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Metering the Capillary-Driven Flow of Fluids in Paper-Based Microfluidic Devices

机译:计量纸基微流控设备中毛细管驱动的流体流量

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This article describes an exceedingly simple and low-cost method for metering the capillary-driven flow rate of fluids within three-dimensional (3D) microfluidic, paper-based analytical devices ((mu)PADs). Initial prototypes of 3D (mu)PADs control the spatial distribution of fluids within a device, but they provide little control over how quickly (or slowly) fluids move within the device. The methods described in this article provide control over when and how quickly a fluid is distributed into detection zones. These methods are inexpensive (the metering regions are composed of paraffin wax), the devices are easy to fabricate, and they are capable of controlling the flow of fluids to detection zones with precise time delays (e.g., +-6percent of the total wicking time). We anticipate that this type of precise control over fluid distribution rates will be useful particularly for point-of-care assays that require multiple steps (where each step requires that the reagents interact for a defined period of time) or for simultaneously displaying the results of multiple different assays on a single device.
机译:本文介绍了一种非常简单且低成本的方法,用于在三维(3D)微流体纸质分析设备(μPAD)中计量毛细管驱动的流体流速。 3D(μ)PAD的初始原型控制设备内流体的空间分布,但它们几乎无法控制流体在设备内移动的速度(或缓慢)。本文中介绍的方法可控制何时以及将流体分配到检测区域的速度。这些方法价格便宜(计量区域由石蜡组成),该设备易于制造,并且能够以精确的时间延迟(例如,总芯吸时间的-6%)控制流体流向检测区域的流量。 )。我们预计这种对流体分配速率的精确控制将特别适用于需要多个步骤(其中每个步骤都要求试剂在定义的时间段内相互作用)的即时检测,或用于同时显示在单个设备上进行多种不同的测定。

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