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Novel technological process to manufacture ceramic microelectrodes for biomedical applications implying microextrusion of preceramic precursors

机译:用于制造陶瓷微电极的新型技术过程,用于生物医学应用暗示了刻录物体的微扒性前体

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A novel technological process is under development to obtain ceramic microelectrodes from preceramic precursors, basically for biomedical applications. A microextrusion approach is applied. Commercially available silicone resins are used as preceramic polymers. Drugging with carbon black results in electrically conductive ceramics. A coextrusion approach is used to obtain the filament with inner conductive lines. Chemical reticulation and pyrolysis are applied to convert polymeric resins into ceramics. Some different geometries of profiles and cross sections can be considered and obtained. Circular microelectrodes can be provided with diameters in the range between 100 /spl mu/m and 5 mm and wide coextrusion dimension ratios are obtainable. Preliminary results on filaments with diameter between 100 /spl mu/m and 500 /spl mu/m showed bending strength ranging from 30 MPa to 1100 MPa and average conductivity of 0.375 1//spl Omega/cm for a 50% weight carbon black load. Selecting such characteristics and related materials mainly depends on specific applications. Biomedical electrodes can be devised as stimulators or sensors in neurosurgery, beep brain stimulation and cell biology. It's important to achieve strict control of the above characteristics demanded by desired performances and obtained by suitably adjusting the technological process. Such control is hard to attain for great sensitiveness of some features of micro-geometry and micro-structure to process parameters.
机译:一种新型工艺过程正在开发从预陶瓷前体获得的陶瓷微电极,基本上用于生物医学应用。甲microextrusion方法被应用。市售有机硅树脂用作预陶瓷聚合物。在导电陶瓷炭黑结果下药。共挤出方法是用于获得具有内导电线灯丝。化学成网和热解被施加到聚合物树脂转换成陶瓷。轮廓和横截面的一些不同的几何形状可以被认为和获得。圆形微电极可以在100 / SPL亩/米到5毫米,宽共挤出尺寸比例可获得之间的范围内设置有直径。上用100 / SPL亩/米和500 / SPL亩之间的直径的细丝的初步结果/米显示抗弯强度从30兆帕至1100兆帕和的平均电导率0.375 1 // SPL欧米茄/厘米为50%重量的碳黑负载。选择这样的特点和相关材料,主要取决于具体的应用。生物医学电极能够被设计为在神经外科刺激剂或传感器,蜂鸣脑刺激和细胞生物学。以实现所要求由所需的性能和通过适当地调整工艺过程得到的上述特性严格控制是非常重要的。这样的控制是难以实现的用于微几何形状和微观结构的一些特征,以工艺参数极大敏感性。

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