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Flow control concepts for thread-based microfluidic devices

机译:基于线程的微流体设备的流量控制概念

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摘要

The emerging concept of thread-based microfluidics has shown great promise for application to inexpensive disease detection and environmental monitoring. To allow the creation of more sophisticated and functional thread-based sensor designs, the ability to better control and understand the flow of fluids in the devices is required. To meet this end, various mechanisms for controlling the flow of reagents and samples in thread-based microfluidic devices are investigated in this study. A study of fluid penetration in single threads and in twined threads provides greater practical understanding of fluid velocity and ultimate penetration for the design of devices. “Switches” which control when or where flow can occur, or allow the mixing of multiple fluids, have been successfully prototyped from multifilament threads, plastic films, and household adhesive. This advancement allows the fabrication of more functional sensory devices which can incorporate more complex detection chemistries, while maintaining low production cost and simplicity of construction.
机译:基于线程的微流体的新兴概念已显示出将其应用于廉价的疾病检测和环境监测的巨大希望。为了允许创建更复杂且功能更强大的基于线程的传感器设计,需要能够更好地控制和了解设备中流体的流动的能力。为了达到这个目的,在这项研究中研究了各种用于控制基于螺纹的微流体装置中的试剂和样品流动的机制。对单螺纹和双螺纹中的流体渗透的研究为设备设计提供了对流体速度和最终渗透的更实际的了解。已经成功地从复丝线,塑料薄膜和家用胶粘剂中获得了“开关”的控制权,这些开关可以控制何时何地发生流动或允许多种流体混合。这种进步允许制造更多功能的传感设备,这些设备可以结合更复杂的检测化学,同时保持较低的生产成本和结构简单。

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