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Novel multi-sided, microelectrode arrays for implantable neural applications

机译:用于植入式神经应用的新型多面微电极阵列

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摘要

A new parylene-based microfabrication process is presented for neural recording and drug delivery applications. We introduce a large design space for electrode placement and structural flexibility with a six mask process. By using chemical mechanical polishing, electrode sites may be created top-side, back-side, or on the edge of the device having three exposed sides. Added surface area was achieved on the exposed edge through electroplating. Poly(3,4-ethylenedioxythiophene) (PEDOT) modified edge electrodes having an 85-μm~2 footprint resulted in an impedance of 200 kΩ at 1 kHz. Edge electrodes were able to successfully record single unit activity in acute animal studies. A finite element model of planar and edge electrodes relative to neuron position reveals that edge electrodes should be beneficial for increasing the volume of tissue being sampled in recording applications.
机译:提出了一种新的基于聚对二甲苯的微细加工工艺,用于神经记录和药物输送应用。我们通过六个掩膜工艺为电极放置和结构灵活性引入了较大的设计空间。通过使用化学机械抛光,可以在设备的顶侧,背侧或具有三个暴露侧的边缘上创建电极位置。通过电镀可以在裸露的边缘上增加表面积。聚(3,4-乙撑二氧噻吩)(PEDOT)修饰的边电极具有85μm〜2的覆盖面积,在1 kHz时的阻抗为200kΩ。边缘电极能够成功记录急性动物研究中的单个单元活动。相对于神经元位置的平面和边缘电极的有限元模型显示,边缘电极应有利于增加记录应用中采样的组织的体积。

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