Machine learning-based methods for prediction of linear B-cell epitopes.
暂无分享,去创建一个
[1] Joo Chuan Tong,et al. SVM-based prediction of linear B-cell epitopes using Bayes Feature Extraction , 2010, BMC Genomics.
[2] Edward R. Dougherty,et al. Morphological methods in image and signal processing , 1988 .
[3] Chih-Jen Lin,et al. LIBSVM: A library for support vector machines , 2011, TIST.
[4] Tun-Wen Pai,et al. Prediction of B-cell Linear Epitopes with a Combination of Support Vector Machine Classification and Amino Acid Propensity Identification , 2011, Journal of biomedicine & biotechnology.
[5] Emily Chia-Yu Su,et al. Prediction of B-cell epitopes using evolutionary information and propensity scales , 2013, BMC Bioinformatics.
[6] D. Flower,et al. Benchmarking B cell epitope prediction: Underperformance of existing methods , 2005, Protein science : a publication of the Protein Society.
[7] Yaoqi Zhou,et al. BEST: Improved Prediction of B-Cell Epitopes from Antigen Sequences , 2012, PloS one.
[8] Harinder Singh,et al. Improved Method for Linear B-Cell Epitope Prediction Using Antigen’s Primary Sequence , 2013, PloS one.
[9] R. Hodges,et al. New hydrophilicity scale derived from high-performance liquid chromatography peptide retention data: correlation of predicted surface residues with antigenicity and X-ray-derived accessible sites. , 1986, Biochemistry.
[10] E. Emini,et al. Induction of hepatitis A virus-neutralizing antibody by a virus-specific synthetic peptide , 1985, Journal of virology.
[11] G Deléage,et al. An algorithm for protein secondary structure prediction based on class prediction. , 1987, Protein engineering.
[12] Bo Yao,et al. SVMTriP: A Method to Predict Antigenic Epitopes Using Support Vector Machine to Integrate Tri-Peptide Similarity and Propensity , 2012, PloS one.
[13] P. Karplus,et al. Refined structure of glutathione reductase at 1.54 A resolution. , 1987, Journal of molecular biology.
[14] Jean Serra,et al. Image Analysis and Mathematical Morphology , 1983 .
[15] Petros Maragos,et al. Morphological filters-Part I: Their set-theoretic analysis and relations to linear shift-invariant filters , 1987, IEEE Trans. Acoust. Speech Signal Process..
[16] Louise C. Showe,et al. Learning from positive examples when the negative class is undetermined- microRNA gene identification , 2008, Algorithms for Molecular Biology.
[17] L. Debelle,et al. Predictions of the secondary structure and antigenicity of human and bovine tropoelastins , 2004, European Biophysics Journal.
[18] M. Bhasin,et al. Bcipep: A database of B-cell epitopes , 2005, BMC Genomics.
[19] R. Doolittle,et al. A simple method for displaying the hydropathic character of a protein. , 1982, Journal of molecular biology.
[20] Itay Mayrose,et al. Epitopia: a web-server for predicting B-cell epitopes , 2009, BMC Bioinformatics.
[21] S. Caoili. Benchmarking B-Cell Epitope Prediction for the Design of Peptide-Based Vaccines: Problems and Prospects , 2010, Journal of biomedicine & biotechnology.
[22] Vladimir N. Vapnik,et al. The Nature of Statistical Learning Theory , 2000, Statistics for Engineering and Information Science.
[23] William Stafford Noble,et al. Support vector machine , 2013 .
[24] Nimrod D. Rubinstein,et al. A machine-learning approach for predicting B-cell epitopes. , 2009, Molecular immunology.
[25] M. Vihinen,et al. Accuracy of protein flexibility predictions , 1994, Proteins.