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首页> 外文期刊>Biomedical Microdevices >Design criteria of neuron/electrode interface. The focused ion beam technology as an analytical method to investigate the effect of electrode surface morphology on neurocompatibility
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Design criteria of neuron/electrode interface. The focused ion beam technology as an analytical method to investigate the effect of electrode surface morphology on neurocompatibility

机译:神经元/电极界面的设计标准。聚焦离子束技术作为研究电极表面形态对神经相容性影响的分析方法

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"Neurocompatibility" is a broad definition which comprises aspects of biocompatibility, chemical and physical surface properties, and biostability of an artificial substrate interfaced with a neural tissue.rnThe main issue coming from the analysis of the state of art of neuroprosthesis and neuron/electrode interfaces is the strong influence of electrode surface morphology on neurocompatibility. Enhanced functions of neurons have been observed on nano-structured materials.rnThis paper proposes the use of focused ion beam (FIB) technology as high precision machining technique to modify the surface morphology of an interface material. By controlling the ion milling in three dimensions, the fabrication of a surface with any predefined morphology becomes possible with nanometric precision.rnIn vitro tests on PC12 cells cultured on surfaces with different morphologies show that the surface morphology influences the cell adhesion. Experimental results suggest an enhancement of the interaction between cells and artificial surfaces at a specific scale (tens of nanometres) which is the typical scale of cellular interaction in the extra-cellular matrix (ECM) of living organisms.
机译:“神经相容性”是一个广义定义,包括与神经组织相接的人工基质的生物相容性,化学和物理表面性质以及生物稳定性等方面。主要问题来自对神经假体和神经元/电极界面的技术现状的分析。是电极表面形态对神经相容性的强烈影响。在纳米结构材料上已经观察到神经元的增强功能。本文提出使用聚焦离子束(FIB)技术作为高精度加工技术来修改界面材料的表面形态。通过在三个维度上控制离子铣削,可以以纳米级的精度制造具有任何预定义形态的表面。在具有不同形态的表面上培养的PC12细胞的体外测试表明,表面形态会影响细胞粘附。实验结果表明,在特定规模(数十纳米)下,细胞与人工表面之间的相互作用得以增强,这是活生物体细胞外基质(ECM)中细胞相互作用的典型尺度。

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