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作为引线和束内微电极的金属化聚合物纤维。

Metallized polymer fibers as leadwires and intrafascicular microelectrodes.

作者信息

McNaughton T G, Horch K W

机构信息

Department of Bioengineering, University of Utah, Salt Lake City 84112, USA.

出版信息

J Neurosci Methods. 1996 Dec;70(1):103-10. doi: 10.1016/S0165-0270(96)00111-2.

Abstract

We have developed a process for producing fine, very flexible microwires suitable for use as small signal leadwires or nerve electrodes. The process incorporates metallization of high-performance monofilament polymer fibers to yield electrically conductive fibers with greatly improved flexibility over solid metal wires of similar strength. The metallization layers are produced by serial vacuum deposition of a 0.3 micron thick coating of three metals, titanium-tungsten (Ti/W), gold (Au), and platinum (Pt), onto monofilament, poly-p-phenyl-terephthalate aramid fibers (Kevlar). The metallized fibers are then insulated with an approx. 1 micron thick layer of silicone elastomer. The result is a microlead with high electrical conductivity (linear resistance = 30 omega/cm), desirable interfacial properties, excellent mechanical stability and extremely high flexibility. These physical characteristics are appropriate for application as signal leadwires or recording/stimulating electrodes where small size and high flexibility are paramount. In this paper we report on the electrical and mechanical properties of these metallized fibers and demonstrate their use as intrafascicular electrodes for recording multi-unit neural activity in feline peripheral nerves.

摘要

我们已开发出一种生产精细、极具柔韧性的微丝的工艺,这些微丝适用于作为小信号引线或神经电极。该工艺包括对高性能单丝聚合物纤维进行金属化处理,以生产出导电性纤维,其柔韧性比强度类似的实心金属丝有极大提高。金属化层是通过在单丝聚对苯二甲酸对苯二胺芳纶纤维(凯夫拉尔纤维)上依次真空沉积一层0.3微米厚的由钛钨(Ti/W)、金(Au)和铂(Pt)三种金属组成的涂层而制成。然后,用一层约1微米厚的硅酮弹性体对金属化纤维进行绝缘处理。结果得到一种具有高导电性(线性电阻 = 30 欧姆/厘米)、理想的界面特性、出色的机械稳定性和极高柔韧性的微引线。这些物理特性适用于作为信号引线或记录/刺激电极,在这些应用中,小尺寸和高柔韧性至关重要。在本文中,我们报告了这些金属化纤维的电气和机械性能,并展示了它们作为束内电极用于记录猫外周神经多单元神经活动的用途。

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