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A SIMPLE OPTO-FLUIDIC SWITCH DETECTING LIQUID FILLING IN POLYMER-BASED MICROFLUIDIC SYSTEMS

机译:基于聚合物基微流体系统中填充的简单光流化开关

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摘要

A novel detection scheme for detection of liquid levels and bubbles in microfluidic systems, using the principle of total internal reflection (TIR) is presented. A laser beam impinges on the side walls of a channel which are inclined at 45 deg. In an unfilled channel of such a "V-groove", TIR deflects the beam by 90 deg into a simple light detector. Upon the presence of liquid, the refractive index in the channel changes, thus eliminating deflection by TIR. The detection principle is robust, requiring no calibration, and tolerating alignment errors of the laser larger than the width and depth of the microfluidic channels. The machining of the V-groves can seamlessly be integrated into common polymer microfabrication schemes such as injection molding.
机译:提出了一种用于检测微流体系统中液体水平和气泡的新型检测方案,使用全内反射(TIR)的原理。激光束撞击沟道的侧壁,该侧壁在45°倾斜。在这种“V形槽”的未填充通道中,TIR将光束偏转90°以进入简单的光检测器。在存在液体时,通道中的折射率变化,从而通过TIR消除偏转。检测原理是坚固的,不需要校准,并且激光器的容许比对准误差大于微流体通道的宽度和深度。 V-GOVES的加工可以无缝地集成到共同的聚合物微制造方案中,例如注射成型。

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