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Mechanical characterization of neural electrodes based on PDMS-parylene C-PDMS sandwiched system

机译:基于PDMS-聚对二甲苯C-PDMS夹心系统的神经电极的机械表征

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Manufacturing of neural electrodes based on metal foil and silicone rubber using a laser is a simple and promising method. A handicap of such electrode arrays is the mechanical robustness of the thin metal tracks that connect the electrode sites with the interconnection pads. Embedding of structured parylene C foil in silicone rubber turned out to be an interesting method to increase the robustness. Test samples with 12.5 μm thick platinum tracks and a 15 μm thick embedded and RIE-structured parylene C foil showed more than 800 % higher ultimate strength until breakage of the tracks. Different structured parylene C foil showed increasing robustness with increasing hole-spacing.
机译:使用激光制造基于金属箔和硅橡胶的神经电极是一种简单而有前途的方法。这种电极阵列的障碍是将电极部位与互连垫连接的薄金属迹线的机械强度。事实证明,将结构化的聚对二甲苯C箔嵌入硅橡胶是提高耐用性的一种有趣方法。带有12.5μm厚的铂金迹线和15μm厚的嵌入式RIE结构的聚对二甲苯C箔的测试样品显示,直到磁道断裂之前,其极限强度都提高了800%以上。不同的结构聚对二甲苯C箔显示出随着孔间距的增加而增加的坚固性。

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