论文标题

快速制造低阻抗,3D干电极,用于生理感应

Rapid Fabrication of Low Impedance, 3D Dry Electrodes for Physiological Sensing

论文作者

Kaveh, Ryan, Tetreault, Natalie, Gopalan, Karthik, Maravilla, Julian, Lustig, Michael, Muller, Rikky, Arias, Ana C.

论文摘要

可以研究身体和诊断疾病的医学电生理传感器取决于始终低阻抗电极界面。临床标准湿电极使用水凝胶和皮肤磨损来改善界面,从而改善了记录的信号质量。这些电极对自我管理和阻碍了家庭护理具有挑战性。可穿戴的干电极更实用;但是,它们显示出比湿电极更高的阻抗,并且定制的昂贵。这项工作提出了一种制造方法,可快速产生低阻抗,解剖上不需要水凝胶的干燥电极。通过使用带有3D打印的电气铜和金镀金,可以以现有真空沉积技术成本的一小部分来优化生物相容性电极。在典型的情况下,用此过程制成的示例3D干电极与临床标准设备一起评估,以比较电气性能和舒适性。所得的干电极在50Hz时表现出平均电极皮肤阻抗为66.7kΩ,而直流偏移-20 mV,而没有任何水凝胶,当面积归一化时,该凝胶均在没有皮肤磨损的湿电极所达到的范围内。

Medical electrophysiological sensors that can study the body and diagnose diseases depend on consistently low impedance electrode-skin interfaces. Clinical-standard wet electrodes use hydrogels and skin abrasion to improve the interface and thus the recorded signal quality. These electrodes are challenging to self-administer and impede in-home care. Wearable dry electrodes are more practical; however, they show higher impedances than wet electrodes and are costly to customize. This work presents a fabrication method for rapidly producing low impedance, anatomically fit dry electrodes that do not require hydrogels. By using electroless copper and gold plating with 3D printing, biocompatible electrodes can be optimized for individuals at a fraction of the cost of existing vacuum deposition-based techniques. Example 3D dry electrodes made with this process are evaluated alongside clinical-standard devices in typical scenarios to compare electrical performance and comfort. The resulting dry electrodes exhibited an average electrode-skin impedance of 66.7 kΩ at 50Hz and DC offset of -20 mV without any hydrogel, which, when area normalized, is within the range achieved by wet electrodes without skin abrasion.

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