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微芯片电泳中几何效应对谱带展宽的分析。

Analysis of geometry effects on band spreading of microchip electrophoresis.

作者信息

Fu Lung-Ming, Yang Ruey-Jen, Lee Gwo-Bin

机构信息

Department of Engineering Science, National Cheng Kung University, Tainan, Taiwan.

出版信息

Electrophoresis. 2002 Feb;23(4):602-12. doi: 10.1002/1522-2683(200202)23:4<602::AID-ELPS602>3.0.CO;2-N.

Abstract

The geometry and the flow field conditions in the separation microchannel of an electrophoresis chip system may have important impact on the system's separation efficiency. Understanding the geometry effect on the flow field physics in the separation microchannel is beneficial to the design or operation of an electrophoresis system. The turns in a microfabricated separation microchannel generally results in degraded separation quality. To avoid this limitation, channels are constructed with different types of turns to determine the optimum design that minimizes turn-induced band broadening. We have designed and tested various geometric bend ratios to greatly reduce this so-called "racetrack" effect. The effects of the separation channel geometry, fluid velocity profile and bend ratio on the band distribution in the detection area are discussed. Results show that the folded square U-shaped channel is better for miniaturization and simplification. The band tilting was corrected and the racetrack effect reduced in the detection area when the bend ratio is 4:1. The detection time obtained from the present numerical solution matches very well with the experimental data.

摘要

电泳芯片系统分离微通道中的几何形状和流场条件可能会对系统的分离效率产生重要影响。了解分离微通道中几何形状对流场物理特性的影响有助于电泳系统的设计或操作。微加工分离微通道中的转弯通常会导致分离质量下降。为避免这一限制,构建了具有不同类型转弯的通道,以确定能使转弯引起的谱带展宽最小化的最佳设计。我们设计并测试了各种几何弯曲比,以大幅减少这种所谓的“跑道”效应。讨论了分离通道几何形状、流体速度分布和弯曲比对检测区域中谱带分布的影响。结果表明,折叠方形U形通道更有利于小型化和简化。当弯曲比为4:1时,检测区域中的谱带倾斜得到校正,“跑道”效应降低。从当前数值解获得的检测时间与实验数据非常吻合。

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