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5 kHz Transcranial Alternating Current Stimulation: Lack of Cortical Excitability Changes When Grouped in a Theta Burst Pattern

机译:5 kHz的经颅交流电刺激:以θ爆发模式分组时缺乏皮质兴奋性变化

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摘要

>Background: Suprathreshold transcranial single pulse electrical stimulation (tES) is painful and not applicable in a repetitive mode to induce plastic after-effects.>Objective: In order to circumvent this pain problem, we applied here a 5 kHz transcranial alternating current stimulation (tACS) theta burst protocol with a field intensity of up to 10 mA to the primary motor cortex (M1). Furthermore, we were interested in finding out whether electrical theta burst stimulation (eTBS) is able to induce lasting after-effects on cortical plasticity.>Methods: Three different eTBS protocols were applied at 5 mA in a sham controlled, double blinded cross-over design on the M1 region of seventeen healthy subjects during the first part of the study. The second study part consists of three different eTBS protocols ranging from 5 mA to 10 mA and 1 ms to 5 ms sinusoidal bursts, applied to the M1 region of 14 healthy subjects.>Results: We were able to apply all eTBS protocols in a safe manner, with only six subjects reporting mild side effects related to the stimulation. However, no eTBS protocol induced lasting effects on muscle- evoked potential (MEP) amplitudes when compared to sham stimulation. Significant inhibition of MEP amplitude was only seen in the lower intensity protocols as compared to baseline.>Conclusion: eTBS is a safe method to apply high frequency tACS with up to 10 mA intensity. Future studies need to explore the parameter space to a larger extent in order to assure efficacy.
机译:>背景:超阈值经颅单脉冲电刺激(tES)令人痛苦,不适用于重复模式以诱发塑性后遗症。>目的:为了避免这种疼痛问题,我们在此处将5 kHz经颅交流电刺激(tACS)theta猝发协议应用于主运动皮层(M1),场强高达10 mA。此外,我们有兴趣了解电θ爆裂刺激(eTBS)是否能够诱导对皮层可塑性的持久后效。>方法:在假手术控制下,在5 mA下应用​​了三种不同的eTBS方案在研究的第一部分中,对17名健康受试者的M1区域进行了双盲交叉设计。第二部分研究包括适用于14名健康受试者的M1区域的三种不同的eTBS方案,范围从5 mA至10 mA和1 ms至5 ms正弦脉冲。>结果:我们能够应用所有eTBS协议均以安全的方式进行,只有六名受试者报告了与刺激有关的轻度副作用。但是,与假刺激相比,没有eTBS协议对肌肉诱发电位(MEP)幅度产生持久影响。与基线相比,仅在较低强度的方案中才看到对MEP幅度的显着抑制。>结论:eTBS是一种应用高达10 mA强度的高频tACS的安全方法。未来的研究需要更大范围地探索参数空间以确保功效。

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