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Czasopismo
2010 | nr 5 | 82--86
Tytuł artykułu

Integration Scenarios of Virtual Learning Environments with Virtual Patients Systems

Warianty tytułu
Języki publikacji
EN
Abstrakty
The role of a Virtual Learning Environment (VLE) like Moodle, OLAT, Dokeos or Blackboard is to aggregate educational content and to provide a communication platform for students and their teachers in e-learning and blended learning scenarios. A VLE offers usually a collection of general purpose tools for content authoring, remote collaboration, assessment and user management. The progress in computer-aided education, as well as the raising expectations of students require stepping up in the e-learning services beyond the generic tools offered by traditional VLEs. In the very specific field of medical education such services include e.g. presentation of virtual patient cases1, tools for distant medical consultations or medical workflows authoring3. A virtual patient (VP) is defined as "an interactive computer simulation of real-life clinical scenarios for the purpose of medical training, education, or assessment". A great variety of virtual patient systems, differing significantly in the applied data models, navigation methods, and supported learning designs is available. European projects like eViP (electronic Virtual Patients) aim at collecting virtual patient cases for exchange and repurpose. (original abstract)
Czasopismo
Rocznik
Numer
Strony
82--86
Opis fizyczny
Bibliografia
  • Balasubramaniam C., Poulton T., eViP: Electronic virtual patients, "The Newsletter of the Higher Education Academy Subject Centre for Medicine, Dentistry and Veterinary Medicine" 2008, No. 1 (16).
  • Bernauer J., Fischer M.R., Leven F.J., Puppe F., CASEPORT: Systemintegrierendes Portal für die fallbasierte Lehre in der Medizin, Telemedizinführer Deutschland, 2003.
  • Cook D. A., Triola M. M., Virtual patients: a critical literature review and proposed next steps, "Medical Education" 2009, No. 43 (4).
  • de Leng B., Donkers J., Brasch C., Huwendiek S., Kononowicz A.A., Evaluation instruments to support educators in making deliberate choices when they use virtual patients to teach clinical reasoning, International Conference of Virtual Patients, Kraków, Poland, 2009.
  • R. Ellaway, C. Candler, P. Greene, V. Smothers, An Architectural Model for MedBiquitous Virtual Patients, Baltimore, MD, MedBiquitous, 2006, Draft White Paper, http://groups.medbiq.org/medbiq/display/VPWG/MedBiquitous+Virtual+Patient+Architecture.
  • Ellaway R.,Poulton T., Fors U., McGee J.B., Albright S., Building a virtual patient commons, "Medical Teacher" 2008, No. 30 (2).
  • Fischer M.R., CASUS - An authoring and learning tool supporting diagnostic reasoning, [in:] Use of Computers in Medical Education (Part II), "Zeitschrift für Hochschuldidaktik" 2000.
  • Gackowski A., Czekierda Ł., Chrustowicz A., J. Cała, Nowak M., Sadowski J., Podolec P., Pasowicz M., Zieliński K., Development, Implementation, and Multicenter Clinical Validation of the TeleDICOM - Advanced, Interactive Teleconsultation System, "Journal of Digital Imaging", 2010.
  • Garde S., Bauch M., Haag M., Heid J.,Huwendiek S., Ruderich F., Singer R., Leven F.J.. CAMPUS - Computer-based training in medicine as part of a problem-oriented educational strategy. "SLEID" 2005, No. 2 (1), http://sleid.cqu.edu.au/viewissue.php?id=6.
  • Holzer M., Hörnlein A., Atzmueller M., Singer R., Schlott S., Leven F., Puppe F., Fischer M., Interoperability of case-based training systems in medicine: The CASEPORT approach, [in:] Proceedings zum eLearning in der Medizin und Zahnmedizin, 2005.
  • Huwendiek S., de Leng B., Zary N., Fischer M.R., Ruiz J. G., Ellaway R., Towards a typology of virtual patients, "Medical Teacher" 2009, No. 31 (8).
  • Huwendiek S.. Haider H., Tönshoff B., de Leng B., Evaluation of curricular integration of virtual patients: Development of a student questionnaire and a reviewer checklist within the electronic virtual patient (eVIP) project, "Bio-Algorithms and Med-Systems" 2009, No. 5 (9).
  • Kononowicz A.A., Hege I., Adler M., de Leng B., Donkers J., Roterman I., Requirements on Virtual Learning Environments generated by the use of Virtual Patients, Proceedings of the KU KDM'09 Conference, Zakopane, Poland, 2009.
  • .Kononowicz A.A, Holler Th., The development of a tool for teaching and learning clinical pathways, "Bio-Algorithms and Med-Systems" 2008, No. 4 (8).
  • Kononowicz A.A., Stachoń A.J., Roterman-Konieczna I., Wirtualny pacjent jako narzędzie nauczania problemowego w kontekście europejskiego projektu eViP, "e-mentor" 2008, No. 1 (23), http://www.e-mentor.edu.pl/artykul_v2.php?numer=23&id=508.
  • Stachoń A.J., Kononowicz A.A., Roterman-Konieczna I., Hege I., Holzer M., Adler M., Fischer ., M.R., Scenarios for the implementation of VPs into the medical curriculum by the example of JUMC's participation in the eViP-Programme, AMEE Conference, Prague, Czech Republic, 2008.
  • Tadeusiewicz R., Application in VP systems individualization of distance learning process using student's psychological profiles obtained by means of artificial intelligence methods, "Bio-Algorithms and Med-Systems" 2009, No. 5 (9).
  • Zary N., Hege I., Heid J., Woodham L., Donkers J., Kononowicz A.A., Enabling Interoperability, Accessibility and Reusability of Virtual Patients Across Europe - Design and Implementation, "Studies in health technology and informatics" 2009, No. 150.
  • Dokeos, http://www.dokeos.com.
  • DRB Pools, http://www.dbscripts.net/poll.
  • electronic Virtual Patients, http://virtualpatients.eu.
  • MedBiquitous Virtual Patient Format, http://www.medbiq.org/working_groups/virtual_patient/index.html.
  • Reload Editor http://www.reload.ac.uk/.
  • Virtual University of Bavaria (vhb), http://www.vhb.org.
Typ dokumentu
Bibliografia
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Identyfikator YADDA
bwmeta1.element.ekon-element-000171294797

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