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Magnetic Detection Structure for Lab-on-Chip Applications Based on the Frequency Mixing Technique

机译:基于混频技术的片上实验室磁检测结构

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摘要

A magnetic frequency mixing technique with a set of miniaturized planar coils was investigated for use with a completely integrated Lab-on-Chip (LoC) pathogen sensing system. The system allows the detection and quantification of superparamagnetic beads. Additionally, in terms of magnetic nanoparticle characterization ability, the system can be used for immunoassays using the beads as markers. Analytical calculations and simulations for both excitation and pick-up coils are presented; the goal was to investigate the miniaturization of simple and cost-effective planar spiral coils. Following these calculations, a Printed Circuit Board (PCB) prototype was designed, manufactured, and tested for limit of detection, linear response, and validation of theoretical concepts. Using the magnetic frequency mixing technique, a limit of detection of 15 µg/mL of 20 nm core-sized nanoparticles was achieved without any shielding.
机译:研究了具有一组微型平面线圈的磁混频技术,该技术与完全集成的芯片实验室(LoC)病原体传感系统一起使用。该系统允许检测和定量超顺磁珠。另外,就磁性纳米颗粒表征能力而言,该系统可用于使用珠子作为标记物的免疫测定。给出了励磁线圈和拾取线圈的分析计算和仿真。目的是研究简单且具有成本效益的平面螺旋线圈的小型化。经过这些计算,设计,制造并测试了印刷电路板(PCB)原型,以检测极限,线性响应和验证理论概念。使用磁混频技术,在没有任何屏蔽的情况下,检测极限为15 µg / mL的20 nm核大小的纳米颗粒。

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