Abstract

BackgroundSince their introduction in 2009, the BioNLP Shared Task events have been instrumental in advancing the development of methods and resources for the automatic extraction of information from the biomedical literature. In this paper, we present the Cancer Genetics (CG) and Pathway Curation (PC) tasks, two event extraction tasks introduced in the BioNLP Shared Task 2013. The CG task focuses on cancer, emphasizing the extraction of physiological and pathological processes at various levels of biological organization, and the PC task targets reactions relevant to the development of biomolecular pathway models, defining its extraction targets on the basis of established pathway representations and ontologies.ResultsSix groups participated in the CG task and two groups in the PC task, together applying a wide range of extraction approaches including both established state-of-the-art systems and newly introduced extraction methods. The best-performing systems achieved F-scores of 55% on the CG task and 53% on the PC task, demonstrating a level of performance comparable to the best results achieved in similar previously proposed tasks.ConclusionsThe results indicate that existing event extraction technology can generalize to meet the novel challenges represented by the CG and PC task settings, suggesting that extraction methods are capable of supporting the construction of knowledge bases on the molecular mechanisms of cancer and the curation of biomolecular pathway models. The CG and PC tasks continue as open challenges for all interested parties, with data, tools and resources available from the shared task homepage.

Highlights

  • Since their introduction in 2009, the BioNLP Shared Task events have been instrumental in advancing the development of methods and resources for the automatic extraction of information from the biomedical literature

  • The results indicate that existing event extraction technology can generalize to meet the novel challenges represented by the Cancer Genetics (CG) and Pathway Curation (PC) task settings, suggesting that extraction methods are capable of supporting the construction of knowledge bases on the molecular mechanisms of cancer and the curation of biomolecular pathway models

  • The CG and PC tasks continue as open challenges for all interested parties, with data, tools and resources available from the shared task homepage

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Summary

Introduction

Since their introduction in 2009, the BioNLP Shared Task events have been instrumental in advancing the development of methods and resources for the automatic extraction of information from the biomedical literature. We describe two of the event extraction tasks of the BioNLP ST’13 challenge, the Cancer Genetics (CG) and Pathway Curation (PC) tasks, both of which were newly introduced for the 2013 challenge. Both the CG and PC tasks aim to support knowledge base construction, the over-arching theme of the 2013 BioNLP ST That is, both tasks are motivated by the need to develop better methods for automatically analyzing the literature at large scale in order to support the creation, maintenance and further development of structured representations of domain knowledge. The specific representations and subdomains of biomedical knowledge targeted by the tasks differ substantially, leading to two different information extraction task settings

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