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Comparison of Hadamard Transform and Signal-Averaged Detection for Microchannel Electrophoresis

机译:Hadamard变换与微通道电泳信号平均检测的比较

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摘要

A Hadamard transform (HT) detection method for microchip capillary electrophoresis with laser-induced fluorescence and a charge-coupled device (CCD) is described and compared to signal-averaged detection. A low-noise CCD camera is used to image a section of a separation channel where each camera pixel can be thought of as a unique detector. For signal averaging, electropherograms corresponding to individual pixels can be averaged for improved S/N. HT detection is performed on each pixel electropherogram to generate a contour plot electropherogram. The multiple injections required for HT provides an enhancement at the cost of longer times for the pseudorandom injection sequences. A short sample injection length of 0.25 s is used to reduce the overall analysis time and improve sensitivity compared to previously published results. An injection sequence is performed on the microchip that is based on a cyclic S-matrix of 513 elements that generates an 8-fold improvement in S/N compared to a single injection. This spatially resolved HT detection method is also capable of performing a multicomponent separation. Signal-averaged HT and single-injection data are compared to experimental HT and single-injection results. The unique capabilities of each method are described.
机译:介绍了一种利用激光诱导的荧光和电荷耦合器件(CCD)进行微芯片毛细管电泳的Hadamard变换(HT)检测方法,并将其与信号平均检测进行了比较。低噪声CCD相机用于对分离通道的一部分进行成像,在该通道中,每个相机像素都可以视为唯一的检测器。对于信号平均,可以将与各个像素相对应的电泳图进行平均以提高S / N。对每个像素电泳图执行HT检测,以生成轮廓图电泳图。 HT所需的多次进样以伪随机进样序列更长的时间为代价提供了增强。与以前发布的结果相比,使用0.25 s的短样品进样长度可减少总体分析时间并提高灵敏度。在微芯片上执行注射序列是基于513个元素的循环S矩阵,与单次注射相比,S / N改善了8倍。这种空间分辨的HT检测方法还能够执行多组分分离。将信号平均HT和单次进样数据与实验HT和单次进样结果进行比较。描述了每种方法的独特功能。

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