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Direct, Surface-Scanning Detection of Pathogenic Bacteria Using A Wireless Biosensor

机译:使用无线生物传感器直接对病原细菌进行表面扫描检测

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This paper investigates the accuracy of surface-scanning measurement of a wireless magnetoelastic (ME) biosensor for direct pathogen detection on solid surfaces. The model experiments were conducted on the surface of a flat polyethylene (PE) plate. An ME biosensor (1 mm × 0.2 mm × 30μm) was placed on the PE surface, and a surface-scanning detector was aligned to the sensor for wireless resonant frequency measurement. The position of the detector was accurately controlled by using a motorized three-axis translation system (i.e., controlled X, Y, and Z positions). The results showed that the resonant frequency variations of the sensor were -125 to +150 Hz for X and Y detector displacements of ± 600 μm and Z displacements of +100 to +500 μm. These resonant frequency variations were small compared to the sensor's initial resonant frequency (< 0.007% of 2.2 MHz initial resonant frequency) measured at the detector home position, indicating high accuracy of the measurement. In addition, the signal amplitude was, as anticipated, found to decrease exponentially with increasing detection distance (i.e., Z distance). Finally, additional experiments were conducted on the surface of cucumbers. Similar results were obtained.
机译:本文研究了用于固体表面直接病原体检测的无线磁弹性(ME)生物传感器的表面扫描测量的准确性。在平坦的聚乙烯(PE)板的表面上进行模型实验。将ME生物传感器(1 mm×0.2 mm×30μm)放在PE表面上,并将表面扫描检测器对准该传感器以进行无线共振频率测量。通过使用电动三轴平移系统精确控制检测器的位置(即受控的X,Y和Z位置)。结果表明,对于X和Y检测器位移±600μm和Z位移+100至+500μm,传感器的共振频率变化为-125至+150 Hz。与在检测器原始位置测得的传感器初始共振频率(<2.2 MHz初始共振频率的0.007%)相比,这些共振频率变化很小,表明测量的准确性很高。另外,如所预期的,发现信号幅度随着检测距离(即,Z距离)的增加而呈指数下降。最后,在黄瓜表面进行了额外的实验。获得了相似的结果。

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