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Monitoring microbial metabolites using an inductively coupled resonance circuit

机译:使用感应耦合共振电路监测微生物代谢物

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摘要

We present a new approach to monitor microbial population dynamics in emulsion droplets via changes in metabolite composition, using an inductively coupled LC resonance circuit. The signal measured by such resonance detector provides information on the magnetic field interaction with the bacterial culture, which is complementary to the information accessible by other detection means, based on electric field interaction, i.e. capacitive or resistive, as well as optical techniques. Several charge-related factors, including pH and ammonia concentrations, were identified as possible contributors to the characteristic of resonance detector profile. The setup enables probing the ionic byproducts of microbial metabolic activity at later stages of cell growth, where conventional optical detection methods have no discriminating power.
机译:我们提出了一种新方法,通过使用电感耦合LC共振电路,通过代谢产物组成的变化来监测乳液液滴中的微生物种群动态。由这种共振检测器测量的信号基于电场相互作用,即电容性或电阻性,以及光学技术,提供关于与细菌培养物的磁场相互作用的信息,该信息与其他检测手段可访问的信息互补。几个与电荷有关的因素,包括pH值和氨浓度,被确定为可能导致共振检测器轮廓特征的因素。该设置使得能够在细胞生长的后期阶段探测微生物代谢活动的离子副产物,而传统的光学检测方法没有区分能力。

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