Melin Jessica, van der Wijngaart Wouter, Stemme Göran
Royal Institute of Technology, Department of Signals, Sensors and Systems, Microsystem Technology, Osquldas vag 10, SE 100 44 Stockholm, Sweden.
Lab Chip. 2005 Jun;5(6):682-6. doi: 10.1039/b501781e. Epub 2005 Apr 21.
This paper introduces a method of combining open and closed microchannels in a single component in a novel way which couples the benefits of both open and closed microfluidic systems and introduces interesting on-chip microfluidic behaviour. Fluid behaviour in such a component, based on continuous pressure driven flow and surface tension, is discussed in terms of cross sectional flow behaviour, robustness, flow-pressure performance, and its application to microfluidic interfacing. The closed-open-closed microchannel possesses the versatility of upstream and downstream closed microfluidics along with open fluidic direct access. The device has the advantage of eliminating gas bubbles present upstream when these enter the open channel section. The unique behaviour of this device opens the door to applications including direct liquid sample interfacing without the need for additional and bulky sample tubing.
本文介绍了一种以新颖方式在单个组件中结合开放和封闭微通道的方法,该方法兼具开放和封闭微流体系统的优点,并呈现出有趣的片上微流体行为。基于连续压力驱动流和表面张力,从横截面流动行为、稳健性、流动压力性能及其在微流体接口中的应用等方面,对该组件中的流体行为进行了讨论。封闭-开放-封闭微通道兼具上游和下游封闭微流体的通用性以及开放流体的直接接入性。该装置的优点是当上游存在的气泡进入开放通道部分时可将其消除。这种装置的独特行为为包括无需额外庞大样品管的直接液体样品接口等应用打开了大门。