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Contactless Measurement of Magnetic Nanoparticles on Lateral Flow Strips Using Tunneling Magnetoresistance (TMR) Sensors in Differential Configuration

机译:在差分配置中使用隧道磁阻(TMR)传感器在侧向流动带上进行磁性纳米粒子的非接触式测量

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摘要

Magnetic nanoparticles (MNPs) are commonly used in biomedical detection due to their capability to bind with some specific antibodies. Quantification of biological entities could be realized by measuring the magnetic response of MNPs after the binding process. This paper presents a contactless scanning prototype based on tunneling magnetoresistance (TMR) sensors for quantification of MNPs present in lateral flow strips (LFSs). The sensing unit of the prototype composes of two active TMR elements, which are parallel and closely arranged to form a differential sensing configuration in a perpendicular magnetic field. Geometrical parameters of the configuration are optimized according to theoretical analysis of the stray magnetic field produced by the test line (T-line) while strips being scanned. A brief description of our prototype and the sample preparation is presented. Experimental results show that the prototype exhibits the performance of high sensitivity and strong anti-interference ability. Meanwhile, the detection speed has been improved compared with existing similar techniques. The proposed prototype demonstrates a good sensitivity for detecting samples containing human chorionic gonadotropin (hCG) at a concentration of 25 mIU/mL. The T-line produced by the sample with low concentration is almost beyond the visual limit and produces a maximum stray magnetic field some 0.247 mOe at the sensor in the x direction.
机译:磁性纳米颗粒(MNP)由于具有与某些特异性抗体结合的能力,因此常用于生物医学检测。可以通过测量结合过程后MNP的磁响应来实现生物实体的定量。本文提出了一种基于隧道磁阻(TMR)传感器的非接触式扫描原型,用于量化横向流条(LFS)中存在的MNP。原型的传感单元由两个有源TMR元件组成,两个有源TMR元件平行且紧密排列以在垂直磁场中形成差分传感配置。根据对扫描带材时测试线(T线)产生的杂散磁场的理论分析,可以优化配置的几何参数。介绍了我们的原型和样品制备的简要说明。实验结果表明,该样机具有较高的灵敏度和较强的抗干扰能力。同时,与现有的类似技术相比,检测速度得到了提高。拟议的原型展示出对检测包含25 mIU / mL浓度的人绒毛膜促性腺激素(hCG)的样品具有良好的灵敏度。低浓度样品产生的T线几乎超出了视觉极限,并且在x方向的传感器处产生了大约0.247 mOe的最大杂散磁场。

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