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Combined transcranial alternating current stimulation and continuous theta burst stimulation: a novel approach for neuroplasticity induction

机译:联合经颅交流电刺激和连续θ爆裂刺激:诱导神经可塑性的一种新方法

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Non-invasive brain stimulation can induce functionally relevant plasticity in the human cortex, making it potentially useful as a therapeutic tool. However, the induced changes are highly variable between individuals, potentially limiting research and clinical utility. One factor that might contribute to this variability is the level of cortical inhibition at the time of stimulation. The alpha rhythm (similar to 8-13Hz) recorded with electroencephalography (EEG) is thought to reflect pulsatile cortical inhibition; therefore, targeting non-invasive brain stimulation to particular phases of the alpha rhythm may provide an approach to enhance plasticity induction. Transcranial alternating current stimulation (tACS) has been shown to entrain cortical oscillations in a frequency-specific manner. We investigated whether the neuroplastic response to continuous theta burst stimulation (cTBS) was enhanced by timing bursts of stimuli to the peak or the trough of a tACS-imposed alpha rhythm. While motor evoked potentials (MEPs) were unaffected when cTBS was applied in-phase with the peak of the tACS-imposed oscillation, MEP depression was enhanced when cTBS was applied in-phase with the trough. This enhanced MEP depression was dependent on the individual peak frequency of the endogenous alpha rhythm recorded with EEG prior to stimulation, and was strongest in those participants classified as non-responders to standard cTBS. These findings suggest that tACS may be used in combination with cTBS to enhance the plasticity response. Furthermore, the peak frequency of endogenous alpha, as measured with EEG, may be used as a simple marker to pre-select those individuals likely to benefit from this approach.
机译:非侵入性脑刺激可以在人类皮质中诱导功能相关的可塑性,使其潜在地用作治疗工具。然而,诱导的变化在个体之间是高度可变的,潜在地限制了研究和临床实用性。可能导致这种变异的一个因素是刺激时皮质抑制的水平。脑电图(EEG)记录的阿尔法心律(类似于8-13Hz)被认为反映了搏动性皮层抑制。因此,将非侵入性脑刺激靶向于α节律的特定阶段可以提供增强可塑性诱导的方法。经颅交流电刺激(tACS)已显示以特定于频率的方式夹带皮质振荡。我们调查了是否通过对tACS施加的α节律的峰值或谷底的刺激进行定时爆发来增强对连续theta爆发刺激(cTBS)的神经塑性反应。当将cTBS与tACS施加的振动的峰值同相应用时,电机诱发电位(MEP)不受影响,而当与槽同相应用cTBS时,MEP抑制增强。这种增强的MEP抑郁症取决于刺激之前脑电图记录的内源性α节奏的峰值频率,并且在被分类为对标准cTBS无反应的参与者中最强。这些发现表明,tACS可以与cTBS结合使用以增强可塑性反应。此外,用EEG测量的内源性α的峰值频率可以用作简单的标记,以预先选择可能受益于该方法的那些个体。

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