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刺激频率、强度和性别对经皮迷走神经刺激自主神经反应的影响。

Effects of Stimulus Frequency, Intensity, and Sex on the Autonomic Response to Transcutaneous Vagus Nerve Stimulation.

作者信息

Yokota Hirotake, Edama Mutsuaki, Hirabayashi Ryo, Sekine Chie, Otsuru Naofumi, Saito Kei, Kojima Sho, Miyaguchi Shota, Onishi Hideaki

机构信息

Institute for Human Movement and Medical Sciences, Niigata University of Health and Welfare, Niigata 950-3198, Japan.

Department of Physical Therapy, Niigata University of Health and Welfare, Niigata 950-3198, Japan.

出版信息

Brain Sci. 2022 Aug 4;12(8):1038. doi: 10.3390/brainsci12081038.

Abstract

This study aimed to determine how transcutaneous vagus nerve stimulation (tVNS) alters autonomic nervous activity by comparing the effects of different tVNS frequencies and current intensities. We also investigated the sex-dependent autonomic response to tVNS. Thirty-five healthy adult participants were stimulated using a tVNS stimulator at the left cymba conchae while sitting on a reclining chair; tVNS-induced waveform changes were then recorded for different stimulus frequencies (Experiment 1: 3.0 mA at 100 Hz, 25 Hz, 10 Hz, 1 Hz, and 0 Hz (no stimulation)) and current intensities (Experiment 2: 100 Hz at 3.0 mA, 1.0 mA, 0.2 mA (below sensory threshold), and 0 mA (no stimulation)) using an electrocardiogram. Pulse widths were set at 250 µs in both experiment 1 and 2. Changes in heart rate (HR), root-mean-square of the difference between two successive R waves (RMSSD), and the ratio between low-frequency (LF) (0.04-0.15 Hz) and high-frequency (HF) (0.15-0.40 Hz) bands (LF/HF) in spectral analysis, which indicates sympathetic and parasympathetic activity, respectively, in heart rate variability (HRV), were recorded for analysis. Although stimulation at all frequencies significantly reduced HR ( = 0.001), stimulation at 100 Hz had the most pronounced effect ( = 0.001) in Experiment 1 and was revealed to be required to deliver at 3.0 mA in Experiment 2 ( = 0.003). Additionally, participants with higher baseline sympathetic activity experienced higher parasympathetic response during stimulation, and sex differences may exist in the autonomic responses by the application of tVNS. Therefore, our findings suggest that optimal autonomic changes induced by tVNS to the left cymba conchae vary depending on stimulating parameters and sex.

摘要

本研究旨在通过比较不同经皮迷走神经刺激(tVNS)频率和电流强度的效果,确定tVNS如何改变自主神经活动。我们还研究了tVNS引起的性别依赖性自主反应。35名健康成年参与者坐在躺椅上时,使用tVNS刺激器刺激左侧耳甲艇;然后使用心电图记录不同刺激频率(实验1:100 Hz、25 Hz、10 Hz、1 Hz和0 Hz(无刺激)下的3.0 mA)和电流强度(实验2:3.0 mA、1.0 mA、0.2 mA(低于感觉阈值)和0 mA(无刺激)下的100 Hz)时tVNS诱导的波形变化。实验1和实验2中的脉冲宽度均设置为250微秒。记录心率(HR)、两个连续R波之间差值的均方根(RMSSD)以及频谱分析中低频(LF)(0.04 - 0.15 Hz)与高频(HF)(0.15 - 0.40 Hz)频段的比值(LF/HF)的变化,这些分别表示心率变异性(HRV)中的交感神经和副交感神经活动,用于分析。尽管所有频率的刺激均显著降低了HR(P = 0.001),但在实验1中100 Hz的刺激效果最显著(P = 0.001),且在实验2中显示在3.0 mA时进行刺激是必要的(P = 0.003)。此外,基线交感神经活动较高的参与者在刺激期间经历了更高的副交感神经反应,并且应用tVNS引起的自主反应可能存在性别差异。因此,我们的研究结果表明,tVNS对左侧耳甲艇诱导的最佳自主神经变化因刺激参数和性别而异。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/628e/9405815/17b907484404/brainsci-12-01038-g001.jpg

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