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使用个性化高清θ经颅交流电刺激(HD θ-tACS)调节前扣带回和内侧前额叶皮质的抑制控制过程。

Modulating Inhibitory Control Processes Using Individualized High Definition Theta Transcranial Alternating Current Stimulation (HD θ-tACS) of the Anterior Cingulate and Medial Prefrontal Cortex.

作者信息

Klírová Monika, Voráčková Veronika, Horáček Jiří, Mohr Pavel, Jonáš Juraj, Dudysová Daniela Urbaczka, Kostýlková Lenka, Fayette Dan, Krejčová Lucie, Baumann Silvie, Laskov Olga, Novák Tomáš

机构信息

National Institute of Mental Health, Prague, Czechia.

Department of Psychiatry, Third Faculty of Medicine, Charles University, Prague, Czechia.

出版信息

Front Syst Neurosci. 2021 Mar 30;15:611507. doi: 10.3389/fnsys.2021.611507. eCollection 2021.

Abstract

Increased frontal midline theta activity generated by the anterior cingulate cortex (ACC) is induced by conflict processing in the medial frontal cortex (MFC). There is evidence that theta band transcranial alternating current stimulation (θ-tACS) modulates ACC function and alters inhibitory control performance during neuromodulation. Multi-electric (256 electrodes) high definition θ-tACS (HD θ-tACS) using computational modeling based on individual MRI allows precise neuromodulation targeting of the ACC via the medial prefrontal cortex (mPFC), and optimizes the required current density with a minimum impact on the rest of the brain. We therefore tested whether the individualized electrode montage of HD θ-tACS with the current flow targeted to the mPFC-ACC compared with a fixed montage (non-individualized) induces a higher post-modulatory effect on inhibitory control. Twenty healthy subjects were randomly assigned to a sequence of three HD θ-tACS conditions (individualized mPFC-ACC targeting; non-individualized MFC targeting; and a sham) in a double-blind cross-over study. Changes in the Visual Simon Task, Stop Signal Task, CPT III, and Stroop test were assessed before and after each session. Compared with non-individualized θ-tACS, the individualized HD θ-tACS significantly increased the number of interference words and the interference score in the Stroop test. The changes in the non-verbal cognitive tests did not induce a parallel effect. This is the first study to examine the influence of individualized HD θ-tACS targeted to the ACC on inhibitory control performance. The proposed algorithm represents a well-tolerated method that helps to improve the specificity of neuromodulation targeting of the ACC.

摘要

前扣带回皮质(ACC)产生的额中回θ活动增加是由内侧前额叶皮质(MFC)的冲突处理诱导的。有证据表明,θ频段经颅交流电刺激(θ-tACS)在神经调节过程中调节ACC功能并改变抑制控制表现。基于个体MRI使用计算模型的多电极(256电极)高清θ-tACS(HD θ-tACS)能够通过内侧前额叶皮质(mPFC)对ACC进行精确的神经调节靶向,并以对大脑其他部分影响最小的方式优化所需的电流密度。因此,我们测试了与固定电极排列(非个体化)相比,电流流向mPFC-ACC的HD θ-tACS个体化电极排列是否对抑制控制产生更高的调制后效应。在一项双盲交叉研究中,20名健康受试者被随机分配到三种HD θ-tACS条件的序列中(个体化mPFC-ACC靶向;非个体化MFC靶向;以及假刺激)。在每个疗程前后评估视觉西蒙任务、停止信号任务、连续性能测试III和斯特鲁普测试的变化。与非个体化θ-tACS相比,个体化HD θ-tACS显著增加了斯特鲁普测试中的干扰词数量和干扰得分。非言语认知测试中的变化未产生平行效应。这是第一项研究针对ACC的个体化HD θ-tACS对抑制控制表现的影响。所提出的算法代表了一种耐受性良好的方法,有助于提高ACC神经调节靶向的特异性。

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