Lab-on-a-Chip turns soft: Computer-aided, software-enabled microfluidics design

A. K. Soe, M. Fielding, S. Nahavandi
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引用次数: 2

Abstract

The current practice of designing microfluidic Lab-on-a-Chip (LoCs) limits reusing designs and makes sharing tasks among researchers difficult. One way to achieve that objective is to borrow best practices from engineering. Also it takes a lot of skills to design LoCs. Design-by-assembly in which a LoC can be designed by configuring, laying out subsystems can help new researchers to develop custom chips. Flexible, reusable, and rapid-prototyping-feasible LoC designs can be achieved by fabricated modular microfluidic blocks. However, challenging problems still persist, which limit the usefulness of prefabricated blocks. We propose software microfluidic modules (SoftMABs) based design technique to solve issues fabricated modules face. By configuring SoftMABs, integrating them, the new assembly of SoftMABs can form a 3D LoC design ready to be prototyped. The proposed method can make designing a complex LoC less challenging, and collaborating among laboratories easier. We created SoftMABs and designed a custom microfluidic chip by assembling SoftMABs like LEGOs, dragging-and-dropping them. Later we reconfigured them - by replacing a SoftMAB with another module - to make a new LoC. We believe this computer-aided method is an interesting and useful LoC design technique.
芯片实验室变软:计算机辅助、软件驱动的微流体设计
目前设计微流控芯片实验室(loc)的实践限制了设计的重复使用,并使研究人员之间的任务共享变得困难。实现这一目标的一种方法是从工程中借鉴最佳实践。此外,设计loc也需要很多技能。通过装配设计,LoC可以通过配置、布局子系统来设计,这可以帮助新的研究人员开发定制芯片。灵活、可重复使用和快速原型化可行的LoC设计可以通过制造模块化微流控块来实现。然而,具有挑战性的问题仍然存在,这限制了预制块的实用性。本文提出了基于软件微流控模块(softmab)的设计技术来解决制造模块所面临的问题。通过对softmab进行配置和集成,softmab的新组装可以形成一个3D LoC设计,准备进行原型设计。该方法可以降低设计复杂LoC的难度,并使实验室之间的协作更加容易。我们创造了softmab,并设计了一个定制的微流控芯片,将softmab像乐高积木一样组装起来,拖放它们。后来我们重新配置了它们——用另一个模块替换了一个SoftMAB——来创建一个新的LoC。我们相信这种计算机辅助方法是一种有趣而有用的LoC设计技术。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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