Institute of Cognitive Neurology and Dementia Research, Otto-Von-Guericke University Magdeburg, Magdeburg, Germany.
CBBS Center for Behavioral Brain Sciences, Magdeburg, Germany.
Sci Rep. 2024 Oct 17;14(1):24391. doi: 10.1038/s41598-024-72179-4.
The efficacy of transcutaneous auricular vagus nerve stimulation (taVNS) as a non-invasive method to modulate physiological markers of noradrenergic activity of the Locus Coeruleus (LC), such as pupil dilation, is increasingly more discussed. However, taVNS studies show high heterogeneity of stimulation effects. Therefore, a taVNS setup was established here to test different frequencies (10 Hz and 25 Hz) and intensities (3 mA and 5 mA) during phasic stimulation (3 s) with time-synchronous recording of pupil dilation in younger adults. Specifically, phasic real taVNS and higher intensity led to increased pupil dilation, which is consistent with phasic invasive VNS studies in animals. The results also suggest that the influence of intensity on pupil dilation may be stronger than that of frequency. However, there was an attenuation of taVNS-induced pupil dilation when differences in perception of sensations were considered. Specifically, pupil dilation during phasic stimulation increased with perceived stimulation intensity. The extent to which the effect of taVNS induces pupil dilation and the involvement of sensory perception in the stimulation process are discussed here and require more extensive research. Additionally, it is crucial to strive for comparable stimulation sensations during systematic parameter testing in order to investigate possible effects of phasic taVNS on pupil dilation in more detail.
经皮耳迷走神经刺激(taVNS)作为一种非侵入性方法,可调节蓝斑(LC)去甲肾上腺素能活性的生理标志物,如瞳孔扩张,其疗效越来越受到关注。然而,taVNS 研究显示刺激效果存在高度异质性。因此,在这里建立了 taVNS 装置,以在年轻人中测试不同频率(10 Hz 和 25 Hz)和强度(3 mA 和 5 mA)的相位刺激(3 s)期间,同步记录瞳孔扩张。具体来说,相位真实 taVNS 和更高的强度导致瞳孔扩张增加,这与动物的相位侵入性 VNS 研究一致。结果还表明,强度对瞳孔扩张的影响可能比频率更强。然而,当考虑到感觉知觉的差异时,taVNS 诱导的瞳孔扩张会减弱。具体来说,相位刺激期间的瞳孔扩张随着感知刺激强度的增加而增加。本文讨论了 taVNS 诱导瞳孔扩张的程度以及刺激过程中感觉知觉的参与,并需要更广泛的研究。此外,在系统参数测试中努力争取可比的刺激感觉对于更详细地研究相位 taVNS 对瞳孔扩张的可能影响至关重要。