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Evaluating a variety of text-mined features for automatic protein function prediction with GOstruct.

, , , and . J. Biomed. Semant., (2015)

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A look back at the quality of Protein Function Prediction tools in CAFA., , , , and . PeerJ PrePrints, (2018)Poster: BioFactCheck: Exploring the Feasibility of Explainable Automated Inconsistency Detection in Biomedical and Health Literature., , , , , , , and . CHASE, page 196-197. IEEE, (2023)Automatically Cataloging Scholarly Articles using Library of Congress Subject Headings., , and . EACL (Student Research Workshop), page 43-49. Association for Computational Linguistics, (2021)DeepPPPred: Deep Ensemble Learning with Transformers, Recurrent and Convolutional Neural Networks for Human Protein-Phenotype Co-mention Classification., , , and . BIBM, page 2869-2876. IEEE, (2021)Patronizing and Condescending Language Detection., , and . ICMLA, page 1132-1137. IEEE, (2023)Overview of the BioCreative VI text-mining services for Kinome Curation Track., , , , , , , , and . Database J. Biol. Databases Curation, (2018)miRNAFinder: A comprehensive web resource for plant Pre-microRNA classification., , , , and . Biosyst., (2022)BioSGAN: Protein-Phenotype Co-mention Classification Using Semi-Supervised Generative Adversarial Networks., and . CBMS, page 468-473. IEEE, (2021)DeepACPpred: A Novel Hybrid CNN-RNN Architecture for Predicting Anti-Cancer Peptides., and . PACBB, volume 1240 of Advances in Intelligent Systems and Computing, page 60-69. Springer, (2020)ProPheno 1.0: An Online Dataset for Accelerating the Complete Characterization of the Human Protein-Phenotype Landscape in Biomedical Literature., and . ICSC, page 416-423. IEEE, (2020)