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Configurational Statistics of Magnetic Bead Detection with Magnetoresistive Sensors

机译:磁阻传感器检测磁珠的结构统计

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摘要

Magnetic biosensors detect magnetic beads that, mediated by a target, have bound to a functionalized area. This area is often larger than the area of the sensor. Both the sign and magnitude of the average magnetic field experienced by the sensor from a magnetic bead depends on the location of the bead relative to the sensor. Consequently, the signal from multiple beads also depends on their locations. Thus, a given coverage of the functionalized area with magnetic beads does not result in a given detector response, except on the average, over many realizations of the same coverage. We present a systematic theoretical analysis of how this location-dependence affects the sensor response. The analysis is done for beads magnetized by a homogeneous in-plane magnetic field. We determine the expected value and standard deviation of the sensor response for a given coverage, as well as the accuracy and precision with which the coverage can be determined from a single sensor measurement. We show that statistical fluctuations between samples may reduce the sensitivity and dynamic range of a sensor significantly when the functionalized area is larger than the sensor area. Hence, the statistics of sampling is essential to sensor design. For illustration, we analyze three important published cases for which statistical fluctuations are dominant, significant, and insignificant, respectively.
机译:磁性生物传感器检测由靶标介导并结合到功能化区域的磁珠。该面积通常大于传感器的面积。传感器从磁珠所经历的平均磁场的符号和大小都取决于磁珠相对于传感器的位置。因此,来自多个磁珠的信号也取决于它们的位置。因此,除了平均而言,在相同覆盖范围的许多实现上,给定的功能区覆盖磁珠不会导致给定的检测器响应。我们对这种位置依赖性如何影响传感器响应进行了系统的理论分析。对被均匀的面内磁场磁化的磁珠进行了分析。我们确定给定覆盖范围的传感器响应的期望值和标准偏差,以及可以从单个传感器测量中确定覆盖范围的精度和精确度。我们显示,当功能化区域大于传感器区域时,样本之间的统计波动可能会显着降低传感器的灵敏度和动态范围。因此,采样统计对于传感器设计至关重要。为了说明,我们分析了三个重要的公开案例,它们的统计波动分别为显性,显着和微不足道。

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