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Detection of of Salmonella typhimurium using phage based magnetostrictive sensor

机译:使用噬菌体基磁致伸缩传感器检测沙门氏菌伤寒蕈下

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This article presents a contactless, remote sensing Salmonella typhimurium sensor based on the principle of magnetostriction. Magnetostrictive materials have been used widely for various types of sensor systems. In this work, the use of a magnetostrictive material for the detection of Salmonella typhimurium has been established. The mass of the bacteria attached to the sensor causes changes in the resonance frequency of the sensor. Filamentous bacteriophage was used as a probe order to ensure specific and selective binding of the bacteria onto the sensor surface. Thus changes in response of the sensor due to the mass added onto the sensor caused by specific attachment of bacteria can be monitored in absence of any contact to the sensor. The response of the sensor due to increasing concentrations (from 5x10~1 to 5x10~8 cfu/ml) of the bacteria was studied. A reduction in the physical dimensions enhances the sensitivity of these sensors and hence different dimensions of the sensor ribbons were studied. For a 2mm x 0.1mm x 0.02mm the detection limit was observed to be of the order of 10~4 cfu/mL and for a sensor of 1mm x 0.2mm x 0.02mm a reduced detection limit of 10~3 cfu/mL was achieved.
机译:本文介绍了一种非接触式遥感沙门氏菌触控传感器,基于磁致伸缩原理。磁致伸缩材料已广泛用于各种类型的传感器系统。在这项工作中,已经建立了使用磁致伸缩材料进行检测的沙门氏菌伤寒毒蕈醋汞。附着于传感器的细菌的质量导致传感器的共振频率变化。将丝状噬菌体用作探针,以确保细菌的特异性和选择性结合到传感器表面上。因此,由于在没有与传感器的任何接触的情况下,可以监测由于添加到由细菌的特定附着引起的传感器上的传感器的质量响应的变化。研究了传感器由于增加的浓度(从5×10〜1至5×10〜8cfu / ml)的细菌的响应。物理尺寸的减小增强了这些传感器的灵敏度,因此研究了传感器带的不同尺寸。对于2mm×0.1mm×0.02mm,观察到检测极限为10〜4 cfu / ml,传感器为1mm×0.2mm×0.2mm的传感器,降低的检测限为10〜3 cfu / ml实现。

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