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Magnetic Two-Way Valves for Paper-Based Capillary-DrivenMicrofluidic Devices

机译:纸基毛细管驱动电磁两通阀微流体装置

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摘要

This article presents a magnetically actuated two-way, three-position (+, 0, −), paper-based microfluidic valve that includes a neutral position (0)—the first of its kind. The system is highly robust, customizable, and fully automated. The advent of a neutral position and the ability to precisely control switching frequencies establish a new platform for highly controlled fluid flows in paper-based wicking microfluidic devices. The potential utility of these valves is demonstrated in automated, programmed, patterning of dyed liquids in a wicking device akin to a colorimetric assay but with a programmed fluid/reagent delivery. These valves are fabricated using facile methods and thus remain cost-effective for adoption into affordable point-of-care/bioanalytical devices.
机译:本文介绍了一种磁驱动的双向,三位(+,0,-)纸基微流体阀,该阀包括一个中立位置(0),这是同类产品中的第一个。该系统具有高度鲁棒性,可定制性和全自动性。中立位置的出现和精确控制开关频率的能力为纸基芯吸微流体设备中高度受控的流体流动建立了新平台。这些阀的潜在实用性在类似于比色测定法的芯吸装置中对染色液体进行自动化,程序化,图案化的过程中得到了证明,但具有程序化的流体/试剂传输。这些阀门是使用简便的方法制造的,因此在采用价格合理的即时医疗/生物分析设备时仍保持成本效益。

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