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首页> 外文期刊>Scientific reports. >Novel bifunctional cap for simultaneous electroencephalography and transcranial electrical stimulation
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Novel bifunctional cap for simultaneous electroencephalography and transcranial electrical stimulation

机译:同时进行脑电图和经颅电刺激的新型双功能帽

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摘要

Neuromodulation induced by transcranial electric stimulation (TES) exhibited promising potential for clinical practice. However, the underlying mechanisms remain subject of research. The combination of TES and electroencephalography (EEG) offers great potential for investigating these mechanisms and brain function in general, especially when performed simultaneously. In conventional applications, the combination of EEG and TES suffers from limitations on the electrode level (gel for electrode-skin interface) and the usability level (preparation time, reproducibility of positioning). To overcome these limitations, we designed a bifunctional cap for simultaneous TES–EEG applications. We used novel electrode materials, namely textile stimulation electrodes and dry EEG electrodes integrated in a flexible textile cap. We verified the functionality of this cap by analysing the effect of TES on visual evoked potentials (VEPs). In accordance with previous reports using standard TES, the amplitude of the N75 component was significantly decreased post-stimulation, indicating the feasibility of using this novel flexible cap for simultaneous TES and EEG. Further, we found a significant reduction of the P100 component only during TES, indicating a different brain modulation effect during and after TES. In conclusion, the novel bifunctional cap offers a novel tool for simultaneous TES–EEG applications in clinical research, therapy monitoring and closed-loop stimulation.
机译:经颅电刺激(TES)诱导的神经调节表现出临床实践的潜力。然而,潜在的机制仍然是研究的主题。 TES和脑电图(EEG)的结合为研究这些机制和脑功能提供了巨大的潜力,尤其是同时进行时。在常规应用中,EEG和TES的组合受到电极水平(用于电极-皮肤界面的凝胶)和可用性水平(制备时间,定位的可重复性)的限制。为了克服这些限制,我们为同时进行TES-EEG应用设计了一个双功能盖。我们使用了新颖的电极材料,即集成在柔性纺织帽中的纺织物刺激电极和干式EEG电极。我们通过分析TES对视觉诱发电位(VEP)的影响,验证了此上限的功能。根据以前使用标准TES的报告,N75分量的振幅在刺激后显着降低,表明使用这种新型柔性帽同时进行TES和EEG的可行性。此外,我们发现仅在TES期间P100成分显着降低,表明TES期间和之后具有不同的大脑调节作用。总之,新型双功能帽为在临床研究,治疗监测和闭环刺激中同时进行TES-EEG应用提供了一种新颖的工具。

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