Developing a multi-agent platform supporting patient hospital stays following a socio-technical approach: Management and governance benefits
暂无分享,去创建一个
[1] Manuel Kolp,et al. Business and model-driven development of BDI multi-agent systems , 2016, Neurocomputing.
[2] Antonio Moreno,et al. A Systematic Literature Review of Agents Applied in Healthcare , 2016, Journal of Medical Systems.
[3] Manuel Kolp,et al. Human organizational patterns applied to collaborative learning software systems , 2015, Comput. Hum. Behav..
[4] Ding Ding,et al. Models and Insights for Hospital Inpatient Operations: Time-Dependent ED Boarding Time , 2015, Manag. Sci..
[5] Smaranda Belciug,et al. Improving hospital bed occupancy and resource utilization through queuing modeling and evolutionary computation , 2015, J. Biomed. Informatics.
[6] Jan Ladiges,et al. Programming BDI Agents with Pure Java , 2014, MATES.
[7] Filipe Portela,et al. The Next Generation of Interoperability Agents in Healthcare , 2014, International journal of environmental research and public health.
[8] Marc Paquet,et al. Multi-agent decision-making support model for the management of pre-hospital emergency services , 2014 .
[9] Lotfi Bouzguenda,et al. Designing an Architectural Style for Dynamic Medical Cross-Organizational Workflow Management System: An Approach Based on Agents and Web Services , 2014, Journal of Medical Systems.
[10] Chris W. Clegg,et al. Advancing socio-technical systems thinking: a call for bravery. , 2014, Applied ergonomics.
[11] Patricia Lago,et al. Organizational social structures for software engineering , 2013, CSUR.
[12] William J. Buchanan,et al. Monitoring information security risks within health care , 2013, Comput. Secur..
[13] Thomas H. Payne,et al. Healthcare information technology and economics , 2013, J. Am. Medical Informatics Assoc..
[14] Yu-Fang Chung,et al. A Mobile Agent Approach for Secure Integrated Medical Information Systems , 2012, Journal of Medical Systems.
[15] David Sánchez,et al. Ontology-driven execution of clinical guidelines , 2012, Comput. Methods Programs Biomed..
[16] John W Pickering,et al. Four hour creatinine clearance is better than plasma creatinine for monitoring renal function in critically ill patients , 2012, Critical Care.
[17] Giuseppe De Giacomo,et al. On supervising agents in situation-determined ConGolog , 2012, AAMAS.
[18] Vitaly Herasevich,et al. Clinical review: The hospital of the future - building intelligent environments to facilitate safe and effective acute care delivery , 2012, Critical Care.
[19] Pei-Wen Wang,et al. Applying Ontology Techniques to Develop a Medication History Search and Alert System in Department of Nuclear Medicine , 2012, Journal of Medical Systems.
[20] Szymon Wilk,et al. Implementing an Integrative Multi-agent Clinical Decision Support System with Open Source Software , 2012, Journal of Medical Systems.
[21] Karl T. Ulrich,et al. Design: Creation of Artifacts in Society , 2011 .
[22] Nandini S. Sidnal,et al. Agent Based Approach in Accessing Distributed Health Care Services , 2011, SUComS.
[23] Suzanne Bakken,et al. Review of health information technology usability study methodologies , 2011, J. Am. Medical Informatics Assoc..
[24] Lluis Godo,et al. A graded BDI agent model to represent and reason about preferences , 2011, Artif. Intell..
[25] Eric Yu,et al. Social Modeling for Requirements Engineering , 2011, Cooperative information systems.
[26] Agostino Poggi,et al. Developing Smart Emergency Applications with Multi-Agent Systems , 2010, Int. J. E Health Medical Commun..
[27] David Sánchez,et al. Agents applied in health care: A review , 2010, Int. J. Medical Informatics.
[28] Rosa Maria Vicari,et al. Applying AUML and UML 2 in the Multi-agent Systems Project , 2009, ER Workshops.
[29] Julio Cesar Sampaio do Prado Leite,et al. On Non-Functional Requirements in Software Engineering , 2009, Conceptual Modeling: Foundations and Applications.
[30] P. Giorgini,et al. Conceptual Modeling: Foundations and Applications - Essays in Honor of John Mylopoulos , 2009, Conceptual Modeling: Foundations and Applications.
[31] Eric S. K. Yu,et al. Social Modeling and i* , 2009, Conceptual Modeling: Foundations and Applications.
[32] Mohamed Mostefai,et al. Agent-services and mobile agents for an integrated HCIS , 2009, Int. J. Comput. Integr. Manuf..
[33] Jacques Pasquier-Rocha,et al. Enhancing E-Health Information Systems with Agent Technology , 2008, International journal of telemedicine and applications.
[34] Stéphane Faulkner,et al. Social Structure Based Design Patterns for Agent-Oriented Software Engineering , 2008, Int. J. Intell. Inf. Technol..
[35] T. Tuunanen,et al. A Design Science Research Methodology for Information Systems Research , 2007, J. Manag. Inf. Syst..
[36] Stefan Poslad,et al. Specifying protocols for multi-agent systems interaction , 2007, TAAS.
[37] Flory Nkoy,et al. A Tool for Improving Patient Discharge Process and Hospital Communication Practices: the Patient Tracker , 2007, AMIA.
[38] Winfried Lamersdorf,et al. Extending the Capability Concept for Flexible BDI Agent Modularization , 2005, PROMAS.
[39] Fausto Giunchiglia,et al. Tropos: An Agent-Oriented Software Development Methodology , 2004, Autonomous Agents and Multi-Agent Systems.
[40] Alan R. Hevner,et al. Design Science in Information Systems Research , 2004, MIS Q..
[41] John Fox,et al. Understanding intelligent agents: analysis and synthesis , 2003, AI Commun..
[42] John Mylopoulos,et al. Towards requirements-driven information systems engineering: the Tropos project , 2002, Inf. Syst..
[43] Barbara Messing,et al. An Introduction to MultiAgent Systems , 2002, Künstliche Intell..
[44] Nicholas R. Jennings,et al. Socially intelligent reasoning for autonomous agents , 2001, IEEE Trans. Syst. Man Cybern. Part A.
[45] John Mylopoulos,et al. A Requirements-Driven Development Methodology , 2001, CAiSE.
[46] Michael E. Bratman,et al. Intention, Plans, and Practical Reason , 1991 .
[47] Herbert A. Simon,et al. The Sciences of the Artificial , 1970 .
[48] Yves Wautelet,et al. "Designing a MOOC as an Agent-Platform Aggregating Heterogeneous Virtual Learning Environments" , 2019 .
[49] David W. Bates,et al. Ten key considerations for the successful optimization of large-scale health information technology , 2017, J. Am. Medical Informatics Assoc..
[50] Manuel Kolp,et al. Bed Reservation Automation: Analysis and Design for a University Hospital , 2016 .
[51] Mark von Rosing,et al. Business Process Model and Notation - BPMN , 2015, The Complete Business Process Handbook, Vol. I.
[52] Winfried Lamersdorf,et al. Negotiation-Based Patient Scheduling in Hospitals - Reengineering Message-Based Interactions with Services , 2014, Advanced Intelligent Computational Technologies and Decision Support Systems.
[53] Filipe Portela,et al. Healthcare Interoperability through Intelligent Agent Technology , 2014 .
[54] R. Hall,et al. Bed Assignment and Bed Management , 2012 .
[55] Alberto Trombetta,et al. BPMN: An introduction to the standard , 2012, Comput. Stand. Interfaces.
[56] Emilio Luque,et al. An Agent-Based Decision Support System for Hospitals Emergency Departments , 2011, ICCS.
[57] Dipti D. Patil,et al. An Intelligent Architecture for Multi-Agent Based m-Health Care System , 2011 .
[58] Haiping Xu,et al. Building a Health Care Multi-Agent Simulation Sysmte with Role-Based Modeling , 2010 .
[59] Stéphane Faulkner,et al. Social-Centeric Design of Multi-Agent Architectures , 2006 .
[60] Winfried Lamersdorf,et al. Jadex: Implementing a BDI-Infrastructure for JADE Agents , 2003 .
[61] M. Georgeff,et al. BDI Agents: From Theory to Practice , 1995, ICMAS.