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多针干 EEG 电极的接触压力和灵活性。

Contact Pressure and Flexibility of Multipin Dry EEG Electrodes.

出版信息

IEEE Trans Neural Syst Rehabil Eng. 2018 Apr;26(4):750-757. doi: 10.1109/TNSRE.2018.2811752.

Abstract

In state-of-the-art electroencephalography (EEG) Silver/Silver-Chloride electrodes are applied together with electrolyte gels or pastes. Their application requires extensive preparation, trained medical staff and limits measurement time and mobility. We recently proposed a novel multichannel cap system for dry EEG electrodes for mobile and out-of-the-lab EEG acquisition. During the tests with these novel polymer-based multipin dry electrodes, we observed that the quality of the recording depends on the applied normal force and resulting contact pressure. Consequently, in this paper we systematically investigate the influence of electrode-skin contact pressure and electrode substrate flexibility on interfacial impedance and perceived wearing comfort in a study on 12 volunteers. The normal force applied to the electrode was varied between the minimum required force to achieve impedances and a maximum of 4 N, using a new force measurement applicator. We found that for a polymer shore hardness A98, with increasing normal force, the impedance decreases from and to and at frontal hairless and temporal hairy positions, respectively. Similar results were obtained for shore A90, A80, and A70. The best compromise of low and stable impedances as well as a good wearing comfort was determined for applied normal forces between 2 and 3 N using electrodes with shore A98 or A90. Our results provide the basis for improved EEG cap designs with optimal wearing comfort and recording quality for dry multipin electrodes, which will enable new fields of application for EEG.

摘要

在最先进的脑电图 (EEG) 中,银/氯化银电极与电解质凝胶或糊剂一起使用。它们的应用需要大量的准备工作、训练有素的医疗人员,并且限制了测量时间和移动性。我们最近提出了一种新型的用于干电极 EEG 的多通道帽系统,用于移动和实验室外的 EEG 采集。在使用这些新型聚合物多针干电极的测试中,我们观察到记录的质量取决于施加的正压力和由此产生的接触压力。因此,在这项研究中,我们系统地研究了电极 - 皮肤接触压力和电极衬底柔韧性对界面阻抗和 12 名志愿者佩戴舒适度的影响。使用新的力测量敷贴器,将电极上施加的正压力在达到阻抗所需的最小力和 4 N 之间进行了变化。我们发现,对于聚合物肖氏硬度 A98,随着正压力的增加,阻抗从和分别降低到额无毛和颞有毛位置。对于肖氏硬度 A90、A80 和 A70 也得到了类似的结果。使用肖氏硬度 A98 或 A90 的电极,施加的正压力在 2 到 3 N 之间时,可获得低且稳定的阻抗以及良好的佩戴舒适度的最佳折衷方案。我们的结果为具有最佳佩戴舒适度和记录质量的干多针电极的 EEG 帽设计提供了基础,这将为 EEG 开辟新的应用领域。

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