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Poly(3,4-ethylenedioxythiophene) (PEDOT) polymer coatings facilitate smaller neural recording electrodes

机译:聚(3,4-亚乙二氧基噻吩)(pEDOT)聚合物涂层有利于较小的神经记录电极

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摘要

We investigated using poly(3,4-ethylenedioxythiophene) (PEDOT) to lower the impedance of small, gold recording electrodes with initial impedances outside of the effective recording range. Smaller electrode sites enable more densely packed arrays, increasing the number of input and output channels to and from the brain. Moreover, smaller electrode sizes promote smaller probe designs; decreasing the dimensions of the implanted probe has been demonstrated to decrease the inherent immune response, a known contributor to the failure of long-term implants. As expected, chronically implanted control electrodes were unable to record well-isolated unit activity, primarily as a result of a dramatically increased noise floor. Conversely, electrodes coated with PEDOT consistently recorded high-quality neural activity, and exhibited a much lower noise floor than controls. These results demonstrate that PEDOT coatings enable electrode designs 15 µm in diameter.
机译:我们研究了使用聚(3,4-乙撑二氧噻吩)(PEDOT)降低初始阻抗在有效记录范围之外的小型金记录电极的阻抗。较小的电极位置可以使阵列更密集,从而增加了进出大脑的输入和输出通道的数量。此外,较小的电极尺寸可促进较小的探头设计。已经证明减小植入探针的尺寸可以减少固有的免疫反应,这是长期植入失败的已知原因。正如预期的那样,长期植入的控制电极无法记录良好隔离的单位活动,这主要是由于本底噪声急剧增加的结果。相反,涂有PEDOT的电极始终记录高质量的神经活动,并且显示出比对照组低得多的本底噪声。这些结果表明,PEDOT涂层可实现直径为15 µm的电极设计。

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