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首页> 外文期刊>The international journal of artificial organs >Extruded ceramic microelectrodes for biomedical applications.
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Extruded ceramic microelectrodes for biomedical applications.

机译:用于生物医学应用的挤压陶瓷微电极。

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摘要

A new process, based on the micro-co-extrusion of preceramic precursors, has been studied for manufacturing ceramic microelectrodes to be used in biomedical applications. Commercially available silicon polymers were applied and proper doping resulted in electrically conductive ceramic filaments. Chemical reticulation and high-temperature pyrolysis were applied to convert the polymeric resins into Si-O-C ceramic materials. Circular microelectrodes were manufactured with diameters between 100 microm and 5 mm with a different number of inner conductive lines (from 1 to 80). The flexural strength of the filaments depended on the outer diameter size; doping with carbon black produced filaments with an average conductivity of approximately 0.4 S/cm for a 50% weight carbon black load. The results achieved by in vitro studies confirmed a good biological performance of Si-O-C ceramic structures with both hard and soft tissue cell models.
机译:已经研究了基于陶瓷前体的微共挤出的新工艺,用于制造用于生物医学应用的陶瓷微电极。使用市售的硅聚合物,并进行适当的掺杂,形成导电陶瓷丝。应用化学成网和高温热解将聚合物树脂转化为Si-O-C陶瓷材料。圆形微电极的直径在100微米至5毫米之间,内部导电线的数量不同(从1到80)。细丝的抗弯强度取决于外径尺寸。掺杂炭黑可生产出重量百分比为50%的炭黑,平均电导率约为0.4 S / cm。通过体外研究获得的结果证实了具有硬组织和软组织细胞模型的Si-O-C陶瓷结构具有良好的生物学性能。

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