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A half-ring GMR sensor for detection of magnetic beads immobilized on a circular micro-trap

机译:半环GMR传感器,用于检测固定在圆形微阱上的磁珠

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Utilizing magnetic principles in biological immunoassays is an attractive option given its ability to remotely and non-invasively manipulate and detect cells tagged with microano size superparamagnetic type beads and due to the fact that even the most complex biological immunoassays will have very little magnetic effect. The presence of magnetic beads can be detected by a magnetic sensor which quantifies the amount of target cells present in the immunoassay. In order to increase the detection rate a circular conducting micro-trap is employed to attract, trap and transport the magnetic beads to the sensing area. In this research we propose a half-ring spin valve type giant magnetoresistance (GMR) sensor for the measurement of stray fields produced by 2 µm magnetic beads which are around the circular micro-trap. A couple of half-ring GMR sensors can be used to cover the entire circular border width, in order to detect the majority of the immobilized magnetic beads. Analytical and numerical analysis leading towards the fabrication of the half-ring GMR sensor are presented. DC characterization of the fabricated sensor showed a magnetoresistance of 5.9 %. Experimental results showed that the half-ring GMR sensor detected the presence of 2 µm magnetic beads. Hence, half-ring GMR sensors integrated with a circular micro-trap have great potential to be used as an effective disease diagnostic device.
机译:利用磁性原理进行生物免疫测定是一种有吸引力的选择,因为它能够远程和非侵入性地操纵和检测标记有微米/纳米尺寸超顺磁性类型珠子的细胞,并且由于即使最复杂的生物免疫测定也几乎不会产生磁性作用。磁珠的存在可以通过磁传感器检测,该磁传感器可以量化免疫测定中存在的靶细胞的数量。为了提高检测率,采用了圆形导电微阱将磁珠吸引,捕获并运输到传感区域。在这项研究中,我们提出了一种半环自旋阀型巨磁电阻(GMR)传感器,用于测量由圆形微阱周围的2 µm磁珠产生的杂散场。可以使用几个半环GMR传感器覆盖整个圆形边界宽度,以检测大部分固定的磁珠。介绍了导致半环GMR传感器制造的分析和数值分析。制成的传感器的直流特性显示出5.9%的磁阻。实验结果表明,半环GMR传感器检测到2 µm磁珠的存在。因此,与环形微阱集成的半环GMR传感器具有巨大的潜力,可以用作有效的疾病诊断设备。

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