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Gold nanostructure microelectrode arrays for in vitro recording and stimulation from neuronal networks

机译:金纳米结构微电极阵列,用于来自神经元网络的体外记录和刺激

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An ideal microelectrode array (MEA) design should include materials and structures which exhibit biocompatibility, low electrode polarization, low impedance/noise, and structural durability. Here, the fabrication of MEAs with indium tin oxide (ITO) electrodes deposited with self-similar gold nanostructures (GNS) is described. We show that fern leaf fractal-like GNS deposited on ITO electrodes are conducive for neural cell attachment and viability while reducing the interfacial impedance more than two orders of magnitude at low frequencies (100-1000 Hz) versus bare ITO. GNS MEAs, with low interfacial impedance, allowed the detection of extracellular action potentials with excellent signal-to-noise ratios (SNR, 20.26 +/- 2.14). Additionally, the modified electrodes demonstrated electrochemical and mechanical stability over 29 d in vitro.
机译:理想的微电极阵列(MEA)设计应包括材料和结构,其具有生物相容性,低电极极化,低阻抗/噪声和结构耐用性。 这里,描述了用沉积有自相似金纳布(GNS)的氧化铟锡(ITO)电极的测量的制造。 我们表明,沉积在ITO电极上的蕨叶分形GNS有利于神经电池附着和可行性,同时降低低频(100-1000Hz)与裸ITO的界面阻抗超过两个数量级。 具有低界面阻抗的GNS MEA,允许检测具有优异的信噪比(SNR,20.26 +/- 2.14)的细胞外动作电位。 另外,改性电极在体外超过29d的电化学和机械稳定性。

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