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Comprehensive prediction of lncRNA-RNA interactions in human transcriptome.

, , , , and . BMC Genomics, 17 (S-1): 12 (2016)

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A Non-parametric Bayesian Approach for Predicting RNA Secondary Structures., , , , and . WABI, volume 5724 of Lecture Notes in Computer Science, page 286-297. Springer, (2009)Comprehensive prediction of lncRNA-RNA interactions in human transcriptome., , , , and . BMC Genomics, 17 (S-1): 12 (2016)Umibato: estimation of time-varying microbial interaction using continuous-time regression hidden Markov model., , and . Bioinform., 37 (Supplement): 16-24 (2021)CentroidAlign: fast and accurate aligner for structured RNAs by maximizing expected sum-of-pairs score., , , , and . Bioinform., 25 (24): 3236-3243 (2009)Learning chromatin states with factorized information criteria., , , and . Bioinform., 31 (15): 2426-2433 (2015)Predictions of RNA secondary structure by combining homologous sequence information., , , , and . Bioinform., (2009)Prediction of RNA secondary structure using generalized centroid estimators., , , , and . Bioinform., 25 (4): 465-473 (2009)A Novel Method for Assessing the Statistical Significance of RNA-RNA Interactions Between Two Long RNAs., and . J. Comput. Biol., 25 (9): 976-986 (2018)Fighting against uncertainty: an essential issue in bioinformatics.. Briefings Bioinform., 15 (5): 748-767 (2014)Analysis of base-pairing probabilities of RNA molecules involved in protein-RNA interactions., , , and . Bioinform., 29 (20): 2524-2528 (2013)