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Fabrication of flat electrodes utilizing picosecond laser manufacturing technology: Preliminary study for fabrication of a novel transverse intrafascicular multichannel electrode

机译:利用皮秒激光制造技术的扁平电极制造:新型横发型跨型跨轴承电极制造的初步研究

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Over the last decade we developed methods for the fabrication of laser-structured electrode arrays for neural engineering. For these electrode arrays a metal foil was structured with a 1064 nm Nd:YAG laser in the nanosecond pulse regime and placed within a silicone rubber substrate. Due to process restrictions the individual electrode sites are not in plane with the upper layer of the silicone rubber. Here, a new laser in the picosecond regime (355 nm Nd:YVO) was used for laser-structuring. This allowed the fabrication of a novel electrode array out of a 25 μm thick sheet of MP35N metal with thinned-down and buried tracks as well as fixations for the electrode sites and contact pads. For the opening of the single electrodes two different processes, hatching and cutting, have been tested. Due to the interaction of the laser with the metal hatched electrodes had an increased surface area which was investigated with electrochemical measurements. The individual thicknesses of the layers were measured with a novel way of directly laser cutting the electrodes and measuring under a light microscope.
机译:在过去的十年中,我们开发了用于制造用于神经工程的激光结构电极阵列的方法。对于这些电极阵列,金属箔在纳秒脉冲调节中具有1064nm Nd:YAG激光器,并放置在硅橡胶基板内。由于过程限制,各个电极部位不在平面中,其中硅橡胶的上层。这里,使用PICOSECOND制度(355nm ND:YVO)中的新激光用于激光结构。这允许通过用稀释的下来和掩埋的轨道制造25μm厚的MP35N金属板中的新电极阵列以及电极部位的固定和接触垫。对于单个电极的打开,已经测试了两种不同的工艺,阴影和切割。由于激光与金属阴影电极的相互作用具有增加的表面积,该表面积被用电化学测量研究。通过直接激光切割电极的新方法测量层的各个厚度,并在光学显微镜下测量。

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