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A micro-scale multi-frequency reactance measurement technique to detect bacterial growth at low bio-particle concentrations

机译:一种微尺度多频电抗测量技术,可检测低生物颗粒浓度下的细菌生长

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摘要

The technique described enables the user to detect the presence and proliferation of bacteria through an increase in the bulk capacitance (C) of the suspension, which is proportional to the bacteria count, at practical frequencies less than 1 MHz. The geometry of the micro-capillary design employed increases the bulk resistance (R) of the medium, thus increasing its RC time. This makes the measured reactance sensitive to changes in the bulk capacitance, which is usually masked by the much larger surface capacitance. The sensitivity is further enhanced by the existence of a minimum in the value of the reactance at a frequency proportional to the inverse medium RC time. The value of this reactance minimum and the frequency at which the minimum is recorded are dependent on the bacteria count and permit the detection of an initial concentration of similar to 100 CFU ml(-1) of E. coli within 3 hours of incubation, in comparison with the previous reported values of about 8 hours, with an initial load of 1000 CFU ml(-1).
机译:所描述的技术使用户能够在小于1 MHz的实际频率上通过增加悬浮液的体积电容(C)来检测细菌的存在和繁殖,该体积与细菌数成正比。采用的微毛细管设计的几何形状增加了介质的体电阻(R),从而增加了其RC时间。这使得测得的电抗对体积电容的变化敏感,该体积电容通常被更大的表面电容所掩盖。通过在与逆介质RC时间成比例的频率上存在最小的电抗值,可以进一步提高灵敏度。该最小电抗的值和记录该最小电抗的频率取决于细菌数,并允许在孵育3小时内检测到与100 CFU ml(-1)大肠杆菌相似的初始浓度。与先前报告的大约8小时的值进行比较,初始负载为1000 CFU ml(-1)。

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