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3D plasmonic nanoantennas integrated with MEA biosensors

机译:3 d电浆nanoantennas与MEA集成生物传感器

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摘要

Neuronal signaling in brain circuits occurs at multiple scales ranging from molecules and cells to large neuronal assemblies. However, current sensing neurotechnologies are not designed for parallel access of signals at multiple scales. With the aim of combining nanoscale molecular sensing with electrical neural activity recordings within large neuronal assemblies, in this work three-dimensional (3D) plasmonic nanoantennas are integrated with multielectrode arrays (MEA). Nanoantennas are fabricated by fast ion beam milling on optical resist; gold is deposited on the nanoantennas in order to connect them electrically to the MEA microelectrodes and to obtain plasmonic behavior. The optical properties of these 3D nanostructures are studied through finite elements method (FEM) simulations that show a high electromagnetic field enhancement. This plasmonic enhancement is confirmed by surface enhancement Raman spectroscopy of a dye performed in liquid, which presents an enhancement of almost 100 times the incident field amplitude at resonant excitation. Finally, the reported MEA devices are tested on cultured rat hippocampal neurons. Neurons develop by extending branches on the nanostructured electrodes and extracellular action potentials are recorded over multiple days in vitro. Raman spectra of living neurons cultured on the nanoantennas are also acquired. These results highlight that these nanostructures could be potential candidates for combining electrophysiological measures of large networks with simultaneous spectroscopic investigations at the molecular level.
机译:发生在大脑神经信号的电路多尺度从分子和细胞大神经程序集。传感公司成员不为在多尺度信号并行访问。结合纳米分子的目的传感与神经电活动录音在大型神经元总成,这项工作三维(3 d)电浆与多级nanoantennas集成数组(MEA)。离子束铣光刻胶;沉积在nanoantennas以连接他们意味着微电极和电获得电浆的行为。这些三维纳米结构的性质进行了研究通过有限元素法(FEM)模拟显示高电磁场增强。证实了表面增强拉曼在液体染料的光谱进行,提出了一种增强的近100倍在共振激发入射场幅度。最后,报告是设备上测试过培养的大鼠海马神经元。通过扩展纳米树枝电极和细胞外的动作电位被记录在多个天体外。光谱的生活神经元培养的nanoantennas也收购了。强调,这些纳米结构潜在候选人相结合大型网络的电生理学的措施与同步光谱调查分子水平上。

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