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A Lithographically-Patterned Elastic Multi-electrode Array for Surface Stimulation of the Spinal Cord

机译:用于脊髓表面刺激的光刻图案化弹性多电极阵列

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摘要

A new, scalable process for microfabrication of a silicone-based, elastic multi-electrode array (MEA) is presented. The device is constructed by spinning poly(dimethylsiloxane) (PDMS) silicone elastomer onto a glass slide, depositing and patterning gold to construct wires and electrodes, spinning on a second PDMS layer, and then micropatterning the second PDMS layer to expose electrode contacts. The micropatterning of PDMS involves a custom reactive ion etch (RIE) process that preserves the underlying gold thin film. Once completed, the device can be removed from the glass slide for conformal interfacing with neural tissue. Prototype MEAs feature electrodes smaller than those known to be reported on silicone substrate (60 μm diameter exposed electrode area) and were capable of selectively stimulating the surface of the in vitro isolated spinal cord of the juvenile rat. Stretchable serpentine traces were also incorporated into the functional PDMS-based MEA, and their implementation and testing is described.
机译:提出了一种新的,可扩展的用于微细制造基于硅酮的弹性多电极阵列(MEA)的工艺。通过将聚(二甲基硅氧烷)(PDMS)硅酮弹性体纺丝到载玻片上,沉积和构图金以构造导线和电极,在第二PDMS层上旋转,然后对第二PDMS层进行微构图以暴露电极触点,来构造该器件。 PDMS的微图案化涉及定制的反应性离子蚀刻(RIE)工艺,该工艺可以保护下面的金薄膜。完成后,可以从载玻片上取下设备,以与神经组织进行保形连接。原型MEA的电极小于已知在有机硅衬底上报告的电极(直径为60μm的裸露电极面积),并且能够选择性刺激未成年大鼠离体脊髓的表面。可伸展的蛇形痕迹也被并入了功能性的基于PDMS的MEA中,并描述了它们的实现和测试。

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