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用于三维微流控应用的 PDMS 通孔的同步制造。

Simultaneous fabrication of PDMS through-holes for three-dimensional microfluidic applications.

机构信息

Department of Biomedical Engineering, University of Michigan, 2200 Bonisteel Blvd, Ann Arbor, Michigan 48109-2099, USA.

出版信息

Lab Chip. 2010 Aug 7;10(15):1983-6. doi: 10.1039/c003590d. Epub 2010 May 26.

Abstract

Here we describe a simple yet efficient approach to making through-holes in a bound polydimethylsiloxane membrane for use in 3D microfluidic applications. Localized tearing of an elastomeric membrane is achieved by ripping an elastomeric stamp that is bound to the membrane by posts at desired regions. The tears in the membrane are confined by the underlying channel architecture of the substrate to which the membrane is bound. By varying the membrane thickness and channel dimensions, holes of different sizes can be obtained. This high-throughput method of generating through-holes will enable the design of complex microfluidic devices that require crossing of channel networks.

摘要

在这里,我们描述了一种在绑定的聚二甲基硅氧烷膜上制作通孔的简单而有效的方法,可用于 3D 微流控应用。通过在所需区域撕裂与膜绑定的弹性体印章来实现弹性体膜的局部撕裂。膜中的撕裂受膜绑定的基底的底层通道结构限制。通过改变膜的厚度和通道尺寸,可以获得不同尺寸的孔。这种生成通孔的高通量方法将能够设计需要交叉通道网络的复杂微流控设备。

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