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首页> 外文期刊>European journal of mass spectrometry >Influence of multiplexing conditions on artefact signal and the signal-to-noise ratio in the decoded data in Hadamard transform ion mobility spectrometry
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Influence of multiplexing conditions on artefact signal and the signal-to-noise ratio in the decoded data in Hadamard transform ion mobility spectrometry

机译:多路复用条件对Hadamard变换离子迁移光谱法解码数据中的文物信号和信噪比的影响

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In Hadamard transform ion mobility spectrometry (HT IMS), the signal-to-noise ratio is always lower for non-modified pseudorandom sequences than for modified sequences. Since the use of non-modified modulating pseudorandom sequences is strategically preferable from a duty cycle standpoint, we investigated the change in the interference signal when transitioning from non-modified modulating sequences to sequences modified by the addition of 1,3,5 and 7 zeros. The interfering signal in HT IMS with modified pseudorandom sequences was shown to be mainly random noise for all the cases except for modifying by incorporation of 1 zero. For standard samples of tetraalkylammonium halides, modulation by non-modified pseudorandom sequences is beneficial in the case of small numbers of averaged spectra (below similar to 40 averaged spectra compared to any modified pseudorandom sequences except for 1 zero modified and below similar to 200 averaged spectra compared to signal averaging ion mobility spectrometry) and worsens the signal-to-noise ratio in the case of large numbers of averaged spectra. Contrarily, modulation by modified pseudorandom sequences is beneficial for any number of averaged spectra, except for very small ones (below 15 averaged spectra compared to modulation by non-modified sequences). Pseudorandom sequence modified with 1 zero incorporation is beneficial in the case of below similar to 400 averaged spectra compared to any modified and non-modified pseudorandom sequences. The signal-to-noise ratio in conventional signal averaging mode ion mobility spectrometry is affected by random noise, whereas the HT IMS with non-modified pseudorandom sequences was demonstrated to be primarily affected by a systematic noise-like artefact signal. Because noise-like artefact signals were found to be reproducible, predicting models for interference signals could be generated to improve signal-to-noise ratio. This is significant because non-modified modulating sequences are limited by their poor signal-to-noise ratio. This improvement would increase the viability of non-modified modulating sequences which are preferred because of their higher sample utilization efficiency.
机译:在Hadamard变换离子迁移率光谱法(HT IMS)中,非修改的伪随机序列总是低于修改的序列的信噪比。由于从占空比角度使用非修饰的调制伪随机序列的使用,我们研究了从非修改的调制序列转换到通过添加1,3,5和7零修饰的序列转换时的干扰信号的变化。除了通过掺入1零进行修改之外,HT IMS中的HT IMS中的干扰信号主要是随机噪声。对于标准样品的四烷基铵卤化物,通过非修饰的伪随机序列的调节是有益的,在少量平均光谱(与40个平均光谱下面与任何修饰的伪随机序列相比,除了1零修改之外,下面类似于200平均谱相比与信号平均离子迁移率光谱法相比)并在大量平均光谱的情况下恶化信噪比。具体地,通过修饰的伪随机序列的调节对于任意数量的平均光谱是有益的,除了非常小的,除了非常小的谱(与未修饰序列的调节相比以下15个平均光谱)。与任何修改和未修饰的伪随机序列相比,用1零掺入修饰1次零掺入的伪随机序列是有益的。传统信号平均模式离子迁移率光谱法的信噪比受随机噪声的影响,而具有未修改的伪随机序列的HT IMS被证明主要受系统噪声样器件信号的影响。因为发现噪声类似的人工格信号可重现,所以可以生成用于干扰信号的预测模型以提高信噪比。这是显着的,因为未经修改的调制序列受到它们的信噪比差的限制。这种改进将增加未经修改的调节序列的可行性,这是优选的,因为它们更高的样品利用效率。

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