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Spiral Concentric Two Electrode Sensor Fabricated by Direct Writing for Skin Impedance Measurements

机译:通过直接写入制造的用于皮肤阻抗测量的螺旋同心两电极传感器

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摘要

In this paper, six versions of novel impedance sensors with electrodes of a form of two parallel spirals with different distances between conducting paths were elaborated. The electrodes were fabricated by direct writing technique with the use of gold polymer paste. To avoid an influence of anisotropic properties of the skin on measurements of the skin impedance, the spiral two-electrode sensors were proposed. Four resistance–capacitance-Warburg impedance models of the electrode/skin interfaces were proposed and tested. MilliQ water, KCl water solution at a concentration of 0.01 M, and human skin were used for the verification of adequacy of these models to fit the experimental data. It was stated that two of these models, A and B, have best fit to the experimental data. For measurements of skin with expected high impedance (dry skin), the sensors with the smaller distance between electrodes (version 2) should be used. Otherwise, when a patient has wet skin, which correlates with low impedance, the sensors with the larger distance between electrodes (version 7) should be applied. This is especially required when the measurements are carried out using mobile equipment, which typically has limitations related to the minimal measured impedance value.
机译:在本文中,精心设计了六个版本的新型阻抗传感器,其电极呈两个平行螺旋形式,导电路径之间的距离不同。通过使用金聚合物糊剂的直接书写技术来制造电极。为了避免皮肤的各向异性对皮肤阻抗的测量产生影响,提出了螺旋两电极传感器。提出并测试了电极/皮肤界面的四个电阻-电容-Warburg阻抗模型。使用MilliQ水,浓度为0.01 M的KCl水溶液和人体皮肤来验证这些模型是否适合实验数据。据指出,其中两个模型A和B最适合实验数据。为了测量具有预期高阻抗的皮肤(皮肤干燥),应使用电极之间距离较小的传感器(版本2)。否则,当患者皮肤湿润(与低阻抗相关)时,应使用电极之间距离较大的传感器(版本7)。当使用移动设备进行测量时,尤其需要这样做,因为移动设备通常具有与最小测量阻抗值有关的限制。

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