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Modular and Self-Contained Microfluidic Analytical Platforms Enabled by Magnetorheological Elastomer Microactuators

机译:由磁流变弹性体微致动器实现的模块化和独立的微流体分析平台

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摘要

Portability and low-cost analytic ability are desirable for point-of-care (POC) diagnostics; however, current POC testing platforms often require time-consuming multiple microfabrication steps and rely on bulky and costly equipment. This hinders the capability of microfluidics to prove its power outside of laboratories and narrows the range of applications. This paper details a self-contained microfluidic device, which does not require any external connection or tubing to deliver insert-and-use image-based analysis. Without any microfabrication, magnetorheological elastomer (MRE) microactuators including pumps, mixers and valves are integrated into one modular microfluidic chip based on novel manipulation principles. By inserting the chip into the driving and controlling platform, the system demonstrates sample preparation and sequential pumping processes. Furthermore, due to the straightforward fabrication process, chips can be rapidly reconfigured at a low cost, which validates the robustness and versatility of an MRE-enabled microfluidic platform as an option for developing an integrated lab-on-a-chip system.
机译:便携性和低成本的分析能力对于护理点(POC)诊断是理想的;然而,当前的PoC测试平台通常需要耗时的多个微制造步骤,并依靠笨重和昂贵的设备。这会阻碍微流体的能力,以证明其在实验室之外的电力,并缩小应用范围。本文详细说明了一种独立的微流体装置,不需要任何外部连接或管道来提供基于插入和使用的图像的分析。没有任何微制造,磁流变弹性体(MRE)微致动器,包括泵,混合器和阀门的微致动器基于新颖的操纵原理集成到一个模块化的微流体芯片中。通过将芯片插入驱动和控制平台,系统演示了样品制备和顺序泵送过程。此外,由于制造过程的直接制造过程,芯片可以以低成本快速重新配置,这验证了一种支持的MRE的微流体平台的鲁棒性和多功能性作为开发集成的实验室系统的选择。

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