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A UAV-Mounted Whole Cell Biosensor System for Environmental Monitoring Applications

机译:无人机安装的全细胞生物传感器系统用于环境监测应用

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摘要

This study reports the development of a portable whole cell biosensor system for environmental monitoring applications, such as air quality control, water pollution monitoring and radiation leakage detection. The system consists of a lightweight mechanical housing, a temperature regulating system, and a microfluidic bacterial inoculation channel. The overall system, which is less than 200 g, serves as a portable incubator for cell inoculation and can be mounted on an unmanned aerial vehicle for monitoring remote and unreachable locations. The feedback control system maintains the inoculation temperature within 0.05 degree Celsius. The large surface-to-volume ratio of the polydimethylsiloxane microchannel facilitates effective gas exchange for rapid bacterial growth. Molecular dynamic simulation shows effective diffusion of major gas pollutants in PDMS toward gas sensing applications. By optimizing the design, we demonstrate the operation of the system in ambient temperatures from 5°C to 32°C and rapid bacterial growth in microchannels compared to standard bacterial culture techniques.
机译:这项研究报告了用于环境监测应用的便携式全细胞生物传感器系统的开发,例如空气质量控制,水污染监测和辐射泄漏检测。该系统由轻巧的机械外壳,温度调节系统和微流体细菌接种通道组成。整个系统小于200克,可作为用于细胞接种的便携式培养箱,并可安装在无人驾驶飞行器上,用于监视偏远和无法到达的位置。反馈控制系统将接种温度保持在0.05摄氏度以内。聚二甲基硅氧烷微通道的大体积比有利于有效的气体交换,从而使细菌快速生长。分子动力学模拟表明PDMS中主要气体污染物向气体传感应用的有效扩散。通过优化设计,我们证明了与标准细菌培养技术相比,该系统在5°C至32°C的环境温度下的运行以及微通道中细菌的快速生长。

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