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Improved time-domain approaches for locating exons in DNA using zero-phase filtering

机译:使用零相滤波改进用于定位DNA中外显子的时间域方法

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Accurate prediction of exons locations in deoxyri-bonucleic acid (DNA) sequences is an important issue for geneticists. Time-domain periodogram (TDP) and average magnitude difference function (AMDF) are two time-domain approaches previously proposed for this purpose. These two approaches employ a second-order infinite impulse response (IIR) resonant filter as a preprocessing stage so as to emphasize the period-3 behavior exhibited by the exonic segments of DNA strands. The major drawback of IIR filters is their non-linear phase response, which results in a delay distortion experienced by the spectral components of the genomic signal at the filter output. This type of distortion affects the exons prediction accuracy of the TDP/AMDF classifier. This paper proposes the use of zero-phase filtering technique in the preprocessing stage so as to eliminate the phase distortion introduced by the traditional filtering. MATLAB simulation conducted on the ASP67 genomic dataset shows that the proposed modified time-domain approaches using zero-phase filtering reveal better performance, compared with the traditional approaches, in terms of the receiver operating characteristic (ROC) curve, precision-recall curve and F-measure.
机译:精确预测脱氧核酸(DNA)序列中的外显子位置是遗传学家的重要问题。时间域周期图(TDP)和平均幅度差函数(AMDF)是为此目的提出的两个时间域方法。这两种方法采用二阶无限脉冲响应(IIR)共振滤波器作为预处理阶段,以强调DNA链的外部段展示的时期-3行为。 IIR滤波器的主要缺点是它们的非线性相位响应,这导致滤波器输出的基因组信号的光谱分量经历的延迟失真。这种类型的失真影响TDP / AMDF分类器的外显子预测精度。本文提出在预处理阶段使用零相滤波技术,以消除传统滤波所引入的相位失真。在ASP67基因组数据集上进行的MATLAB仿真表明,与传统方法相比,使用零相滤波的建议修改时域方法在接收器操作特征(ROC)曲线方面,精密召回曲线和F -措施。

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