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Development and experimental characterization of micromachined electromagnetic probes for biological manipulation and stimulation applications

机译:用于生物操纵和刺激应用的微机械电磁探针的开发和实验表征

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摘要

We present the design, fabrication and experimental characterization of a new micrornachined electromagnetic probe, which can be readily adapted to various biological manipulation and stimulation applications. The micro electromagnetic probe consists of a protruding (out-of-chip), sharp Permalloy needle embedded into a three-dimensional gold conducting coil. The probe fabrication is carried out using traditional surface micromachining processes coupled with assembly techniques. This hybrid approach significantly reduces fabrication difficulties and provides a simple and straightforward technique to realize integrated core-coil geometries. Furthermore, by using a scanning Hall probe microscope (SHPM), a comprehensive, high-spatial resolution characterization of the probe performance (e.g. peak magnetic intensity and spatial field distribution) is achieved for the first: time. The manipulation of sub-micron sized magnetic particles with the developed micro electromagnetic probe is also demonstrated. (C) 2008 Elsevier B.V. All rights reserved.
机译:我们介绍了一种新型微纳米电磁探针的设计,制造和实验特性,它可以轻松地适应各种生物操作和刺激应用。微型电磁探头由嵌入(三维外)尖锐的坡莫合金针组成,该针嵌入三维金导电线圈中。探针的制造是使用传统的表面微加工工艺以及组装技术来进行的。这种混合方法大大降低了制造难度,并提供了一种简单直接的技术来实现集成的铁心线圈几何形状。此外,通过使用扫描霍尔探针显微镜(SHPM),首次实现了探针性能的全面,高空间分辨率的表征(例如峰值磁强度和空间场分布)。还演示了使用开发的微电磁探针对亚微米级磁性颗粒的操作。 (C)2008 Elsevier B.V.保留所有权利。

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