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Opposite effects of high- and low-frequency transcranial random noise stimulation probed with visual motion adaptation

机译:视觉运动适应探测高频和低频经颅随机噪声刺激的相反作用

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摘要

Transcranial random noise stimulation (tRNS) is a recent neuro-modulation technique whose effects at both behavioural and neural level are still debated. Here we employed the well-known phenomenon of motion after-effect (MAE) in order to investigate the effects of high- vs. low-frequency tRNS on motion adaptation and recovery. Participants were asked to estimate the MAE duration following prolonged adaptation (20 s) to a complex moving pattern, while being stimulated with either sham or tRNS across different blocks. Different groups were administered with either high- or low-frequency tRNS. Stimulation sites were either bilateral human MT complex (hMT>+) or frontal areas. The results showed that, whereas no effects on MAE duration were induced by stimulating frontal areas, when applied to the bilateral hMT>+, high-frequency tRNS caused a significant decrease in MAE duration whereas low-frequency tRNS caused a significant corresponding increase in MAE duration. These findings indicate that high- and low-frequency tRNS have opposed effects on the adaptation-dependent unbalance between neurons tuned to opposite motion directions, and thus on neuronal excitability.
机译:经颅随机噪声刺激(tRNS)是一种最新的神经调节技术,其在行为和神经水平上的作用尚有争议。在这里,我们采用了众所周知的运动后效应(MAE)现象,以研究高频与低频tRNS对运动适应和恢复的影响。要求参与者估计长时间适应复杂运动模式(20秒)后,同时在不同区域内通过假手术或tRNS刺激的MAE持续时间。高频率或低频率的tRNS分别用于不同的组。刺激部位是双边人类MT复合物(hMT > + )或额叶区域。结果表明,尽管刺激额叶区域不会对MAE持续时间产生影响,但将其应用于双侧hMT > + 时,高频tRNS导致MAE显着降低低频tRNS导致MAE持续时间显着增加。这些发现表明,高频率和低频率的tRNS对调谐至相反运动方向的神经元之间的适应依赖性不平衡具有相反的影响,从而对神经元兴奋性具有相反的影响。

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