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增强 Ti-Ag 干电极在远程生物医学应用中的寿命和功能:全面研究。

Enhancing the Longevity and Functionality of Ti-Ag Dry Electrodes for Remote Biomedical Applications: A Comprehensive Study.

机构信息

Physics Centre of Minho and Porto Universities (CF-UM-UP), University of Minho, 4710-057 Braga, Portugal.

LaPMET-Laboratory of Physics for Materials and Emergent Technologies, University of Minho, 4710-057 Braga, Portugal.

出版信息

Sensors (Basel). 2023 Oct 8;23(19):8321. doi: 10.3390/s23198321.

Abstract

This study aims to evaluate the lifespan of Ti-Ag dry electrodes prepared using flexible polytetrafluoroethylene (PTFE) substrates. Following previous studies, the electrodes were designed to be integrated into wearables for remote electromyography (EMG) monitoring and electrical stimulation (FES) therapy. Four types of Ti-Ag electrodes were prepared by DC magnetron sputtering, using a pure-Ti target doped with a growing number of Ag pellets. After extensive characterization of their chemical composition and (micro)structural evolution, the Ti-Ag electrodes were immersed in an artificial sweat solution (standard ISO-3160-2) at 37 °C with constant stirring. Results revealed that all the Ti-Ag electrodes maintained their integrity and functionality for 24 h. Although there was a notable increase in electrical resistivity beyond this timeframe, the acquisition and transmission of (bio)signals remained viable for electrodes with Ag/Ti ratios below 0.23. However, electrodes with higher Ag content (Ag/Ti = 0.31) became insulators after 7 days of immersion due to excessive Ag release into the sweat solution. This study concludes that higher Ag/Ti atomic ratios result in heightened corrosion processes on the electrode's surface, consequently diminishing their lifespan despite the advantages of incorporating Ag into their composition. This research highlights the critical importance of evaluating electrode longevity, especially in remote biomedical applications like smart wearables, where electrode performance over time is crucial for reliable and sustained monitoring and stimulation.

摘要

本研究旨在评估使用柔性聚四氟乙烯(PTFE)基底制备的 Ti-Ag 干电极的寿命。根据先前的研究,这些电极设计用于可穿戴设备中,用于远程肌电图(EMG)监测和电刺激(FES)治疗。通过直流磁控溅射法,使用掺杂有越来越多 Ag 颗粒的纯 Ti 靶材,制备了四种 Ti-Ag 电极。在对其化学成分和(微观)结构演化进行广泛表征后,将 Ti-Ag 电极在 37°C 下的人工汗液溶液(标准 ISO-3160-2)中进行浸泡,并进行恒定搅拌。结果表明,所有 Ti-Ag 电极在 24 小时内都保持其完整性和功能性。尽管超过这个时间点后,电阻显著增加,但对于 Ag/Ti 比低于 0.23 的电极,(生物)信号的获取和传输仍然可行。然而,Ag 含量较高(Ag/Ti = 0.31)的电极在浸泡 7 天后因过多的 Ag 释放到汗液溶液中而变成绝缘体。本研究得出结论,较高的 Ag/Ti 原子比会导致电极表面的腐蚀过程加剧,从而缩短其寿命,尽管将 Ag 纳入其组成中具有优势。这项研究强调了评估电极寿命的重要性,特别是在远程生物医学应用中,如智能可穿戴设备,其中电极在一段时间内的性能对于可靠和持续的监测和刺激至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/795e/10575150/863bc23f6e16/sensors-23-08321-g001.jpg

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