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Dry Electrodes for Surface Electromyography Based on Architectured Titanium Thin Films

机译:基于钛结构薄膜的表面肌电图干电极

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摘要

Electrodes of silver/silver chloride (Ag/AgCl) are dominant in clinical settings for surface electromyography (sEMG) recordings. These electrodes need a conductive electrolyte gel to ensure proper performance, which dries during long-term measurements inhibiting the immediate electrode’s reuse and is often linked to skin irritation episodes. To overcome these drawbacks, a new type of dry electrodes based on architectured titanium (Ti) thin films were proposed in this work. The architectured microstructures were zigzags, obtained with different sputtering incidence angles (α), which have been shown to directly influence the films’ porosity and electrical conductivity. The electrodes were prepared using thermoplastic polyurethane (TPU) and stainless-steel (SS) substrates, and their performance was tested in male volunteers (athletes) by recording electromyography (EMG) signals, preceded by electrode-skin impedance measurements. In general, the results showed that both SS and TPU dry electrodes can be used for sEMG recordings. While SS electrodes almost match the signal quality parameters of reference electrodes of Ag/AgCl, the performance of electrodes based on TPU functionalized with a Ti thin film still requires further improvements. Noteworthy was the clear increase of the signal to noise ratios when the thin films’ microstructure evolved from normal growth towards zigzag microstructures, meaning that further tailoring of the thin film microstructure is a possible route to achieve optimized performances. Finally, the developed dry electrodes are reusable and allow for multiple EMG recordings without being replaced.
机译:银/氯化银(Ag / AgCl)电极在表面肌电图(sEMG)记录的临床设置中占主导地位。这些电极需要导电的电解质凝胶来确保适当的性能,该凝胶在长期测量过程中会变干,从而抑制了电极的立即使用,并且经常与皮肤刺激发作有关。为了克服这些缺点,在这项工作中提出了一种新型的基于结构化钛(Ti)薄膜的干电极。结构化的微结构是之字形,通过不同的溅射入射角(α)获得,已显示出它们直接影响薄膜的孔隙率和电导率。电极是使用热塑性聚氨酯(TPU)和不锈钢(SS)基材制备的,并通过记录肌电图(EMG)信号在男性志愿者(运动员)中测试其性能,然后进行电极-皮肤阻抗测量。通常,结果表明SS和TPU干电极均可用于sEMG记录。尽管SS电极几乎与Ag / AgCl参比电极的信号质量参数匹配,但基于用Ti薄膜功能化的TPU的电极的性能仍需要进一步改进。值得注意的是,当薄膜的微观结构从正常生长向之字形微观结构发展时,信噪比明显增加,这意味着进一步调整薄膜微观结构是实现最佳性能的一种可能途径。最后,开发的干电极可重复使用,并且无需更换即可进行多次EMG记录。

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