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一种使用磁互连的可重构 stick-n-play 模块化微流控系统。

A reconfigurable stick-n-play modular microfluidic system using magnetic interconnects.

机构信息

Science & Technology, Corning Incorporated, Corning, NY 14831-0001, USA.

出版信息

Lab Chip. 2016 Sep 21;16(19):3700-3707. doi: 10.1039/c6lc00741d.

Abstract

A reconfigurable "stick-n-play" modular microfluidic system that can be assembled, disassembled, reconfigured and assembled again for building different integrated microfluidic systems is presented. Magnetic interconnects, comprising ring magnets and sealing gaskets, are integrated into each microfluidic module's inlet(s) and outlet(s) for both module-to-module and world-to-chip fluidic interconnects. The magnetic interconnects reversibly "stick" each individual microfluidic module together and provide leak-free fluidic communication between connected microfluidic modules in order to form a larger integrated microfluidic system. Because of the magnetic interconnects, connected microfluidic modules can be easily disconnected, reconfigured and connected again to form a different integrated microfluidic system. Using a fused deposition modeling (FDM)/fused filament fabrication (FFF)-based 3D printer, a reconfigurable stick-n-play modular microfluidic system, comprising a serpentine channel base platform and various microfluidic modules as well as inlet/outlet modules for world-to-chip fluidic interconnects, was first 3D printed. Magnetic interconnects were then integrated into each 3D printed module. Finally, the stick-n-play modular microfluidic system was used to demonstrate its reconfigurability to build various integrated microfluidic systems by simply and reversibly sticking various modules together. Based on the magnetic interconnects, customized multi-dimensional stick-n-play modular microfluidic systems can be easily designed and built providing a convenient platform for designing large scale microfluidic systems.

摘要

提出了一种可重构的“stick-n-play”模块化微流控系统,该系统可以组装、拆卸、重新配置并再次组装,用于构建不同的集成微流控系统。磁性连接件,包括环形磁铁和密封垫圈,集成到每个微流控模块的入口和出口,用于模块到模块和世界到芯片的流体连接。磁性连接件可将各个微流控模块可逆地“粘”在一起,并在连接的微流控模块之间提供无泄漏的流体连通,以形成更大的集成微流控系统。由于磁性连接件,连接的微流控模块可以轻松断开、重新配置并再次连接,以形成不同的集成微流控系统。使用基于熔丝制造(FDM)/熔丝制造(FFF)的 3D 打印机,首次 3D 打印了可重构的 stick-n-play 模块化微流控系统,包括蛇形通道基础平台和各种微流控模块以及用于世界到芯片流体连接的入口/出口模块。然后将磁性连接件集成到每个 3D 打印模块中。最后,使用 stick-n-play 模块化微流控系统通过简单且可逆地将各种模块粘在一起,展示了其可重构性,以构建各种集成微流控系统。基于磁性连接件,可以轻松设计和构建定制的多维 stick-n-play 模块化微流控系统,为设计大规模微流控系统提供了便利的平台。

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