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Documents authored by Mungall, Christopher J.


Artifact
Software
Whelk reasoner

Authors: James P. Balhoff and Christopher J. Mungall


Abstract

Cite as

James P. Balhoff, Christopher J. Mungall. Whelk reasoner (Software, Source code). Schloss Dagstuhl – Leibniz-Zentrum für Informatik (2024)


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@misc{dagpub-supp--paper-21724-urlgithub.com-INCATools-whelk,
   title = {{Whelk reasoner}}, 
   author = {Balhoff, James P. and Mungall, Christopher J.},
   note = {Software, version 1.2.1., swhId: \href{https://archive.softwareheritage.org/swh:1:dir:f8919707e053212b2c74bc63988a06ffe03fb796;origin=https://github.com/INCATools/whelk;visit=swh:1:snp:900616057d4dbe7b6bcfee048b79dd78b399df31;anchor=swh:1:rev:6186eaa434399203d6fad9ff47d0e0df61acb98c}{\texttt{swh:1:dir:f8919707e053212b2c74bc63988a06ffe03fb796}} (visited on 2024-12-18)},
   url = {https://github.com/INCATools/whelk},
   doi = {10.4230/artifacts.22615},
}
Document
Resource Paper
Whelk: An OWL EL+RL Reasoner Enabling New Use Cases

Authors: James P. Balhoff and Christopher J. Mungall

Published in: TGDK, Volume 2, Issue 2 (2024): Special Issue on Resources for Graph Data and Knowledge. Transactions on Graph Data and Knowledge, Volume 2, Issue 2


Abstract
Many tasks in the biosciences rely on reasoning with large OWL terminologies (Tboxes), often combined with even larger databases. In particular, a common task is retrieval queries that utilize relational expressions; for example, “find all genes expressed in the brain or any part of the brain”. Automated reasoning on these ontologies typically relies on scalable reasoners targeting the EL subset of OWL, such as ELK. While the introduction of ELK has been transformative in the incorporation of reasoning into bio-ontology quality control and production pipelines, we have encountered limitations when applying it to use cases involving high throughput query answering or reasoning about datasets describing instances (Aboxes). Whelk is a fast OWL reasoner for combined EL+RL reasoning. As such, it is particularly useful for many biological ontology tasks, particularly those characterized by large Tboxes using the EL subset of OWL, combined with Aboxes targeting the RL subset of OWL. Whelk is implemented in Scala and utilizes immutable functional data structures, which provides advantages when performing incremental or dynamic reasoning tasks. Whelk supports querying complex class expressions at a substantially greater rate than ELK, and can answer queries or perform incremental reasoning tasks in parallel, enabling novel applications of OWL reasoning.

Cite as

James P. Balhoff and Christopher J. Mungall. Whelk: An OWL EL+RL Reasoner Enabling New Use Cases. In Special Issue on Resources for Graph Data and Knowledge. Transactions on Graph Data and Knowledge (TGDK), Volume 2, Issue 2, pp. 7:1-7:17, Schloss Dagstuhl – Leibniz-Zentrum für Informatik (2024)


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@Article{balhoff_et_al:TGDK.2.2.7,
  author =	{Balhoff, James P. and Mungall, Christopher J.},
  title =	{{Whelk: An OWL EL+RL Reasoner Enabling New Use Cases}},
  journal =	{Transactions on Graph Data and Knowledge},
  pages =	{7:1--7:17},
  ISSN =	{2942-7517},
  year =	{2024},
  volume =	{2},
  number =	{2},
  publisher =	{Schloss Dagstuhl -- Leibniz-Zentrum f{\"u}r Informatik},
  address =	{Dagstuhl, Germany},
  URL =		{https://drops.dagstuhl.de/entities/document/10.4230/TGDK.2.2.7},
  URN =		{urn:nbn:de:0030-drops-225918},
  doi =		{10.4230/TGDK.2.2.7},
  annote =	{Keywords: Web Ontology Language, OWL, Semantic Web, ontology, reasoner}
}
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