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Data Quality Assessment and Anomaly Detection Via Map / Reduce and Linked Data: A Case Study in the Medical Domain

Bonner, S.; McGough, S.; Kureshi, I.; Brennan, J.; Theodoropoulos, G.; Moss, L.; Corsar, D.; Antoniou, G.

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Authors

S. Bonner

S. McGough

I. Kureshi

J. Brennan

G. Theodoropoulos

L. Moss

D. Corsar

G. Antoniou



Abstract

Recent technological advances in modern healthcare have lead to the ability to collect a vast wealth of patient monitoring data. This data can be utilised for patient diagnosis but it also holds the potential for use within medical research. However, these datasets often contain errors which limit their value to medical research, with one study finding error rates ranging from 2.3%???26.9% in a selection of medical databases. Previous methods for automatically assessing data quality normally rely on threshold rules, which are often unable to correctly identify errors, as further complex domain knowledge is required. To combat this, a semantic web based framework has previously been developed to assess the quality of medical data. However, early work, based solely on traditional semantic web technologies, revealed they are either unable or inefficient at scaling to the vast volumes of medical data. In this paper we present a new method for storing and querying medical RDF datasets using Hadoop Map / Reduce. This approach exploits the inherent parallelism found within RDF datasets and queries, allowing us to scale with both dataset and system size. Unlike previous solutions, this framework uses highly optimised (SPARQL) joining strategies, intelligent data caching and the use of a super-query to enable the completion of eight distinct SPARQL lookups, comprising over eighty distinct joins, in only two Map / Reduce iterations. Results are presented comparing both the Jena and a previous Hadoop implementation demonstrating the superior performance of the new methodology. The new method is shown to be five times faster than Jena and twice as fast as the previous approach.

Citation

Bonner, S., McGough, S., Kureshi, I., Brennan, J., Theodoropoulos, G., Moss, L., Corsar, D., & Antoniou, G. (2023, October). Data Quality Assessment and Anomaly Detection Via Map / Reduce and Linked Data: A Case Study in the Medical Domain. Presented at IEEE International Conference on Big Data, Santa Clara

Presentation Conference Type Conference Paper (published)
Conference Name IEEE International Conference on Big Data
Start Date Oct 29, 2023
End Date Nov 1, 2015
Acceptance Date Sep 5, 2015
Publication Date Nov 1, 2015
Deposit Date Sep 24, 2015
Publicly Available Date Nov 26, 2015
Publisher Institute of Electrical and Electronics Engineers
Pages 737-746
Book Title Proceedings, 2015 IEEE International Conference on Big Data : Oct 29-Nov 01, 2015, Santa Clara, CA, USA.
DOI https://doi.org/10.1109/bigdata.2015.7363818
Keywords RDF, Medical Data, Map / Reduce, Joins.
Public URL https://durham-repository.worktribe.com/output/1152954

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