Capone Fioravante, Assenza Giovanni, Di Pino Giovanni, Musumeci Gabriella, Ranieri Federico, Florio Lucia, Barbato Carmen, Di Lazzaro Vincenzo
Institute of Neurology, Campus Bio-Medico University, Via Alvaro del Portillo 200, 00128, Rome, Italy,
J Neural Transm (Vienna). 2015 May;122(5):679-85. doi: 10.1007/s00702-014-1299-7. Epub 2014 Sep 3.
There is great interest about the therapeutic potentialities of transcutaneous vagus nerve stimulation (tVNS) applied to neuropsychiatric disorders. However, the mechanisms of action of tVNS and its impact on cortical excitability are unclear. To this regard, transcranial magnetic stimulation (TMS) can be useful because it is able of evaluating non-invasively excitatory and inhibitory circuitry of the human cortex. Aim of the present study is to investigate the effects of tVNS on cerebral cortex excitability in healthy volunteers by means of TMS. Ten healthy subjects participated in this randomized placebo-controlled double-blind study. Real tVNS was administered at left external acoustic meatus, while sham stimulation was performed at left ear lobe, both of them for 60 min. We evaluated motor thresholds, motor evoked potential amplitude, recruitment curves, and short-interval intracortical inhibition (SICI) in right and left motor cortex. Such parameters were evaluated before and 60 min after the exposure to tVNS, for both the real and the sham stimulation. Cardiovascular parameters were monitored during the stimulation. A generalized linear model for repeated measures was implemented to assess the effect of time and stimulation type on cardiovascular and neurophysiological variables. SICI, a double-pulse TMS paradigm informative of GABA-A activity, was significantly increased in right motor cortex after real tVNS. Other neurophysiological parameters, as well as cardiovascular variables, remained unchanged. Our findings confirm that tVNS is a safe and effective way to stimulate vagus nerve and provide innovative data about the possible mechanisms of action that supports the potential therapeutic application of this technique.
经皮迷走神经刺激(tVNS)应用于神经精神疾病的治疗潜力备受关注。然而,tVNS的作用机制及其对皮质兴奋性的影响尚不清楚。在这方面,经颅磁刺激(TMS)可能会有所帮助,因为它能够非侵入性地评估人类皮质的兴奋性和抑制性神经回路。本研究的目的是通过TMS研究tVNS对健康志愿者大脑皮质兴奋性的影响。十名健康受试者参与了这项随机、安慰剂对照、双盲研究。在左外耳道进行真正的tVNS,而在左耳叶进行假刺激,两者均持续60分钟。我们评估了左右运动皮质的运动阈值、运动诱发电位幅度、募集曲线和短间隔皮质内抑制(SICI)。在暴露于tVNS之前和之后60分钟,对真正刺激和假刺激均评估这些参数。在刺激过程中监测心血管参数。实施了重复测量的广义线性模型,以评估时间和刺激类型对心血管和神经生理变量的影响。SICI是一种反映GABA - A活性的双脉冲TMS范式,在真正的tVNS后右运动皮质中显著增加。其他神经生理参数以及心血管变量保持不变。我们的研究结果证实,tVNS是刺激迷走神经的一种安全有效的方法,并提供了关于可能作用机制的创新数据,支持了该技术的潜在治疗应用。
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