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Theoretical and Experimental Studies of Transcranial Alternating Current Stimulation (tACS) Beating Signal in Phantoms and Mice Brains

机译:幻影和小鼠大脑中经颅交流电(tACS)搏动信号的理论和实验研究

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Brain simulation techniques have demonstrated undisputable therapeutic effects on neural diseases. Invasive stimulation techniques like deep brain stimulation (DBS) and noninvasive techniques like transcranial magnetic stimulation (TMS) have been approved by FDA as treatments for many drug resist neural disorders and diseases. Developing noninvasive, deep, and targeted brain stimulation techniques is currently one of the important tasks in brain researches. Transcranial direct current stimulation (tDCS) and transcranial alternative current stimulation (tACS) techniques have the advantages of low cost and portability. However, neither of them can produce targeted stimulation due to lacking of electrical field focusing mechanism. Recently, Grossman et al. reported using the down beating signals of two tACS signals to accomplish focused stimulation. By sending two sine waves running at slightly different high frequencies (~2kHz), they demonstrated that they can modulate a "localized" neuron group at the difference frequency of the two sine waves and at the same time avoid excitation of neurons at other locations. As a result, equivalent focusing effect was accomplished by such beating mechanism. In this work, we show neither theoretically nor experimentally the beating mechanism can produce "focusing effect" and the beating signal spread globally across the full brain. The localized modulation effect likely happened right at the electrode contact sites when the electrode contact area is small and the current is concentrated. We conclude that to accomplish noninvasive and focused stimulation at current stage the only available tool is the focused TMS system we recently demonstrated.
机译:脑模拟技术已证明对神经疾病具有无可争议的治疗效果。 FDA已批准像深部脑刺激(DBS)这样的侵入性刺激技术和像经颅磁刺激(TMS)这样的非侵入性技术可以治疗许多抵抗神经疾病和疾病的药物。开发无创,深入和针对性的脑刺激技术目前是脑研究的重要任务之一。经颅直流电刺激(tDCS)和经颅交流电刺激(tACS)技术具有成本低和便携性的优点。但是,由于缺乏电场聚焦机制,它们都不能产生针对性的刺激。最近,Grossman等人。报道了使用两个tACS信号的向下跳动信号来完成集中刺激。通过发送两个在稍有不同的高频(〜2kHz)下运行的正弦波,他们证明了它们可以在两个正弦波的不同频率上调制一个“局部”神经元组,同时避免在其他位置激发神经元。结果,通过这种拍打机构实现了等效的聚焦效果。在这项工作中,我们从理论上或实验上都没有证明跳动机制不会产生“聚焦效应”,并且跳动信号会在整个大脑中分布。当电极接触面积较小且电流集中时,可能会在电极接触部位发生局部调制效应。我们得出结论,要在当前阶段完成无创和集中刺激,唯一可用的工具是我们最近展示的集中TMS系统。

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