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1.
Stud Health Technol Inform ; 160(Pt 2): 912-6, 2010.
Article in English | MEDLINE | ID: mdl-20841817

ABSTRACT

This paper describes the building of an HL7-based Information Model Ontology (IMO) that can be exploited by a domain ontology in order to distribute querying over different clinical data repositories. We employed the Open Medical Development Framework (OMDF) based on a model driven development methodology. OMDF provides model transformation features to build an HL7-based information model that covers the conceptual scope of a target project. The resulting IMO is used to mediate between ontologically queries and information retrieval from semantically less defined Hospital Information Systems (HIS). In the context of the DebugIT project - which scope corresponds to the control of infectious diseases and antimicrobial resistances - Information Model Ontology is integrated to the DebugIT domain ontology in order to express queries.


Subject(s)
Hospital Information Systems/standards , Communicable Disease Control/methods , Drug Resistance, Microbial , Health Level Seven , Systems Integration
2.
Stud Health Technol Inform ; 160(Pt 2): 1060-4, 2010.
Article in English | MEDLINE | ID: mdl-20841846

ABSTRACT

Antibiotics resistance development poses a significant problem in today's hospital care. Massive amounts of clinical data are being collected and stored in proprietary and unconnected systems in heterogeneous format. The DebugIT EU project promises to make this data geographically and semantically interoperable for case-based knowledge analysis approaches aiming at the discovery of patterns that help to align antibiotics treatment schemes. The semantic glue for this endeavor is DCO, an application ontology that enables data miners to query distributed clinical information systems in a semantically rich and content driven manner. DCO will hence serve as the core component of the interoperability platform for the DebugIT project. Here we present DCO and an approach thet uses the semantic web query language SPARQL to bind and ontologically query hospital database content using DCO and information model mediators. We provide a query example that indicates that ontological querying over heterogeneous information models is feasible via SPARQL construct- and resource mapping queries.


Subject(s)
Drug Resistance, Microbial , Semantics , Databases, Factual , Information Storage and Retrieval , Internet , Software
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