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Magnetoresistive biosensors with on-chip pulsed excitation and magnetic correlated double sampling

机译:具有片上脉冲激励和磁相关双采样的磁阻生物传感器

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摘要

Giant magnetoresistive (GMR) sensors have been shown to be among the most sensitive biosensors reported. While high-density and scalable sensor arrays are desirable for achieving multiplex detection, scalability remains challenging because of long data acquisition time using conventional readout methods. In this paper, we present a scalable magnetoresistive biosensor array with an on-chip magnetic field generator and a high-speed data acquisition method. The on-chip field generators enable magnetic correlated double sampling (MCDS) and global chopper stabilization to suppress 1/f noise and offset. A measurement with the proposed system takes only 20 ms, approximately 50× faster than conventional frequency domain analysis. A corresponding time domain temperature correction technique is also presented and shown to be able to remove temperature dependence from the measured signal without extra measurements or reference sensors. Measurements demonstrate detection of magnetic nanoparticles (MNPs) at a signal level as low as 6.92 ppm. The small form factor enables the proposed platform to be portable as well as having high sensitivity and rapid readout, desirable features for next generation diagnostic systems, especially in point-of-care (POC) settings.
机译:巨磁阻(GMR)传感器已被证明是最敏感的生物传感器之一。尽管需要高密度和可扩展的传感器阵列来实现多路复用检测,但是由于使用常规的读出方法需要较长的数据采集时间,因此可扩展性仍然具有挑战性。在本文中,我们提出了一种具有片上磁场发生器和高速数据采集方法的可扩展磁阻生物传感器阵列。片上场发生器实现磁相关双采样(MCDS)和全局斩波器稳定,以抑制1 / f噪声和失调。所建议系统的测量仅需20µms,比常规频域分析快约50倍。还提出了一种相应的时域温度校正技术,该技术能够在无需额外测量或参考传感器的情况下从测量信号中消除温度依赖性。测量表明,在信号水平低至6.92 ppm的情况下,可以检测到磁性纳米颗粒(MNP)。小巧的外形使所提出的平台具有便携性,并具有高灵敏度和快速读数的特性,是下一代诊断系统的理想功能,尤其是在即时医疗点(POC)设置中。

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