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Study of Stray Light and Cross-talk of the Capillary Array Electrophoresis

机译:毛细管阵列电泳杂散光和串扰的研究

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Capillary array electrophoresis (CAE) is founded with the laser induced fluorescence detection (LIFD) system. The same model as the detection system is simulated in Tracepro and the stray light caused by capillaries is analyzed. The stray light distribution of the observation surface is plotted when the laser scans the different sections of a capillary in the array. The results of simulation indicate that the stray light is strongest when scanning the inner center of a capillary and decreases at edges; in two cases (50μm and 75μm inner diameter, ID) when the ID is larger, the stray light is stronger as a whole. Different ID of capillaries which affects the stray light is analyzed; considering many factors, 50μm ID of capillary is appropriate. Based on the analysis of stray light cross-talk by other capillaries in an array, the spacing between capillaries in an array is suggested more than 50μm which the stray light is steady-going and simple to operate. The results can be helpful for the mode of the laser scanning different capillaries in an array sequentially.
机译:毛细管阵列电泳(CAE)是通过激光诱导荧光检测(LIFD)系统建立的。在Tracepro中模拟了与检测系统相同的模型,并分析了由毛细管引起的杂散光。当激光扫描阵列中毛细管的不同部分时,绘制观察表面的杂散光分布。仿真结果表明,杂散光在扫描毛细管的内部中心时最强,而在边缘处减少。在两种情况下(内径分别为50μm和75μm),当ID较大时,杂散光总体上会更强。分析了影响杂散光的毛细管的不同ID;考虑到许多因素,毛细管内径50μm是合适的。根据阵列中其他毛细管的杂散光串扰分析,阵列中的毛细管之间的间距建议大于50μm,该杂散光稳定且易于操作。该结果对于顺序扫描阵列中不同毛细管的激光模式很有帮助。

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