Department of Electrical Engineering, Institute of Imaging and Biomedical Photonics and Brain Research Center, National Chiao Tung University, Hsinchu 300, Taiwan.
IEEE Trans Biomed Eng. 2011 May;58(5):1200-7. doi: 10.1109/TBME.2010.2102353. Epub 2010 Dec 30.
A novel dry foam-based electrode for long-term EEG measurement was proposed in this study. In general, the conventional wet electrodes are most frequently used for EEG measurement. However, they require skin preparation and conduction gels to reduce the skin-electrode contact impedance. The aforementioned procedures when wet electrodes were used usually make trouble to users easily. In order to overcome the aforesaid issues, a novel dry foam electrode, fabricated by electrically conductive polymer foam covered by a conductive fabric, was proposed. By using conductive fabric, which provides partly polarizable electric characteristic, our dry foam electrode exhibits both polarization and conductivity, and can be used to measure biopotentials without skin preparation and conduction gel. In addition, the foam substrate of our dry electrode allows a high geometric conformity between the electrode and irregular scalp surface to maintain low skin-electrode interface impedance, even under motion. The experimental results presented that the dry foam electrode performs better for long-term EEG measurement, and is practicable for daily life applications.
本研究提出了一种新型的基于干泡沫的电极,用于长期 EEG 测量。通常,传统的湿电极最常用于 EEG 测量。然而,它们需要皮肤准备和传导凝胶来降低皮肤-电极接触阻抗。当使用湿电极时,上述程序通常会给用户带来麻烦。为了克服上述问题,提出了一种新型的干泡沫电极,由导电聚合物泡沫覆盖导电织物制成。通过使用提供部分可极化电特性的导电织物,我们的干泡沫电极既具有极化性又具有导电性,无需皮肤准备和传导凝胶即可用于测量生物电势。此外,我们的干电极的泡沫基底允许电极和不规则的头皮表面之间具有高的几何一致性,以保持低的皮肤-电极界面阻抗,即使在运动时也是如此。实验结果表明,干泡沫电极在长期 EEG 测量中表现更好,并且适用于日常生活应用。