A crowdsourcing workflow for extracting chemical-induced disease relations from free text.

Database (Oxford)

Department of Molecular and Experimental Medicine, the Scripps Research Institute, La Jolla, CA 92037, USA

Published: January 2017

AI Article Synopsis

  • The study explores a crowdsourcing approach to extract chemical-disease relations from biomedical literature, aiming to reduce the cost and impracticality of expert manual curation.
  • Five non-expert workers evaluated potential relations, with their votes used to determine which were considered true, achieving a 0.505 F-score on 500 PubMed abstracts.
  • The total cost for this crowdsourcing effort was $1290.67, but analysis showed that improvements are possible, especially regarding recognized errors in the task.

Article Abstract

Relations between chemicals and diseases are one of the most queried biomedical interactions. Although expert manual curation is the standard method for extracting these relations from the literature, it is expensive and impractical to apply to large numbers of documents, and therefore alternative methods are required. We describe here a crowdsourcing workflow for extracting chemical-induced disease relations from free text as part of the BioCreative V Chemical Disease Relation challenge. Five non-expert workers on the CrowdFlower platform were shown each potential chemical-induced disease relation highlighted in the original source text and asked to make binary judgments about whether the text supported the relation. Worker responses were aggregated through voting, and relations receiving four or more votes were predicted as true. On the official evaluation dataset of 500 PubMed abstracts, the crowd attained a 0.505F-score (0.475 precision, 0.540 recall), with a maximum theoretical recall of 0.751 due to errors with named entity recognition. The total crowdsourcing cost was $1290.67 ($2.58 per abstract) and took a total of 7 h. A qualitative error analysis revealed that 46.66% of sampled errors were due to task limitations and gold standard errors, indicating that performance can still be improved. All code and results are publicly available athttps://github.com/SuLab/crowd_cid_relexDatabase URL:https://github.com/SuLab/crowd_cid_relex.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC4834205PMC
http://dx.doi.org/10.1093/database/baw051DOI Listing

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