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首页> 外文期刊>Brain topography >Novel Multipin Electrode Cap System for Dry Electroencephalography
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Novel Multipin Electrode Cap System for Dry Electroencephalography

机译:新型干脑电图多针电极帽系统

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摘要

Current usage of electroencephalography (EEG) is limited to laboratory environments. Self-application of a multichannel wet EEG caps is practically impossible, since the application of state-of-the-art wet EEG sensors requires trained laboratory staff. We propose a novel EEG cap system with multipin dry electrodes overcoming this problem. We describe the design of a novel 24-pin dry electrode made from polyurethane and coated with Ag/AgCl. A textile cap system holds 97 of these dry electrodes. An EEG study with 20 volunteers compares the 97-channel dry EEG cap with a conventional 128-channel wet EEG cap for resting state EEG, alpha activity, eye blink artifacts and checkerboard pattern reversal visual evoked potentials. All volunteers report a good cap fit and good wearing comfort. Average impedances are below 150 k Omega for 92 out of 97 dry electrodes, enabling recording with standard EEG amplifiers. No significant differences are observed between wet and dry power spectral densities for all EEG bands. No significant differences are observed between the wet and dry global field power time courses of visual evoked potentials. The 2D interpolated topographic maps show significant differences of 3.52 and 0.44 % of the map areas for the N75 and N145 VEP components, respectively. For the P100 component, no significant differences are observed. Dry multipin electrodes integrated in a textile EEG cap overcome the principle limitations of wet electrodes, allow rapid application of EEG multichannel caps by non-trained persons, and thus enable new fields of application for multichannel EEG acquisition.
机译:脑电图(EEG)的当前使用仅限于实验室环境。由于要使用最先进的湿式EEG传感器需要训练有素的实验室工作人员,因此几乎不可能自我应用多通道湿式EEG瓶盖。我们提出了一种新颖的带有多针干电极的EEG帽系统,以克服这一问题。我们描述了一种新型的24针干式电极的设计,该电极由聚氨酯制成并涂有Ag / AgCl。纺织帽系统可容纳这些干电极中的97个。一项由20名志愿者进行的脑电图研究比较了97通道干式EEG帽和常规128通道湿式EEG帽在静息状态EEG,α活动,眨眼伪影和棋盘图案反转视觉诱发电位方面的优势。所有志愿者均报告其戴好帽子,佩戴舒适。 97个干电极中有92个的平均阻抗低于150 k Omega,可使用标准EEG放大器进行记录。对于所有EEG波段,湿功率谱干密度和干功率谱密度之间均未观察到显着差异。在视觉诱发电位的干湿湿地和干湿地全球动力时间过程之间未观察到显着差异。二维插值地形图分别显示N75和N145 VEP分量的地图面积分别有3.52%和0.44%的显着差异。对于P100组件,没有观察到明显差异。集成在纺织品EEG帽中的干式多针电极克服了湿电极的原理局限性,允许未经培训的人员快速使用EEG多通道帽,从而为多通道EEG采集开辟了新的应用领域。

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