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Electrochemical Probes of Microbial Community Behavior

机译:微生物群落行为的电化学探针

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Advances in next-generation sequencing technology along with decreasing costs now allow the microbial population, or microbiome, of a location to be determined relatively quickly. This research reveals that microbial communities are more diverse and complex than ever imagined. New and specialized instrumentation is required to investigate, with high spatial and temporal resolution, the dynamic biochemical environment that is created by microbes, which allows them to exist in every corner of the Earth. This review describes how electrochemical probes and techniques are being used and optimized to learn about microbial communities. Described approaches include voltammetry, electrochemical impedance spectroscopy, scanning electrochemical microscopy, separation techniques coupled with electrochemical detection, and arrays of complementary metal-oxide-semiconductor circuits. Microbial communities also interact with and influence their surroundings; therefore, the review also includes a discussion of how electrochemical probes optimized for microbial analysis are utilized in healthcare diagnostics and environmental monitoring applications.
机译:下一代测序技术的进步以及降低成本现在允许微生物群或微生物组,或微生物组的位置相对迅速地确定。本研究表明,微生物社区比以往任何时候都更多样化和复杂。新的和专业化的仪器需要进行高空间和时间分辨率,通过微生物产生的动态生化环境,这使得它们存在于地球的每个角落中。该审查描述了如何使用电化学探测和技术以及优化以了解微生物群群。所描述的方法包括伏安法,电化学阻抗光谱,扫描电化学显微镜,与电化学检测相结合的分离技术,以及互补金属氧化物半导体电路的阵列。微生物社区也与周围环境相互作用并影响它们的周围环境;因此,审查还包括讨论用于微生物分析的电化学探针如何在医疗保健诊断和环境监测应用中使用。

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