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理解经颅直流电刺激中的神经调节通路:三叉神经直流电刺激期间大鼠脑干记录

Understanding Neuromodulation Pathways in tDCS: Brain Stem Recordings in Rat During Trigeminal Nerve Direct Current Stimulation.

作者信息

Majdi Alireza, Asamoah Boateng, Mc Laughlin Myles

出版信息

bioRxiv. 2023 Sep 14:2023.09.14.557723. doi: 10.1101/2023.09.14.557723.

DOI:10.1101/2023.09.14.557723
PMID:37745349
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC10515934/
Abstract

BACKGROUND

Recent evidence suggests that transcranial direct current stimulation (tDCS) indirectly influences brain activity through cranial nerve pathways, particularly the trigeminal nerve. However, the electrophysiological effects of direct current (DC) stimulation on the trigeminal nerve (DC-TNS) and its impact on trigeminal nuclei remain unknown. These nuclei exert control over brainstem centers regulating neurotransmitter release, such as serotonin and norepinephrine, potentially affecting global brain activity.

OBJECTIVES

To investigate how DC-TNS impacts neuronal activity in the principal sensory nucleus (NVsnpr) and the mesencephalic nucleus of the trigeminal nerve (MeV).

METHODS

Twenty male Sprague Dawley rats (n=10 each nucleus) were anesthetized with urethane. DC stimulation, ranging from 0.5 to 3 mA, targeted the trigeminal nerve's marginal branch. Simultaneously, single-unit electrophysiological recordings were obtained using a 32-channel silicon probe, comprising three one-minute intervals: pre-stimulation, DC stimulation, and post-stimulation. Xylocaine was administered to block the trigeminal nerve as a control.

RESULTS

DC-TNS significantly increased neuronal spiking activity in both NVsnpr and MeV, returning to baseline during the post-stimulation phase. When the trigeminal nerve was blocked with xylocaine, the robust 3 mA trigeminal nerve DC stimulation failed to induce increased spiking activity in the trigeminal nuclei.

CONCLUSION

Our results offer initial empirical support for trigeminal nuclei activity modulation via DC-TNS. This discovery supports the hypothesis that cranial nerve pathways may play a pivotal role in mediating tDCS effects, setting the stage for further exploration into the complex interplay between peripheral nerves and neural modulation techniques.

HIGHLIGHTS

Direct current stimulation of the trigeminal nerve (DC-TNS) modulates neural activity in rat NVsnpr and MeV.Xylocaine administration reversibly blocks the DC-TNS effect on neural responses.Trigeminal nerve stimulation should be considered a possible mechanism of action of tDCS.

摘要

背景

最近的证据表明,经颅直流电刺激(tDCS)通过颅神经通路间接影响大脑活动,尤其是三叉神经。然而,直流电(DC)刺激对三叉神经(DC-TNS)的电生理效应及其对三叉神经核的影响尚不清楚。这些神经核控制着调节神经递质释放的脑干中枢,如血清素和去甲肾上腺素,可能会影响整体大脑活动。

目的

研究DC-TNS如何影响三叉神经主感觉核(NVsnpr)和三叉神经中脑核(MeV)的神经元活动。

方法

20只雄性Sprague Dawley大鼠(每个核10只)用乌拉坦麻醉。DC刺激强度为0.5至3 mA,作用于三叉神经的边缘支。同时,使用32通道硅探针进行单单位电生理记录,包括三个1分钟的时间段:刺激前、DC刺激和刺激后。给予利多卡因阻断三叉神经作为对照。

结果

DC-TNS显著增加了NVsnpr和MeV中的神经元放电活动,在刺激后阶段恢复到基线水平。当用利多卡因阻断三叉神经时,3 mA的强三叉神经DC刺激未能诱导三叉神经核中放电活动增加。

结论

我们的结果为通过DC-TNS调节三叉神经核活动提供了初步的实证支持。这一发现支持了颅神经通路可能在介导tDCS效应中起关键作用的假设,为进一步探索外周神经与神经调制技术之间的复杂相互作用奠定了基础。

要点

三叉神经直流电刺激(DC-TNS)调节大鼠NVsnpr和MeV中的神经活动。给予利多卡因可逆转阻断DC-TNS对神经反应的影响。应将三叉神经刺激视为tDCS可能的作用机制。