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Flow control for capillary-pumped microfluidic systems

机译:毛细管泵微流系统的流量控制

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摘要

Advantages of performing analytical and diagnostic tasks in microfluidic-based systems include small sample volume requirements, rapid transport times and the promise of compact, portable instrumentation. The application of such systems in home and point-of-care situations has been limited, however, because these devices typically require significant associated hardware to initiate and control fluid flow. Capillary-based pumping can address many of these deficiencies by taking advantage of surface tension to pull fluid through devices. The development of practical instrumentation however will rely upon the development of precision control schemes to complement capillary pumping. Here, we introduce a straightforward, robust approach that allows for reconfigurable fluid guidance through otherwise fixed capillary networks. This technique is based on the opening and closing of microfluidic channels cast in a flexible elastomer via automated or even manual mechanical actuation. This straightforward approach can completely and precisely control flows such as samples of complex fluids, including whole blood, at very high resolutions according to real-time user feedback. These results demonstrate the suitability of this technique for portable, microfluidic instruments in laboratory, field or clinical diagnostic applications.
机译:在基于微流体的系统中执行分析和诊断任务的优点包括:样品量要求小,运输时间短以及紧凑,便携式仪器的前景。但是,由于这些设备通常需要大量相关的硬件来启动和控制流体流动,因此在家庭和即时护理场合中此类系统的应用受到了限制。基于毛细管的泵送可通过利用表面张力将流体拉过设备来解决许多这些不足。但是,实用仪器的开发将依靠精密控制方案的开发来补充毛细管泵。在这里,我们介绍一种简单,可靠的方法,该方法允许通过其他固定的毛细管网络进行可重构的流体引导。该技术基于经由自动或什至手动机械致动而浇铸在柔性弹性体中的微流体通道的打开和关闭。这种简单的方法可以根据实时用户反馈,以很高的分辨率完全精确地控制诸如复杂流体(包括全血)样本之类的流量。这些结果证明了该技术适用于实验室,现场或临床诊断应用中的便携式微流体仪器。

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