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Assessing drug target suitability using TargetMine., , , , , , и . F1000Research, (2019)Integration of Disease Entries Across OMIM, Orphanet, and a Proprietary Knowledge Base., , , и . IEA/AIE, том 9101 из Lecture Notes in Computer Science, стр. 120-130. Springer, (2015)Toward the Construction of a Knowledge Graph from Japanese Food Ontology for the Prevention of Frailty., , , , , , и . IJCKG (Workshop/Poster/Demo), том 3659 из CEUR Workshop Proceedings, стр. 1-4. CEUR-WS.org, (2023)Impact of quality trimming on the efficiency of reads joining and diversity analysis of Illumina paired-end reads in the context of QIIME1 and QIIME2 microbiome analysis frameworks., , , , и . BMC Bioinform., 20 (1): 581:1-581:10 (2019)HOMSTRAD: recent developments of the Homologous Protein Structure Alignment Database., и . Nucleic Acids Res., 32 (Database-Issue): 203-207 (2004)Network-Based Analysis of Host-Pathogen Interactions., , , и . Encyclopedia of Bioinformatics and Computational Biology (3), Elsevier, (2019)TargetMine 2022: a new vision into drug target analysis., , и . Bioinform., 38 (18): 4454-4456 (2022)Toxygates: interactive toxicity analysis on a hybrid microarray and linked data platform., , , , , , и . Bioinform., 29 (23): 3080-3086 (2013)Attention network for predicting T-cell receptor-peptide binding can associate attention with interpretable protein structural properties., , , и . Frontiers Bioinform., (мая 2023)An Open Framework for Extensible Multi-stage Bioinformatics Software., , , и . PRIB, том 7632 из Lecture Notes in Computer Science, стр. 106-117. Springer, (2012)