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Enhancing the Human Phenotype Ontology for Use by the Layperson.

, , , , , , and . ICBO/BioCreative, volume 1747 of CEUR Workshop Proceedings, CEUR-WS.org, (2016)

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The influence of disease categories on gene candidate predictions from model organism phenotypes., , , , , , , and . J. Biomed. Semant., 5 (S-1): S4 (2014)Clinical phenotype-based gene prioritization: an initial study using semantic similarity and the human phenotype ontology., , , , , , , , and . BMC Bioinform., (2014)An Improved Statistic for Detecting Over-Represented Gene Ontology Annotations in Gene Sets., , , and . RECOMB, volume 3909 of Lecture Notes in Computer Science, page 85-98. Springer, (2006)Ensembling Descendant Term Classifiers to Improve Gene - Abnormal Phenotype Predictions., , , , , and . CIBB, volume 10834 of Lecture Notes in Computer Science, page 70-80. Springer, (2017)Human genotype–phenotype databases: aims, challenges and opportunities, and . Nature Reviews Genetics, 16 (12): 702--715 (Nov 10, 2015)Ontologizing gene-expression microarray data: characterizing clusters with Gene Ontology, , , and . Bioinform., 20 (6): 979-981 (2004)Structured Prompt Interrogation and Recursive Extraction of Semantics (SPIRES): a method for populating knowledge bases using zero-shot learning., , , , , , , , , and 2 other author(s). Bioinform., (March 2024)Representing glycophenotypes: semantic unification of glycobiology resources for disease discovery., , , , , , , , , and 1 other author(s). Database J. Biol. Databases Curation, (2019)The Human Phenotype Ontology in 2021., , , , , , , , , and 41 other author(s). Nucleic Acids Res., 49 (Database-Issue): D1207-D1217 (2021)L1Base 2: more retrotransposition-active LINE-1s, more mammalian genomes., , , , , , and . Nucleic Acids Res., 45 (Database-Issue): D68-D73 (2017)