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Published in: Journal of Medical Systems 6/2013

01-12-2013 | Original Paper

SAMS – A Systems Architecture for Developing Intelligent Health Information Systems

Authors: Özgün Yılmaz, Rıza Cenk Erdur, Mustafa Türksever

Published in: Journal of Medical Systems | Issue 6/2013

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Abstract

In this paper, SAMS, a novel health information system architecture for developing intelligent health information systems is proposed and also some strategies for developing such systems are discussed. The systems fulfilling this architecture will be able to store electronic health records of the patients using OWL ontologies, share patient records among different hospitals and provide physicians expertise to assist them in making decisions. The system is intelligent because it is rule-based, makes use of rule-based reasoning and has the ability to learn and evolve itself. The learning capability is provided by extracting rules from previously given decisions by the physicians and then adding the extracted rules to the system. The proposed system is novel and original in all of these aspects. As a case study, a system is implemented conforming to SAMS architecture for use by dentists in the dental domain. The use of the developed system is described with a scenario. For evaluation, the developed dental information system will be used and tried by a group of dentists. The development of this system proves the applicability of SAMS architecture. By getting decision support from a system derived from this architecture, the cognitive gap between experienced and inexperienced physicians can be compensated. Thus, patient satisfaction can be achieved, inexperienced physicians are supported in decision making and the personnel can improve their knowledge. A physician can diagnose a case, which he/she has never diagnosed before, using this system. With the help of this system, it will be possible to store general domain knowledge in this system and the personnel’s need to medical guideline documents will be reduced.
Literature
11.
go back to reference Wooldridge M (2002) An Introduction to Multiagent Systems. John Wiley & Sons Ltd. Wooldridge M (2002) An Introduction to Multiagent Systems. John Wiley & Sons Ltd.
35.
go back to reference Kiani M, Francis M, Zand-Moghaddam Y, Verma P (2010) Ontology-Based Negotiation of Dental Therapy Options. In: Joshi M, Boley H, Akerkar R (eds) Advances in Semantic Computing, vol 2, TMRF India, chap 4, pp 52–78 Kiani M, Francis M, Zand-Moghaddam Y, Verma P (2010) Ontology-Based Negotiation of Dental Therapy Options. In: Joshi M, Boley H, Akerkar R (eds) Advances in Semantic Computing, vol 2, TMRF India, chap 4, pp 52–78
36.
go back to reference Park, S., and Kim, H. G., Dental Decision Making on Missing Tooth Represented in an Ontology and Rules. In: Mizoguchi, R., Shi, Z., and Giunchiglia, F. (Eds.), The Semantic Web - ASWC 2006, Lecture Notes in Computer Science. Springer Berlin, Heidelberg, pp. 322–328, 2006. URL http://dx.doi.org/10.1007/11836025_32.CrossRef Park, S., and Kim, H. G., Dental Decision Making on Missing Tooth Represented in an Ontology and Rules. In: Mizoguchi, R., Shi, Z., and Giunchiglia, F. (Eds.), The Semantic Web - ASWC 2006, Lecture Notes in Computer Science. Springer Berlin, Heidelberg, pp. 322–328, 2006. URL http://​dx.​doi.​org/​10.​1007/​11836025_​32.CrossRef
39.
go back to reference Kirn, S., Ubiquitous healthcare: The onkonet mobile agents architecture. In: Aksit, M., Mezini, M., and Unland, R. (Eds.), Objects, Components, Architectures, Services, and Applications for a NetworkedWorld, Lecture Notes in Computer Science. Springer Berlin, Heidelberg, pp. 265–277, 2003. URL http://dx.doi.org/10.1007/3-540-36557-5_20.CrossRef Kirn, S., Ubiquitous healthcare: The onkonet mobile agents architecture. In: Aksit, M., Mezini, M., and Unland, R. (Eds.), Objects, Components, Architectures, Services, and Applications for a NetworkedWorld, Lecture Notes in Computer Science. Springer Berlin, Heidelberg, pp. 265–277, 2003. URL http://​dx.​doi.​org/​10.​1007/​3-540-36557-5_​20.CrossRef
40.
go back to reference Laleci GB, Dogac A, Olduz M, Tasyurt I, Yuksel M, Okcan A (2008) SAPHIRE: A Multi-Agent System for Remote Healthcare Monitoring through Computerized Clinical Guidelines. In: Annicchiarico R, Cortés U, Urdiales C, Walliser M, Brantschen S, Calisti M, Hempfling T (eds) Agent Technology and e-Health, Whitestein Series in Software Agent Technologies and Autonomic Computing, Birkhäuser Basel, pp 25–44, URL http://dx.doi.org/10.1007/978-3-7643-8547-7_3 Laleci GB, Dogac A, Olduz M, Tasyurt I, Yuksel M, Okcan A (2008) SAPHIRE: A Multi-Agent System for Remote Healthcare Monitoring through Computerized Clinical Guidelines. In: Annicchiarico R, Cortés U, Urdiales C, Walliser M, Brantschen S, Calisti M, Hempfling T (eds) Agent Technology and e-Health, Whitestein Series in Software Agent Technologies and Autonomic Computing, Birkhäuser Basel, pp 25–44, URL http://​dx.​doi.​org/​10.​1007/​978-3-7643-8547-7_​3
Metadata
Title
SAMS – A Systems Architecture for Developing Intelligent Health Information Systems
Authors
Özgün Yılmaz
Rıza Cenk Erdur
Mustafa Türksever
Publication date
01-12-2013
Publisher
Springer US
Published in
Journal of Medical Systems / Issue 6/2013
Print ISSN: 0148-5598
Electronic ISSN: 1573-689X
DOI
https://doi.org/10.1007/s10916-013-9989-5

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