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Design and Analysis of MEMS based GMI Sensor for Detection of Gastric Cancer Cells

机译:基于MEMS的GMI传感器进行胃癌细胞的设计与分析

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The magnetoimpedance effect lead to the invention of magnetoimpedance sensor. But the applications in the biomedical field are still in infancy. The magnetoimpedance effect in soft magnetic wires and films has been abridged in this paper. The development in magnetoimpedance based bio-sensing application, which consists of detection of certain magnetic materials like magnetic ferro fluid, magnetic beads, magnetic nanoparticles and bio magnetic fields of living systems were outlined. A clear and detailed investigation on the moderation effect of biochemical liquids of the magnetic particles and the effect of stray magnetic field on the magnetoimpedance were investigated. Few positive approaches have been discussed for implementing the design of efficient magnetoimpedance biosensor. The results incur that magnetoimpedance sensors are very much Fitting for high sensitive identification of small mass of biomolecules of low concentration biomolecules, worthy for cancer cells detection in its budding stages.
机译:磁阻效应导致磁阻传感器的发明。但生物医学领域的申请仍处于初期阶段。本文已伸出软磁线和薄膜的磁离动率效应。概述了基于磁离心的生物传感应用的发展,该应用包括磁性铁流体,磁珠,磁性纳米粒子和生物磁性纳米粒子和生物磁场等磁性材料等。研究了对磁性颗粒生化液体的调节效应的清晰详细研究及杂散磁场对磁阻率的影响。已经讨论了很少的阳性方法来实现高效的磁阻生物传感器的设计。结果造成磁阻传感器对低浓度生物分子的小质量生物分子的高敏感性鉴定非常适合,值得在其萌芽阶段进行癌细胞检测。

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