首页> 外文会议>Electronic Components and Technology Conference (ECTC), 2012 IEEE 62nd >Combination of channel- and droplet-based microfluidics for complex PoC devices
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Combination of channel- and droplet-based microfluidics for complex PoC devices

机译:基于通道和基于液滴的微流体的组合,用于复杂的PoC设备

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This paper presents a microfluidic device addressing the field of ambulant diagnostics in rural areas. Often, the diagnostic approach of micro-channel based point of care devices (PoCD) will target a certain marker — if e.g. on site another marker is to be checked against, the visiting doctor needs to use another test device. With the number of markers growing on a steady basis this will incur the need to transport a large number of individual test strips/cartridges, making the PoCD concept useless for this specific setting. The basis of the proposed novel device is a hybrid system combining the advantages of conventional channel-based fluidics with those of digitally controlled droplet-based fluidics. This hybrid concept uses a micro-channel based delivery partition for stored reagents with a disposable reaction partition based on electrowetting-on-dielectric to run the actual test protocol. It promises to realize a low cost approach for a Point-of-Care system with easy deployability. Conceptual implementation was done by roll embossing for the microchannels and direct structuring of the electrode elements for the EWOD substrate. The latter was laminated with a PTFE-film or coated with a nanoparticle loaded lacquer for hydrophobization. A variety of reagents were handled using a two-phase containment on the EWOD substrate, overcoming the issues associated with low surface energy fluids.
机译:本文介绍了一种微流控设备,用于解决农村地区的救护车诊断领域。基于微通道的即时医疗设备(PoCD)的诊断方法通常会针对某个标记-例如在现场要检查另一个标记,来访医生需要使用另一个测试设备。随着标记数量的稳定增长,这将导致需要运输大量单独的测试条/墨盒,从而使PoCD概念对于此特定设置毫无用处。所提出的新颖装置的基础是一种混合系统,其结合了传统的基于通道的射流技术和基于数字控制的基于液滴的射流技术的优点。这种混合概念使用基于微通道的传输分区存储试剂,并使用基于电介质上电润湿的一次性反应分区来运行实际测试协议。它有望实现一种易于部署的护理点系统的低成本方法。通过对微通道进行辊压纹和对EWOD基板的电极元件进行直接结构化来完成概念性实施。后者层压有PTFE膜或涂有负载纳米颗粒的清漆,以进行疏水化处理。在EWOD基板上使用两相容器处理了多种试剂,克服了与低表面能流体有关的问题。

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