Agrawal Ankit, Mittal Ankush, Jain Rahul, Takkar Raghav
Department of Electrical Engineering and Computer Science, Northwestern University, Evanston, IL 60208, USA.
Int J Comput Biol Drug Des. 2010;3(4):311-33. doi: 10.1504/IJCBDD.2010.038395. Epub 2011 Feb 4.
Thresholding is always critical and decisive in many bioinformatics problems. In this paper, we propose and apply a fuzzy-logic-based adaptive thresholding approach to a well-known solution for the exon prediction problem, which uses a threshold on the frequency component at f = 1/3 in the nucleotide sequence. The proposed approach allows the thresholds to vary along the data set based on the local statistical properties. Experiments and results on the nucleotide data of Saccharomyces cerevisiae (Bakers yeast) illustrate the advantage of our approach. A user-friendly GUI in MATLAB is freely available for academic use at www.cs.iastate.edu/˜ankitag/FATBEP.html.
在许多生物信息学问题中,阈值处理始终至关重要且具有决定性作用。在本文中,我们针对外显子预测问题的一个著名解决方案,提出并应用了一种基于模糊逻辑的自适应阈值处理方法,该方法对核苷酸序列中频率分量f = 1/3处使用了一个阈值。所提出的方法允许阈值根据局部统计特性在数据集上变化。对酿酒酵母(面包酵母)核苷酸数据的实验及结果说明了我们方法的优势。在www.cs.iastate.edu/˜ankitag/FATBEP.html上可免费获取一个MATLAB中用户友好的GUI以供学术使用。