Keywords:
Publications of Ananiadou, S. sorted by first author
| 1-25 | 26-50 | 51-75 | 76-100 | 101-125 | 126-150 | 151-175 | 176-200 | 201-225 | 226-250 | 251-275 | 276-300 | 301-325 | 326-350 | 351-375 | 376-400 | 401-425 | 426-442 |
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| and , A Task-Oriented Extension of the Chinese MeSH Concepts Hierarchy, in: Proceedings of the Second Workshop on Building and Evaluating Resources for Biomedical Text Mining (BioTxtM), LREC 2010, pages 23--30, 2010 |
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| , , , , , and , Automatic Extraction of Angiogenesis Bio-Process from Text (2011), in: Bioinformatics, 27:19(2730-2737) |
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| , , , , , , and , Detecting Experimental Techniques and Selecting Relevant Documents for Protein-Protein Interactions from Biomedical Literature (2011), in: BMC Bioinformatics, 12:Suppl 8(S11) |
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| , , , , , , and , NaCTeM Systems for BioCreative III PPI Tasks, in: Proceedings of the BioCreative III Workshop, pages 142-147, 2010 |
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| , and , Biomedical Chinese-English CLIR Using an Extended CMeSH Resource to Expand Queries, in: Proceedings of the Eighth International Conference on Language Resources and Evaluation (LREC 2012), pages 1148-1155, 2012 |
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| , and , Disambiguating the Species of Biomedical Named Entities Using Natural Language Parsers (2010), in: Bioinformatics, 26:5(661--667) |
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| , and , Classifying Relations for Biomedical Named Entity Disambiguation, in: Procedings of the Conference on Empirical Methods in Natural Language Processing (EMNLP'09), pages 1513--1522, 2009 |
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| , and , Improve Chinese Clinical Named Entity Recognition Performance by Using the Graphical and Phonetic Feature, in: Proceedings of the 2018 International Workshop on Biomedical and Health Informatics, 2018 |
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| , , , , , and , Mapping anatomical related entities to human body parts based on wikipedia in discharge summaries (2019), in: BMC Bioinformatics, 20(430) |
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| , , , , , , and , HARMONIC: Harnessing LLMs for Tabular Data Synthesis and Privacy Protection, in: Proceedings of the Thirty-Eighth Annual Conference on Neural Information Processing Systems (NeurIPS), 2024 |
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| , , , , and , Software Analytics for MDE Communities, in: Proceedings of the Open Source Software for Model Driven Engineering Workshop (OSS4MDE’14), 2014 |
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| , , , , , , , , and , Overview of the BioLaySumm 2025 Shared Task on Lay Summarization of Biomedical Research Articles and Radiology Reports, in: Proceedings of the 24th Workshop on Biomedical Language Processing, pages 365–377, 2025 |
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| , , , , , , , , , , , and , Retrieval-augmented Large Language Models for Financial Time Series Forecasting, arXiv, 2025 |
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| , , and , Pre-trained language models with domain knowledge for biomedical extractive summarization (2022), in: Knowledge-Based Systems, 252(109460) |
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| , , , , , , , , , , , , , , , , , , , , , , , , , , , , , and , FinBen: An Holistic Financial Benchmark for Large Language Models, in: Proceedings of the Thirty-Eighth Annual Conference on Neural Information Processing Systems (NeurIPS), 2024 |
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| , , , , , , , , , , , , , , , , , , , , , , and , FinNLP-AgentScen-2024 Shared Task: Financial Challenges in Large Language Models - FinLLMs, in: Proceedings of the Eighth Financial Technology and Natural Language Processing and the 1st Agent AI for Scenario Planning, pages 119- 126, 2024 |
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| , , and , GRETEL: Graph Contrastive Topic Enhanced Language Model for Long Document Extractive Summarization, in: Proceedings of COLING, pages 6259–6269, 2022 |
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| , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , and , Open-FinLLMs: Open Multimodal Large Language Models for Financial Applications, arXiv, 2024 |
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| , and , A Survey for Biomedical Text Summarization: From Pre-trained to Large Language Models, arXiv, 2023 |
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| , and , Knowledge-enhanced Graph Topic Transformer for Explainable Biomedical Text Summarization (2023), in: IEEE Journal of Biomedical and Health Informatics |
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| , , , , , , , , , , , , , , , , , , , , , , , and , FinChain: A Symbolic Benchmark for Verifiable Chain-of-Thought Financial Reasoning, arXiv, 2025 |
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| , , , , , , , , , , , and , FLAG-Trader: Fusion LLM-Agent with Gradient-based Reinforcement Learning for Financial Trading, in: Findings of the Association for Computational Linguistics: ACL 2025, pages 13921–13934, 2025 |
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| , and , Disentangled VAD Representations via a Variational Framework for Political Stance Detection, arXiv, 2025 |
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| , , , , , , and , Bilingual term alignment from comparable corpora in English discharge summary and Chinese discharge summary (2015), in: BMC Bioinformatics, 16(149) |
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| , , , , , , and , Anatomical entity recognition with a hierarchical framework augmented by external resources (2014), in: PLOS ONE, 9:10(e108396) |
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| 1-25 | 26-50 | 51-75 | 76-100 | 101-125 | 126-150 | 151-175 | 176-200 | 201-225 | 226-250 | 251-275 | 276-300 | 301-325 | 326-350 | 351-375 | 376-400 | 401-425 | 426-442 |
