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一种用于增强DNA信号处理的受生物启发的模糊自适应窗口中值滤波器(FAWMF)。

A biological inspired fuzzy adaptive window median filter (FAWMF) for enhancing DNA signal processing.

作者信息

Ahmad Muneer, Jung Low Tan, Bhuiyan Al-Amin

机构信息

College of Computer Sciences, King Faisal University, Saudi Arabia.

Department of Computer Sciences, University Technology PETRONAS, Malaysia.

出版信息

Comput Methods Programs Biomed. 2017 Oct;149:11-17. doi: 10.1016/j.cmpb.2017.06.021. Epub 2017 Jul 13.

Abstract

BACKGROUND AND OBJECTIVE

Digital signal processing techniques commonly employ fixed length window filters to process the signal contents. DNA signals differ in characteristics from common digital signals since they carry nucleotides as contents. The nucleotides own genetic code context and fuzzy behaviors due to their special structure and order in DNA strand. Employing conventional fixed length window filters for DNA signal processing produce spectral leakage and hence results in signal noise. A biological context aware adaptive window filter is required to process the DNA signals.

METHODS

This paper introduces a biological inspired fuzzy adaptive window median filter (FAWMF) which computes the fuzzy membership strength of nucleotides in each slide of window and filters nucleotides based on median filtering with a combination of s-shaped and z-shaped filters. Since coding regions cause 3-base periodicity by an unbalanced nucleotides' distribution producing a relatively high bias for nucleotides' usage, such fundamental characteristic of nucleotides has been exploited in FAWMF to suppress the signal noise.

RESULTS

Along with adaptive response of FAWMF, a strong correlation between median nucleotides and the Π shaped filter was observed which produced enhanced discrimination between coding and non-coding regions contrary to fixed length conventional window filters. The proposed FAWMF attains a significant enhancement in coding regions identification i.e. 40% to 125% as compared to other conventional window filters tested over more than 250 benchmarked and randomly taken DNA datasets of different organisms.

CONCLUSION

This study proves that conventional fixed length window filters applied to DNA signals do not achieve significant results since the nucleotides carry genetic code context. The proposed FAWMF algorithm is adaptive and outperforms significantly to process DNA signal contents. The algorithm applied to variety of DNA datasets produced noteworthy discrimination between coding and non-coding regions contrary to fixed window length conventional filters.

摘要

背景与目的

数字信号处理技术通常采用固定长度的窗口滤波器来处理信号内容。DNA信号在特征上与普通数字信号不同,因为它们携带核苷酸作为内容。由于核苷酸在DNA链中的特殊结构和顺序,它们具有遗传密码上下文和模糊行为。使用传统的固定长度窗口滤波器处理DNA信号会产生频谱泄漏,从而导致信号噪声。因此需要一种具有生物上下文感知能力的自适应窗口滤波器来处理DNA信号。

方法

本文介绍了一种受生物启发的模糊自适应窗口中值滤波器(FAWMF),它计算窗口各滑动窗口中核苷酸的模糊隶属度,并结合S形和Z形滤波器基于中值滤波对核苷酸进行滤波。由于编码区域通过不平衡的核苷酸分布导致3碱基周期性,从而产生相对较高的核苷酸使用偏差,FAWMF利用了核苷酸的这一基本特征来抑制信号噪声。

结果

随着FAWMF的自适应响应,观察到中值核苷酸与Π形滤波器之间存在很强的相关性,这与固定长度的传统窗口滤波器相反,在编码区和非编码区之间产生了更强的区分能力。与在超过250个不同生物体的基准和随机选取的DNA数据集上测试的其他传统窗口滤波器相比,所提出的FAWMF在编码区识别方面有显著提高,即提高了40%至125%。

结论

本研究证明,应用于DNA信号的传统固定长度窗口滤波器由于核苷酸携带遗传密码上下文而无法取得显著结果。所提出的FAWMF算法具有自适应性,在处理DNA信号内容方面表现出显著优势。与固定窗口长度的传统滤波器相反,该算法应用于各种DNA数据集时,在编码区和非编码区之间产生了显著的区分能力。

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