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VIRTUAL VALVE FOR MICROFLUIDICS

机译:微流控虚拟阀

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摘要

Lab-on-a-Chip technology now becomes increasingly attractive due to advantages such as reduced sample size, reduced reagent consumption, shortened analysis time, potential for high throughput and automation and reduced costs, leading to the potential for manufacturing of disposable devices. On such microchip system, the ability to handling microfluid is important. Extensive microfluidic handling componets including microflow regulator, microfluidic sensor, microvalve and micropump have been reported. Although these microfluid handling methods are successful, for the polymer based microfluidic device, a simple design, easy fabrication and the ability to integrate into the microsystem lacks report. In this paper, we presented such microvalve by utilizing the hydrophobicity of the PDMS material, a popular biocompatible material widely used in microfluidic system. The valve utilized air trapped on the side wall of microchannel by a special microconcave structure design. Controlled by an external coil heater, the trapped air will be enlarged to reduce channel width and so reduce the fluid flow in the microchannel. The valve can work in on/off mode or on flow regulating mode depending on specific flow control requirement.
机译:片上实验室技术现在由于具有诸如减少样本大小,减少试剂消耗,缩短分析时间,具有高通量和自动化潜力以及降低成本等优点而变得越来越具有吸引力,从而带来了制造一次性设备的潜力。在这样的微芯片系统上,处理微流体的能力很重要。已经报道了广泛的微流体处理组件,包括微流量调节器,微流体传感器,微阀和微泵。尽管这些微流体处理方法是成功的,但是对于基于聚合物的微流体装置,尚无简单设计,易于制造以及集成到微系统中的能力。在本文中,我们通过利用PDMS材料的疏水性介绍了这种微阀,PDMS材料是一种广泛用于微流体系统的流行的生物相容性材料。该阀通过特殊的微凹结构设计,利用滞留在微通道侧壁上的空气。在外部盘管加热器的控制下,滞留的空气将扩大以减小通道宽度,从而减少微通道中的流体流量。根据特定的流量控制要求,阀门可以在开/关模式或流量调节模式下工作。

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