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A Novel Technique for Increasing Charge Injection Capacity of Neural Electrodes for Efficacious and Safe Neural Stimulation

机译:一种新型技术,用于增加神经电极的电荷注射能力,有效和安全的神经刺激

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Neural prostheses require chronically implanted small area penetrating electrode arrays that can stimulate and record neural activity. The fundamental requirement of neural electrodes is to have low interface impedance and large charge injection capacity (CIC). To achieve this fundamental requirement, we developed a novel technique to modify the surface of the Utah Electrode Array (UEA) to increase the real surface area without changing the geometrical surface area. Pt was coated on modified and unmodified (control) UEAs and electrochemical characterization such as impedance and CIC was measured and compared. The surface modified electrode impedance and CIC was ~188 Ohm and ~24 mC/cm~2 respectively. Increasing the real surface area of electrodes decreases the impedance by 1000 times and increases the CIC by 80 times compared to the control samples. The CIC of modified UEA was significantly higher than of any material reported in the literature, higher than sputtered iridium oxide (4 mC/cm~2) or PEDOT (15 mC/cm~2).
机译:神经假体需要长期植入的小区域穿透电极阵列,其可以刺激和记录神经活动。神经电极的根本要求是具有低界面阻抗和大电荷注入容量(CIC)。为了实现这一基本要求,我们开发了一种新颖的技术来修改犹他州电极阵列(UEA)的表面,以增加实际表面积而不改变几何表面积。在改性和​​未改性(对照)UEA上涂覆PT,并测量并比较电化学表征,例如阻抗和CIC。表面改性电极阻抗和CIC分别为约188欧姆和〜24mc / cm〜2。增加电极的真实表面积将阻抗降低1000次,并与对照样品相比将CIC增加80次。改性UEA的CIC显着高于文献中报道的任何材料,高于溅射氧化铱(4mc / cm〜2)或佩特(15mc / cm〜2)。

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