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Mining of relations between proteins over biomedical scientific literature using a deep-linguistic approach.

, , , , , , and . Artif. Intell. Medicine, 39 (2): 127-136 (2007)

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Detecting Protein-Protein Interactions in Biomedical Texts Using a Parser and Linguistic Resources., , and . CICLing, volume 5449 of Lecture Notes in Computer Science, page 406-417. Springer, (2009)OGER++: hybrid multi-type entity recognition., , , and . J. Cheminformatics, 11 (1): 7:1-7:10 (2019)Improving biocuration of microRNAs in diseases: a case study in idiopathic pulmonary fibrosis., , , , , , , and . Database J. Biol. Databases Curation, (2017)Ranking relations between diseases, drugs and genes for a curation task., and . J. Biomed. Semant., 3 (S-3): S5 (2012)MultiGBS: A multi-layer graph approach to biomedical summarization., , , and . CoRR, (2020)Exploiting Language Resources for Semantic Web Annotations., , , and . LREC, European Language Resources Association, (2004)Dependency parsing for interaction detection in pharmacogenomics., , and . LREC, page 2075-2082. European Language Resources Association (ELRA), (2012)Learning Preferences for Large Scale Multi-label Problems., , , , and . ICANN (1), volume 11139 of Lecture Notes in Computer Science, page 546-555. Springer, (2018)Tools for Text Mining over Biomedical Literature., , , and . ECAI, volume 141 of Frontiers in Artificial Intelligence and Applications, page 825-826. IOS Press, (2006)Enhancing Biomedical Relation Extraction with Transformer Models using Shortest Dependency Path Features and Triplet Information., and . J. Biomed. Informatics, (2021)