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Fabrication of nanoelectrodes for neurophysiology: cathodic electrophoretic paint insulation and focused ion beam milling

机译:用于神经生理学的纳米电极的制造:阴极电泳漆绝缘和聚焦离子束铣削

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The fabrication and characterization of tungsten nanoelectrodes insulated with cathodic electrophoretic paint is described together with their application within the field of neurophysiology. The tip of a 127 mu m diameter tungsten wire was etched down to less than 100 nm and then insulated with cathodic electrophoretic paint. Focused ion beam (FIB) polishing was employed to remove the insulation at the electrode's apex, leaving a nanoscale sized conductive tip of 100-1000 nm. The nanoelectrodes were examined by scanning electron microscopy (SEM) and their electrochemical properties characterized by steady state linear sweep voltammetry. Electrode impedance at 1 kHz was measured too. The ability of a 700 nm tipped electrode to record well-isolated action potentials extracellularly from single visual neurons in vivo was demonstrated. Such electrodes have the potential to open new populations of neurons to study.
机译:描述了用阴极电泳漆绝缘的钨纳米电极的制备和表征及其在神经生理学领域的应用。将直径为127μm的钨丝的尖端蚀刻至小于100 nm,然后用阴极电泳漆绝缘。聚焦离子束(FIB)抛光用于去除电极顶点处的绝缘层,从而留下100-1000 nm的纳米级导电尖端。通过扫描电子显微镜(SEM)检查纳米电极,并通过稳态线性扫描伏安法表征其电化学性能。还测量了1 kHz的电极阻抗。证明了700 nm尖端电极能够从体内单个视觉神经元胞外记录良好隔离的动作电位的能力。这样的电极具有打开新的神经元群体进行研究的潜力。

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