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首页> 外文期刊>Microelectromechanical Systems, Journal of >Fabrication and Characterization of a Parylene-Based Three-Dimensional Microelectrode Array for Use in Retinal Prosthesis
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Fabrication and Characterization of a Parylene-Based Three-Dimensional Microelectrode Array for Use in Retinal Prosthesis

机译:用于视网膜假体的基于聚对二甲苯的三维微电极阵列的制备和表征

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摘要

A novel Parylene-based shape-transferring technique was developed to fabricate 3-D microelectrodes, which fulfilled the requirements of the high-density microelectrode array (MEA) used in retinal prosthesis. A process combining anisotropic and isotropic etching was utilized to form the 3-D silicon-tip array whose shape was transferred to the Parylene C film as a flexible and biocompatible substrate. Platinum was chosen as the electrode material owing to its high charge delivery capacity and chemical inertness in the physiological environment. An aluminum-photoresist dual-layer lift-off process was employed for platinum patterning on the substrate with high tips. To avoid the cracking problem existing in the platinum-Parylene C structure, a gold intermediate layer was introduced to retard the tendency. To test the superiority of the present 3-D flexible MEA compared with the planar one, electrical properties of MEAs were characterized both in vitro and in vivo. The experimental results showed that the impedance of the 3-D electrode was about 72.7% of the planar one at 1 kHz with the same footprint in vitro, and 71.5% in vivo. The preliminary surgical experiment validated the feasibility of the 3-D MEA in retinal prosthesis.
机译:开发了一种新颖的基于聚对二甲苯的形状转移技术来制造3-D微电极,该技术可满足用于视网膜假体的高密度微电极阵列(MEA)的要求。利用各向异性和各向同性蚀刻相结合的工艺来形成3-D硅尖端阵列,其形状已转移到作为柔性和生物相容性衬底的Parylene C膜上。选择铂作为电极材料是由于其在生理环境中的高电荷传递能力和化学惰性。采用铝光阻双层剥离工艺在具有高尖端的基板上进行铂构图。为了避免铂-对二甲苯C结构中存在的开裂问题,引入了金中间层以缓和该趋势。为了测试本发明的3-D柔性MEA与平面MEA相比的优越性,在体外和体内对MEA的电性能进行了表征。实验结果表明,在相同的足迹下,在体外,在体内1kHz时,3-D电极的阻抗约为平面电极的72.7%,而在体内则为71.5%。初步的外科手术实验证实了3-D MEA在视网膜假体中的可行性。

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