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Ag:TiN-Coated Polyurethane for Dry Biopotential Electrodes: From Polymer Plasma Interface Activation to the First EEG Measurements

机译:用于生物干电极的Ag:TiN涂层聚氨酯:从聚合物等离子体界面活化到首次EEG测量

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摘要

Several plasma treatments using argon, oxygen, and nitrogen are studied in order to increase the interfacial adhesion of the polyurethane/Ag:TiN system to be used as biopotential electrodes. The optimized plasma treatments conditions (100 W, 15 min, regardless of the gas) promote a steep decrease of the water contact angle values. The observed chemical and topographic alterations translate into excellent polyurethane/Ag:TiN interfacial adhesion of the plasma treated samples. The in-service validation of the proposed Ag:TiN-coated PU multipin electrodes is performed by acquiring EEG signals in parallel with the standard wet Ag/AgCl electrodes. No considerable differences are found in terms of shape, amplitude, and spectral characteristics of the signals when comparing reference wet and dry electrodes.
机译:为了提高用作生物电势电极的聚氨酯/ Ag:TiN系统的界面粘合性,研究了使用氩,氧和氮的几种等离子体处理方法。优化的等离子处理条件(无论何种气体,100 W,15 min)都会使水接触角值急剧减小。观察到的化学和形貌变化转化为等离子体处理过的样品具有出色的聚氨酯/ Ag:TiN界面粘合力。通过与标准的湿式Ag / AgCl电极并行采集EEG信号,对提出的Ag:TiN涂层的PU多针电极进行在役验证。比较参考干电极和干电极时,在信号的形状,幅度和频谱特性方面没有发现显着差异。

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