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Fast Hadamard Transform Capillary Electrophoresis for On-Line, Time-Resolved Chemical Monitoring

机译:快速Hadamard变换毛细管电泳,用于在线,时间分辨化学监测

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We report a new approach for collecting and deconvoluting the data in Hadamard transform capillary electrophoresis, referred to as fast Hadamard transform capillary electrophoresis (fHTCE). Using fHTCE, total analysis times can be reduced by up to 48percent per multiplexed separation compared to conventional Hadamard transform capillary electrophoresis (cHTCE) while providing comparable signal-to-noise ratio enhancements. In fHTCE, the sample is injected following a pseudorandom pulsing sequence derived from the first row of a simplex matrix (S-matrix) in contrast to cHTCE, which utilizes a sequence of twice the length. In addition to the temporal savings provided by fHTCE, a 50percent reduction in sample consumption is also realized due to the decreased number of sample injections. We have applied fHTCE to the analysis of mixtures of neurotransmitters and related compounds to yield improved signal-to-noise ratios with a total analysis time under 10 s. In addition, we demonstrate the capability of fHTCE to perform time-resolved monitoring of changes in the concentration of model neurochemical compounds.
机译:我们报告了一种用于在Hadamard变换毛细管电泳中收集和解卷积数据的新方法,称为快速Hadamard变换毛细管电泳(fHTCE)。使用fHTCE,与传统的Hadamard变换毛细管电泳(cHTCE)相比,每个多重分离的总分析时间最多可减少48%,同时提供可比的信噪比增强。在fHTCE中,与cHTCE(使用两倍长度的序列)相比,按照从单形矩阵(S矩阵)第一行得出的伪随机脉冲序列进样。除了由fHTCE提供的时间节省外,由于减少了样品进样次数,样品消耗也减少了50%。我们已将fHTCE应用到神经递质和相关化合物混合物的分析中,以改善信噪比,总分析时间在10 s以下。此外,我们证明了fHTCE对模型神经化学化合物浓度的变化进行时间分辨监测的能力。

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