Flexible graphene/GO electrode for gel-free EEG.

IF 3.7 3区 医学 Q2 ENGINEERING, BIOMEDICAL Journal of neural engineering Pub Date : 2021-05-18 DOI:10.1088/1741-2552/abf609
Li-Wei Ko, Cheng-Hua Su, Pei-Lun Liao, Jui-Ting Liang, Yao-Hsuan Tseng, Shih-Hsun Chen
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引用次数: 10

Abstract

Objective.Developments in electroencephalography (EEG) technology have allowed the use of the brain-computer interface (BCI) outside dedicated labratories. In order to achieve long-term monitoring and detection of EEG signals for BCI application, dry electrodes with good signal quality and high bio compatibility are essential. In 2016, we proposed a flexible dry electrode made of silicone gel and Ag flakes, which showed good signal quality and mechanical robustness. However, the Ag components used in our previous design made the electrode too expensive for commercial adaptation.Approach.In this study, we developed an affordable dry electrode made of silicone gel, metal flakes and graphene/GO based on our previous design. Two types of electrodes with different graphene/GO proportions were produced to explore how the amount of graphene/GO affects the electrode.Main results.During our tests, the electrodes showed low impedance and had good signal correlation to conventional wet electrodes in both the time and frequency domains. The graphene/GO electrode also showed good signal quality in eyes-open EEG recording. We also found that the electrode with more graphene/GO had an uneven surface and worse signal quality. This suggests that adding too much graphene/GO may reduce the electrods' performance. Furthermore, we tested the proposed dry electrodes' capability in detecting steady state visually evoked potential. We found that the dry electrodes can reliably detect evoked potential changes even in the hairy occipital area.Significance.Our results showed that the proposed electrode has good signal quality and is ready for BCI applications.

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用于无凝胶EEG的柔性石墨烯/氧化石墨烯电极。
目标。脑电图(EEG)技术的发展使得在专用实验室之外使用脑机接口(BCI)成为可能。为了实现脑机接口应用中脑电信号的长期监测和检测,具有良好信号质量和高生物相容性的干电极是必不可少的。2016年,我们提出了一种由硅凝胶和银片制成的柔性干电极,该电极具有良好的信号质量和机械稳健性。然而,在我们之前的设计中使用的Ag成分使得电极过于昂贵,无法进行商业应用。在这项研究中,我们在之前的设计基础上开发了一种经济实惠的由硅凝胶、金属薄片和石墨烯/氧化石墨烯制成的干电极。制备了两种不同石墨烯/氧化石墨烯比例的电极,以探索石墨烯/氧化石墨烯用量对电极的影响。主要的结果。在我们的测试中,电极显示出低阻抗,并且在时间和频率域与传统湿电极具有良好的信号相关性。石墨烯/氧化石墨烯电极在睁眼脑电图记录中也显示出良好的信号质量。我们还发现,石墨烯/氧化石墨烯含量较高的电极表面不均匀,信号质量较差。这表明添加过多的石墨烯/氧化石墨烯可能会降低电极的性能。此外,我们测试了所提出的干电极检测稳态视觉诱发电位的能力。结果表明,该电极具有良好的信号质量,可应用于脑机接口(BCI)。
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来源期刊
Journal of neural engineering
Journal of neural engineering 工程技术-工程:生物医学
CiteScore
7.80
自引率
12.50%
发文量
319
审稿时长
4.2 months
期刊介绍: The goal of Journal of Neural Engineering (JNE) is to act as a forum for the interdisciplinary field of neural engineering where neuroscientists, neurobiologists and engineers can publish their work in one periodical that bridges the gap between neuroscience and engineering. The journal publishes articles in the field of neural engineering at the molecular, cellular and systems levels. The scope of the journal encompasses experimental, computational, theoretical, clinical and applied aspects of: Innovative neurotechnology; Brain-machine (computer) interface; Neural interfacing; Bioelectronic medicines; Neuromodulation; Neural prostheses; Neural control; Neuro-rehabilitation; Neurorobotics; Optical neural engineering; Neural circuits: artificial & biological; Neuromorphic engineering; Neural tissue regeneration; Neural signal processing; Theoretical and computational neuroscience; Systems neuroscience; Translational neuroscience; Neuroimaging.
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