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Food Data Integration by using Heuristics based on Lexical and Semantic Similarities.

, , , , , and . HEALTHINF, page 208-216. SCITEPRESS, (2020)

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Food Data Integration by using Heuristics based on Lexical and Semantic Similarities., , , , , and . HEALTHINF, page 208-216. SCITEPRESS, (2020)Exploring Knowledge Domain Bias on a Prediction Task for Food and Nutrition Data., , and . IEEE BigData, page 3563-3572. IEEE, (2020)Comparing Semantic and Nutrient Value Similarities of Recipes., , and . IEEE BigData, page 5131-5139. IEEE, (2019)Predefined domain specific embeddings of food concepts and recipes: A case study on heterogeneous recipe datasets., , and . IEEE Big Data, page 4074-4083. IEEE, (2022)Quisper Ontology Learning from Personalized Dietary Web Services., , , , and . KEOD, page 277-284. SciTePress, (2018)An Insight into Food Semantics: Review, Analysis, and Lessons Learnt over Food-Related Studies (short paper)., , , , , and . ICBO/ODLS, volume 2807 of CEUR Workshop Proceedings, page 1-2. CEUR-WS.org, (2020)Mapping Food Composition Data from Various Data Sources to a Domain-Specific Ontology., , , and . KEOD, page 203-210. SciTePress, (2017)CafeteriaSA corpus: scientific abstracts annotated across different food semantic resources., , , , , , , , and . Database J. Biol. Databases Curation, (2022)Assessing the Generalizability of a Performance Predictive Model., , , , , , , , and . GECCO Companion, page 311-314. ACM, (2023)The RICHFIELDS Framework for Semantic Interoperability of Food Information Across Heterogenous Information Systems., , , and . KDIR, page 313-320. SciTePress, (2018)