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Latex Micro-balloon Pumping in Centrifugal Microfluidic Platforms

机译:离心微流控平台中的乳胶微气球泵送

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摘要

Centrifugal microfluidic platforms have emerged as point-of-care diagnostic tools. However, the unidirectional nature of the centrifugal force limits the available space for multi-stepped processes on a single microfluidics disc. To overcome this limitation, a passive pneumatic pumping method actuated at high rotational speeds has been previously proposed to pump liquid against the centrifugal force. In this paper, a novel micro-balloon pumping method that relies on elastic energy stored in a latex membrane is introduced. It operates at low rotational speeds and pumps a larger volume of liquid towards the centre of the disc. Two different micro-balloon pumping designs have been developed to study the pump performance and capacity at a range of rotational frequencies from 0 to 1500 rpm. The behaviour of the micro-balloon pump on the centrifugal microfluidic platforms has been theoretically analysed and compared with the experimental data. The experimental data shows that, the developed pumping method dramatically decreases the required rotational speed to pump liquid compared to the previously developed pneumatic pumping methods. It also shows that within a range of rotational speed, desirable volume of liquid can be stored and pumped by adjusting the size of the micro-balloon.
机译:离心微流体平台已成为即时诊断工具。但是,离心力的单向性质限制了单个微流体盘上多步过程的可用空间。为了克服该限制,先前已经提出了以高转速致动的被动气动泵送方法以抵抗离心力泵送液体。本文介绍了一种依靠乳胶膜中储存的弹性能的新型微气球抽吸方法。它以低转速运行,并向阀盘中心泵送大量液体。已经开发出两种不同的微气球泵送设计,以研究从0到1500 rpm的旋转频率范围内的泵性能和容量。从理论上分析了微型气球泵在离心微流体平台上的行为,并与实验数据进行了比较。实验数据表明,与以前开发的气动泵送方法相比,开发的泵送方法大大降低了泵送液体所需的转速。它还表明,在一定转速范围内,可以通过调节微气球的尺寸来存储和泵送所需体积的液体。

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