PLUX Wireless Biosignals, 1050-059 Lisbon, Portugal.
NOVA School of Science and Technology, NOVA University of Lisbon, 2829-516 Caparica, Portugal.
Sensors (Basel). 2023 Jan 28;23(3):1468. doi: 10.3390/s23031468.
When long-term biosignal monitoring is required via surface electrodes, the use of conventional silver/silver chloride (Ag/AgCl) gelled electrodes may not be the best solution, as the gel in the electrodes tends to dry out over time. In this work, the electrical behaviour and performance of dry electrodes for biopotential monitoring was assessed. Three materials were investigated and compared against the gold-standard Ag/AgCl gelled electrodes. To characterize their electrical behaviour, the impedance response over the frequency was evaluated, as well as its signal to noise ratio. The electrodes' performance was evaluated by integrating them in a proven electrocardiogram (ECG) acquisition setup where an ECG signal was acquired simultaneously with a set of dry electrodes and a set of standard Ag/AgCl gelled electrodes as reference. The obtained results were morphologically compared using the Normalised Root Mean Squared Error (nRMSE) and the Cosine Similarity (CS). The findings of this work suggest that the use of dry electrodes for biopotential monitoring is a suitable replacement for the conventional Ag/AgCl gelled electrodes. The signal obtained with dry electrodes is comparable to the one obtained with the gold standard, with the advantage that these do not require the use of gel and can be easily integrated into fabric to facilitate their use in long-term monitoring scenarios.
当需要通过表面电极进行长期生物信号监测时,传统的银/氯化银(Ag/AgCl)凝胶电极可能不是最佳解决方案,因为电极中的凝胶会随着时间的推移而变干。在这项工作中,评估了用于生物电位监测的干电极的电气性能。研究了三种材料,并将其与金标准 Ag/AgCl 凝胶电极进行了比较。为了表征它们的电气性能,评估了它们在频率范围内的阻抗响应及其信噪比。通过将它们集成到经过验证的心电图(ECG)采集设置中,评估了电极的性能,在该设置中,同时使用一组干电极和一组标准 Ag/AgCl 凝胶电极作为参考来采集 ECG 信号。使用归一化均方根误差(nRMSE)和余弦相似度(CS)对获得的结果进行形态比较。这项工作的结果表明,使用干电极进行生物电位监测是传统 Ag/AgCl 凝胶电极的合适替代品。干电极获得的信号与金标准获得的信号相当,其优势在于这些电极不需要使用凝胶,并且可以很容易地集成到织物中,以方便在长期监测场景中使用。