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Bi-directional modulation of somatosensory mismatch negativity with transcranial direct current stimulation: an event related potential study

机译:经颅直流电刺激对体感失配负向的双向调节:与事件相关的潜在研究

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摘要

Appropriate orientation towards potentially salient novel environmental stimuli requires a system capable of detecting change in the sensorium. Mismatch negativity (MMN), an evoked potential calculated by subtracting the response to a standard repeated stimulus and a rare “oddball” stimulus, is proposed as such a change detection mechanism. It is most widely studied in the auditory domain, but here we chose to explore the mechanism of somatosensory MMN, and specifically its dependence on the cerebellum. We recorded event-related potentials (ERPs) evoked in response to auditory and sensory stimuli from 10 healthy subjects before and after anodal, cathodal and sham transcranial direct current stimulation (tDCS) of the right cerebellar hemisphere. There was a significant increase in peak amplitude of somatosensory MMN after anodal tDCS (F(1,9) = 8.98, P < 0.02, mean difference anodal pre–post: −1.02 μV) and a significant reduction in peak amplitude of somatosensory MMN after cathodal tDCS (F(1,9) = 7.15, P < 0.03, mean difference cathodal pre–post: 0.65 μV). The amplitude of auditory MMN was unchanged by tDCS. These results reveal the capability of tDCS to cause bidirectional modulation of somatosensory MMN and the dependence of somatosensory MMN on the cerebellum.
机译:面向潜在的重要新环境刺激的适当方向需要一种能够检测感觉层变化的系统。作为这种变化检测机制,提出了不匹配负性(MMN),即通过减去对标准重复刺激和稀有“奇数”刺激的响应而计算出的诱发电位。它在听觉领域研究最广泛,但在这里我们选择探索体感MMN的机制,尤其是其对小脑的依赖性。我们记录了来自右侧小脑半球的阳极,阴极和假经颅直流电刺激(tDCS)前后10位健康受试者的听觉和感觉刺激引起的事件相关电位(ERP)。阳极tDCS后,体感MMN的峰值幅度显着增加(F(1,9)= 8.98,P <0.02,阳极前-后平均差:−1.02μV),体感MMN的峰值幅度显着降低阴极tDCS(F(1,9)= 7.15,P <0.03,阴极前后的平均差:0.65μV)。 tDCS对听觉MMN的幅度没有影响。这些结果揭示了tDCS引起体感MMN的双向调制的能力以及体感MMN对小脑的依赖性。

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