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Optimizing graph-based patterns to extract biomedical events from the literature.

, , , , and . BMC Bioinform., 16 (S16): S2 (December 2015)

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The automatic identification of stop words, and . Journal of Information Science, 18 (1): 45--55 (1992)An EM Clustering Algorithm which Produces a Dual Representation., and . ICMLA (2), page 90-95. IEEE Computer Society, (2011)978-0-7695-4607-0.Fusion of Knowledge-Intensive and Statistical Approaches for Retrieving and Annotating Textual Genomics Documents., , , , , , , , , and . TREC, volume 500-266 of NIST Special Publication, National Institute of Standards and Technology (NIST), (2005)Combining Resources to Find Answers to Biomedical Questions., , , , , , , , , and . TREC, volume 500-274 of NIST Special Publication, National Institute of Standards and Technology (NIST), (2007)Amino Acid Residue Environments and Predictions of Residue Type., and . Comput. Chem., 25 (4): 411-422 (2001)Syntactic sentence compression in the biomedical domain: facilitating access to related articles., and . Inf. Retr., 10 (4-5): 393-414 (2007)Tagging gene and protein names in biomedical text., and . Bioinform., 18 (8): 1124-1132 (2002)Finding Themes in Medline Documents: Probabilistic Similarity Search., and . ADL, page 183-192. IEEE Computer Society, (2000)Tagging gene and protein names in full text articles., and . ACL Workshop on Natural Language Processing in the Biomedical Domain, page 9-13. ACL, (2002)Users' adjustments to unsuccessful queries in biomedical search., , , and . JCDL, page 433-434. ACM, (2009)