced larger P3b (but not P3a) amplitudes during active tVNS, compared to sham stimulation. For sAA levels, although main analyses did not show differential effects of stimulation, direct testing revealed that tVNS (but not sham stimulation) increased sAA levels after stimulation. Additionally, larger differences between tVNS and sham stimulation in P3b magnitudes for easy targets were associated with larger increase in sAA levels after tVNS, but not after sham stimulation. Despite preliminary evidence for a modulatory influence of tVNS on the P3b, which may be partly mediated by activation of the noradrenergic system, additional research in this field is clearly warranted. Future studies need to clarify whether tVNS also facilitates other processes, such as learning and memory, and whether tVNS can be used as therapeutic tool.

摘要

近期研究表明,P3b可能与蓝斑-去甲肾上腺素(LC-NE)系统的激活密切相关。为进一步研究这种潜在关联,我们应用了一种新技术——非侵入性经皮迷走神经刺激(tVNS),据推测该技术可提高去甲肾上腺素水平。采用受试者内交叉设计,20名健康参与者在连续两天内接受持续tVNS和假刺激(刺激方式在参与者间平衡),同时执行视觉oddball任务。在刺激过程中,呈现椭圆形非目标物(标准刺激)、正常头部(简单)和旋转头部(困难)目标物,以及新刺激(场景)。作为去甲肾上腺素能激活的间接标志物,我们还在刺激前后收集了唾液α-淀粉酶(sAA)。结果显示,无论刺激条件如何,与标准刺激相比,目标物的P3b波幅更大。然而,探索性分析表明,与标准刺激相比,在主动tVNS期间,简单(而非困难)目标物产生的P3b(而非P3a)波幅比假刺激时更大。对于sAA水平,虽然主要分析未显示刺激的差异效应,但直接测试表明,tVNS(而非假刺激)在刺激后会提高sAA水平。此外,tVNS与假刺激在简单目标物的P3b波幅上的较大差异与tVNS刺激后sAA水平的较大升高相关,而假刺激后则无此现象。尽管有初步证据表明tVNS对P3b有调节作用,这可能部分由去甲肾上腺素能系统的激活介导,但该领域显然仍需更多研究。未来的研究需要阐明tVNS是否还能促进其他过程,如学习和记忆,以及tVNS是否可作为一种治疗工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/547a/6021745/80a6b1cad4a5/fnhum-12-00202-g0001.jpg

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