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Self-Organizing Maps of Position Weight Matrices for Motif Discovery in Biological Sequences.

, , , and . Artif. Intell. Rev., 24 (3-4): 397-413 (2005)

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A Deep Learning Approach for Cancer Detection and Relevant Gene Identification., , and . PSB, page 219-229. (2017)Self-Organizing Maps of Position Weight Matrices for Motif Discovery in Biological Sequences., , , and . Artif. Intell. Rev., 24 (3-4): 397-413 (2005)Transcription factor binding site identification using the self-organizing map., , , , and . Bioinform., 21 (9): 1807-1814 (2005)HopBase: a unified resource for Humulus genomics., , , and . Database J. Biol. Databases Curation, (2017)DeepSloop: A Recurrent Neural Network Learns Complex Rules to Detect Stem-Loop-Forming RNA Sequences., , and . BIBM, page 2799-2807. IEEE, (2019)LinearFold: linear-time approximate RNA folding by 5'-to-3' dynamic programming and beam search., , , , , , and . Bioinform., 35 (14): i295-i304 (2019)Crowdsourcing to predict RNA degradation and secondary structure.. Nat. Mac. Intell., 5 (2): 101-103 (February 2023)Improving transformer secondary structure predictions with secondary structure "fixing" task., , and . MLCB, volume 240 of Proceedings of Machine Learning Research, page 267-278. PMLR, (2023)LinearFold: linear-time approximate RNA folding by 5'-to-3' dynamic programming and beam search., , , , , , and . CoRR, (2020)miRWoods: Enhanced precursor detection and stacked random forests for the sensitive detection of microRNAs., , , , , and . PLoS Comput. Biol., (2019)