Institute of Biomedical Engineering and Informatics, Technische Universität Ilmenau, 98693 Ilmenau, Germany.
Faculty of Information Technology, Monash University, Building 63, 25 Exhibition Walk, Clayton, VIC 3800, Australia.
Sensors (Basel). 2022 Oct 21;22(20):8079. doi: 10.3390/s22208079.
Dry electrodes for electroencephalography (EEG) allow new fields of application, including telemedicine, mobile EEG, emergency EEG, and long-term repetitive measurements for research, neurofeedback, or brain-computer interfaces. Different dry electrode technologies have been proposed and validated in comparison to conventional gel-based electrodes. Most previous studies have been performed at a single center and by single operators. We conducted a multi-center and multi-operator study validating multipin dry electrodes to study the reproducibility and generalizability of their performance in different environments and for different operators. Moreover, we aimed to study the interrelation of operator experience, preparation time, and wearing comfort on the EEG signal quality. EEG acquisitions using dry and gel-based EEG caps were carried out in 6 different countries with 115 volunteers, recording electrode-skin impedances, resting state EEG and evoked activity. The dry cap showed average channel reliability of 81% but higher average impedances than the gel-based cap. However, the dry EEG caps required 62% less preparation time. No statistical differences were observed between the gel-based and dry EEG signal characteristics in all signal metrics. We conclude that the performance of the dry multipin electrodes is highly reproducible, whereas the primary influences on channel reliability and signal quality are operator skill and experience.
干电极可用于脑电图(EEG),开辟了新的应用领域,包括远程医疗、移动 EEG、急救 EEG 以及用于研究、神经反馈或脑机接口的长期重复测量。与传统的凝胶基电极相比,已经提出并验证了多种不同的干电极技术。大多数先前的研究都是在单一中心和单一操作人员的情况下进行的。我们进行了一项多中心、多操作人员的研究,验证了多针干电极,以研究其在不同环境和不同操作人员中的性能的可重复性和通用性。此外,我们旨在研究操作人员经验、准备时间和佩戴舒适度对 EEG 信号质量的相互关系。使用干电极帽和凝胶基电极帽在 6 个不同的国家进行了 115 名志愿者的 EEG 采集,记录电极-皮肤阻抗、静息态 EEG 和诱发活动。干电极帽的平均通道可靠性为 81%,但平均阻抗高于凝胶基电极帽。然而,干电极帽的准备时间减少了 62%。在所有信号指标中,均未观察到凝胶基和干 EEG 信号特征之间存在统计学差异。我们得出结论,干多针电极的性能具有高度可重复性,而对通道可靠性和信号质量的主要影响是操作人员的技能和经验。