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Transcranial Alternating Current Stimulation at Beta Frequency: Lack of Immediate Effects on Excitation and Interhemispheric Inhibition of the Human Motor Cortex

机译:经颅交流电在贝塔频率的刺激:缺乏对人类运动皮层的兴奋和半球抑制的即时影响。

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摘要

Transcranial alternating current stimulation (tACS) is a form of noninvasive brain stimulation and is capable of influencing brain oscillations and cortical networks. In humans, the endogenous oscillation frequency in sensorimotor areas peaks at 20 Hz. This beta-band typically occurs during maintenance of tonic motor output and seems to play a role in interhemispheric coordination of movements. Previous studies showed that tACS applied in specific frequency bands over primary motor cortex (M1) or the visual cortex modulates cortical excitability within the stimulated hemisphere. However, the particular impact remains controversial because effects of tACS were shown to be frequency, duration and location specific. Furthermore, the potential of tACS to modulate cortical interhemispheric processing, like interhemispheric inhibition (IHI), remains elusive. Transcranial magnetic stimulation (TMS) is a noninvasive and well-tolerated method of directly activating neurons in superficial areas of the human brain and thereby a useful tool for evaluating the functional state of motor pathways. The aim of the present study was to elucidate the immediate effect of 10 min tACS in the β-frequency band (20 Hz) over left M1 on IHI between M1s in 19 young, healthy, right-handed participants. A series of TMS measurements (motor evoked potential (MEP) size, resting motor threshold (RMT), IHI from left to right M1 and vice versa) was performed before and immediately after tACS or sham using a double-blinded, cross-over design. We did not find any significant tACS-induced modulations of intracortical excitation (as assessed by MEP size and RMT) and/or IHI. These results indicate that 10 min of 20 Hz tACS over left M1 seems incapable of modulating immediate brain activity or inhibition. Further studies are needed to elucidate potential aftereffects of 20 Hz tACS as well as frequency-specific effects of tACS on intracortical excitation and IHI.
机译:经颅交流电刺激(tACS)是非侵入性脑刺激的一种形式,能够影响脑部振荡和皮质网络。在人类中,感觉运动区域的内源性振荡频率在20 Hz时达到峰值。该β波段通常发生在维持强直性电动机输出的过程中,似乎在运动的半球协调中起作用。先前的研究表明,tACS应用于主要运动皮层(M1)或视觉皮层上特定的频段,可以调节受激半球内的皮层兴奋性。但是,由于tACS的作用显示为频率,持续时间和位置特定,因此具体的影响仍有争议。此外,tACS调节半球皮质处理的潜力,如半球抑制(IHI),仍然遥不可及。经颅磁刺激(TMS)是一种无创且耐受良好的方法,可以直接激活人脑浅表区域的神经元,因此是评估运动通路功能状态的有用工具。本研究的目的是阐明19名年轻,健康,惯用右手的参与者在左M1上方的β频段(20 Hz)中10分钟tACS对M1之间的IHI的即时影响。使用双盲交叉设计在tACS或假手术之前和之后立即进行了一系列TMS测量(运动诱发电位(MEP)大小,静止运动阈值(RMT),IHI从左至右M1,反之亦然)。 。我们没有发现任何明显的tACS诱导的皮层内兴奋调节(通过MEP大小和RMT评估)和/或IHI。这些结果表明,在左M1上方20 Hz tACS的10分钟似乎无法调节即时的大脑活动或抑制。需要进一步研究阐明20 Hz tACS的潜在后效应以及tACS对皮层内兴奋和IHI的频率特异性效应。

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