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首页> 外文期刊>Biomedical Engineering: Applications, Basis and Communications >USING DIT-FFT ALGORITHM FOR IDENTIFICATION OF PROTEIN CODING REGION IN EUKARYOTIC GENE
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USING DIT-FFT ALGORITHM FOR IDENTIFICATION OF PROTEIN CODING REGION IN EUKARYOTIC GENE

机译:用DIT-FFT算法在真核基因中鉴定蛋白质编码区

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摘要

The new research platform on biomedical engineering by Digital Signal Processing (DSP) is playing a vital role in the prediction of protein coding regions (Exons) from genomic sequences with great accuracy. We can determine the protein coding area in DNA sequences with the help of period-3 property. It has been seen that in order to find out the period-3 property, the DFT algorithm is mostly used but in this paper, we have tested FFT algorithm instead of DFT algorithm. DSP is basically concerned with processing numerical sequences. When digital signal processing used in DNA sequences analysis, it requires conversion of base characters sequence to the numerical version. The numerical representation of DNA sequences strongly impacts the biological properties mirrored through the numerical genre. In this work, the proposed technique based on DIT-FFT algorithm has been used to identify the exonic area with the help of integer value representation for transforming the DNA sequences. Digital filters are used to read out period 3 components from the output spectrum and to eliminate the unwanted high frequency noise from DNA sequences. To overcome background noise means to suppress the non-coding regions, i.e., Introns. Proposed algorithm is tested on four nucleotide sequences having single or multiple numbers of exons.
机译:数字信号处理(DSP)的生物医学工程新研究平台在基因组序列的预测中扮演至关重要的准确性。我们可以在3次特性的帮助下确定DNA序列中的蛋白质编码区域。已经看到,为了找出句号-3属性,大多使用DFT算法,但在本文中,我们已经测试了FFT算法而不是DFT算法。 DSP基本上关注处理数值序列。当DNA序列分析中使用的数字信号处理时,它需要将基本字符序列转换为数值版本。 DNA序列的数值表示强烈影响通过数值类型反映的生物学特性。在这项工作中,基于DIT-FFT算法的提议技术已经过去借助于转化DNA序列的整数值表示来识别偏振区域。数字滤波器用于从输出频谱中读出3个组件,并消除来自DNA序列的不需要的高频噪声。为了克服背景噪声装置,以抑制非编码区域,即内含子。在具有单个或多个外显子的四个核苷酸序列上测试了所提出的算法。

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