Exploring semantic deep learning for building reliable and reusable one health knowledge from PubMed systematic reviews and veterinary clinical notes.

Journal: Journal of biomedical semantics
PMID:

Abstract

BACKGROUND: Deep Learning opens up opportunities for routinely scanning large bodies of biomedical literature and clinical narratives to represent the meaning of biomedical and clinical terms. However, the validation and integration of this knowledge on a scale requires cross checking with ground truths (i.e. evidence-based resources) that are unavailable in an actionable or computable form. In this paper we explore how to turn information about diagnoses, prognoses, therapies and other clinical concepts into computable knowledge using free-text data about human and animal health. We used a Semantic Deep Learning approach that combines the Semantic Web technologies and Deep Learning to acquire and validate knowledge about 11 well-known medical conditions mined from two sets of unstructured free-text data: 300 K PubMed Systematic Review articles (the PMSB dataset) and 2.5 M veterinary clinical notes (the VetCN dataset). For each target condition we obtained 20 related clinical concepts using two deep learning methods applied separately on the two datasets, resulting in 880 term pairs (target term, candidate term). Each concept, represented by an n-gram, is mapped to UMLS using MetaMap; we also developed a bespoke method for mapping short forms (e.g. abbreviations and acronyms). Existing ontologies were used to formally represent associations. We also create ontological modules and illustrate how the extracted knowledge can be queried. The evaluation was performed using the content within BMJ Best Practice.

Authors

  • Mercedes Arguello-Casteleiro
    School of Computer Science, University of Manchester, Manchester, UK. m.arguello@manchester.ac.uk.
  • Robert Stevens
    School of Computer Science, The University of Manchester, Oxford Road, Manchester M13 9PL, United Kingdom. Electronic address: robert.stevens@manchester.ac.uk.
  • Julio Des-Diz
    Hospital do Salnés, Villagarcía de Arousa, Pontevedra, Spain.
  • Chris Wroe
    BMJ, Tavistock Square, London, UK.
  • Maria Jesus Fernandez-Prieto
    Salford Languages, University of Salford, Salford, UK.
  • Nava Maroto
    Departamento de Lingüística Aplicada a la Ciencia y a la Tecnología, Universidad Politécnica de Madrid, Madrid, Spain.
  • Diego Maseda-Fernandez
    Midcheshire Hospital Foundation Trust, NHS England, Crewe, UK.
  • George Demetriou
    School of Computer Science, University of Manchester, Oxford Road, M13 9PL Manchester, UK.
  • Simon Peters
    School of Social Sciences, University of Manchester, Manchester, UK.
  • Peter-John M Noble
    Small Animal Veterinary Surveillance Network, University of Liverpool, Liverpool, UK.
  • Phil H Jones
    Small Animal Veterinary Surveillance Network, University of Liverpool, Liverpool, UK.
  • Jo Dukes-McEwan
    Small Animal Teaching Hospital, University of Liverpool, Liverpool, UK.
  • Alan D Radford
    Small Animal Veterinary Surveillance Network, University of Liverpool, Liverpool, UK.
  • John Keane
    School of Computer Science, University of Manchester (UK).
  • Goran Nenadic
    School of Computer Science, University of Manchester, Manchester, UK.