Baek Changhoon, Seo Jong-Mo
Annu Int Conf IEEE Eng Med Biol Soc. 2019 Jul;2019:5129-5132. doi: 10.1109/EMBC.2019.8857390.
Cyclic olefin copolymer (COC) is a polymer that has recently been attracting attention in optics and microfluidic applications due to its high solvent resistance, biocompatibility, thermoplasticity, and optical transparency. It also has very low water absorption rate, which makes COC a very good candidate for packaging material for implantable neural prosthetic devices. In this study, we investigated the possibilities of fabricating COC into a neural electrode. We started by heat-compressing COC pellets to form films. After oxygen plasma surface treatment, a thin layer of gold was deposited. Then, a standard photolithography technique was used to pattern the gold. Finally, the paths were insulated using an extra film of COC. The validity of the fabricated electrode was confirmed by metal contact test and soak testing in PBS solution for a week.
环烯烃共聚物(COC)是一种聚合物,由于其高耐溶剂性、生物相容性、热塑性和光学透明性,最近在光学和微流体应用中受到关注。它的吸水率也非常低,这使得COC成为植入式神经假体装置包装材料的理想选择。在本研究中,我们研究了将COC制成神经电极的可能性。我们首先通过热压COC颗粒形成薄膜。经过氧等离子体表面处理后,沉积一层薄金。然后,使用标准光刻技术对金进行图案化。最后,使用额外的COC薄膜对路径进行绝缘。通过金属接触测试和在PBS溶液中浸泡一周的测试,证实了所制备电极的有效性。