Institute of Biomedical Engineering and Informatics, Technische Universität Ilmenau, Ilmenau, Germany.
Faculdade de Engenharia, Departamento de Engenharia Metalúrgica e de Materiais, Universidade do Porto, Porto, Portugal.
Hum Brain Mapp. 2022 Mar;43(4):1295-1308. doi: 10.1002/hbm.25721. Epub 2021 Nov 19.
High-density electroencephalography (HD-EEG) is currently limited to laboratory environments since state-of-the-art electrode caps require skilled staff and extensive preparation. We propose and evaluate a 256-channel cap with dry multipin electrodes for HD-EEG. We describe the designs of the dry electrodes made from polyurethane and coated with Ag/AgCl. We compare in a study with 30 volunteers the novel dry HD-EEG cap to a conventional gel-based cap for electrode-skin impedances, resting state EEG, and visual evoked potentials (VEP). We perform wearing tests with eight electrodes mimicking cap applications on real human and artificial skin. Average impedances below 900 kΩ for 252 out of 256 dry electrodes enables recording with state-of-the-art EEG amplifiers. For the dry EEG cap, we obtained a channel reliability of 84% and a reduction of the preparation time of 69%. After exclusion of an average of 16% (dry) and 3% (gel-based) bad channels, resting state EEG, alpha activity, and pattern reversal VEP can be recorded with less than 5% significant differences in all compared signal characteristics metrics. Volunteers reported wearing comfort of 3.6 ± 1.5 and 4.0 ± 1.8 for the dry and 2.5 ± 1.0 and 3.0 ± 1.1 for the gel-based cap prior and after the EEG recordings, respectively (scale 1-10). Wearing tests indicated that up to 3,200 applications are possible for the dry electrodes. The 256-channel HD-EEG dry electrode cap overcomes the principal limitations of HD-EEG regarding preparation complexity and allows rapid application by not medically trained persons, enabling new use cases for HD-EEG.
高密度脑电图(HD-EEG)目前仅限于实验室环境,因为最先进的电极帽需要熟练的工作人员和广泛的准备。我们提出并评估了一种带有干多针电极的 256 通道帽,用于 HD-EEG。我们描述了由聚氨酯制成并涂有 Ag/AgCl 的干电极的设计。我们在一项涉及 30 名志愿者的研究中比较了新型干式 HD-EEG 帽与传统的基于凝胶的帽在电极-皮肤阻抗、静息状态脑电图和视觉诱发电位(VEP)方面的性能。我们使用八个电极进行佩戴测试,这些电极模拟了实际人体和人造皮肤上的帽应用。256 个干电极中有 252 个的平均阻抗低于 900 kΩ,可与最先进的 EEG 放大器一起使用。对于干式 EEG 帽,我们获得了 84%的通道可靠性,并将准备时间缩短了 69%。在排除平均 16%(干式)和 3%(基于凝胶的)不良通道后,静息状态脑电图、α 活动和模式反转 VEP 可以以小于 5%的所有比较信号特征指标的差异进行记录。志愿者在脑电图记录前后分别报告了 3.6±1.5 和 4.0±1.8(1-10 分制)的干电极和 2.5±1.0 和 3.0±1.1(1-10 分制)的凝胶基电极的佩戴舒适度。佩戴测试表明,干电极最多可进行 3200 次应用。256 通道 HD-EEG 干电极帽克服了 HD-EEG 在准备复杂性方面的主要限制,并允许未经医学培训的人员快速应用,为 HD-EEG 开辟了新的应用场景。