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Low-Impedance Graphene – PEDOT-PSS Electrodes for Neural Recording and Stimulation in Implantable Medical Devices

机译:低阻抗石墨烯 - 用于植入医疗设备中的神经记录和刺激的PEDOT-PSS电极

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Flexible electrode arrays with low impedance are becoming critical to enhance single-neuron sensing with high sensitivity. Such electrodes should be scalable to micron dimensions and yet retain low impedance. The key to accomplish this is to achieve: a) higher effective surface area to obtain high capacitance, b) chemically stable and biocompatible materials with no adverse reactions and toxicity, and c) mechanically compliant structures for minimal scar tissue formation. Nanostructured electrode arrays with emerging materials such as graphene and PEDOT -PSS are projected to meet all these requirements. Graphene - PEDOT-PSS films were transferred onto flexible LCP (liquid crystal polymer) substrates to form neural electrode recording arrays. These electrodes were subsequently integrated with flexible passive wireless neural recording sensors to form low-impedance (<1 Ohms-cm2) neural recording units. Impedance enhancements were simulated and validated with an electrochemical analyzer in a phosphate buffered saline PBS solution. In addition, evoked potentials during pulse stimulation were recorded to show improved signal - noise ratio with low-impedance electrodes.
机译:具有低阻抗的柔性电极阵列对于增强具有高灵敏度的单神经元感测至关重要。这种电极应可伸缩至微米尺寸,但保持低阻抗。实现这一目标的关键是实现:a)更高的有效表面积,获得高电容,b)化学稳定和生物相容性的材料,没有不良反应和毒性,以及C)机械稳定的结构,用于最小的瘢痕组织形成。纳米结构电极阵列具有诸如石墨烯和PEDOT-SPS的新出现的材料,以满足所有这些要求。将石墨烯 - 将PETOT-PSS膜转移到柔性LCP(液晶聚合物)基板上以形成神经电极记录阵列。随后将这些电极与柔性无源无线神经记录传感器集成,以形成低阻抗(<1欧姆-cm 2 )神经记录单元。模拟阻抗增强并用磷酸盐缓冲盐水PBS溶液中的电化学分析仪验证。另外,记录脉冲刺激期间的诱发电位以显示出具有低阻抗电极的改善的信噪比。

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