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Universal detector for biological and chemical separations or assays using plastic microfluidic devices

机译:通用检测器,用于使用塑料微流体设备进行生物和化学分离或测定

摘要

An on-chip interferometric backscatter detector (OCIBD) makes use of plastic substrates in which a rectangular sample channel is formed. While any plastic material can be used to form the channel substrate, the substrate is most preferably formed from polydimethylsiloxane (PDMS). An incident laser beam reflects off of the sample channel walls and through the sample in the channel, thereby generating backscattered reflections that create interference fringe patterns. The fringe patterns are detected by a photodetector and used to determine various properties of the sample. To provide the best results, the laser beam diameter should be no smaller than the channel width so that the entire channel will be illuminated by the beam, and preferably should be slightly, e.g., 5%, larger. This will insure that the laser light reflected off of the walls of the channel will generate the desired interference fringe patterns, despite the less than optimum rectangular geometry of the channel walls. A reference channel can be provided to improve the accuracy of the measurements made with the detector. One notable application of the invention is the analysis of binding experiments on biochemical functional species, such as proteins and DNA.
机译:片上干涉背向散射检测器(OCIBD)利用其中形成有矩形样品通道的塑料基板。尽管可以使用任何塑料材料来形成通道衬底,但是最优选地,该衬底由聚二甲基硅氧烷(PDMS)形成。入射激光束反射离开样品通道壁并穿过通道中的样品,从而产生反向散射反射,从而产生干涉条纹图案。条纹图案由光电探测器检测,并用于确定样品的各种特性。为了提供最好的结果,激光束直径应不小于通道宽度,以使整个通道将被束照射,并且优选地应稍大例如5%。这将确保从通道壁反射的激光将产生所需的干涉条纹图案,尽管通道壁的矩形几何形状不是最佳。可以提供参考通道以提高检测器进行测量的准确性。本发明的一个显着应用是对生化功能物种,例如蛋白质和DNA的结合实验的分析。

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