Publikationstyp: Beitrag in wissenschaftlicher Zeitschrift
Art der Begutachtung: Peer review (Publikation)
Titel: DE-CODE : a coding scheme for assessing debriefing interactions
Autor/-in: Seelandt, Julia C
Grande, Bastian
Kriech, Sarah
Kolbe, Michaela
DOI: 10.1136/bmjstel-2017-000233
Erschienen in: BMJ Simulation & Technology Enhanced Learning
Band(Heft): 2018
Heft: 4
Seite(n): 51
Seiten bis: 58
Erscheinungsdatum: 2018
Verlag / Hrsg. Institution: BMJ Publishing Group
ISSN: 2056-6697
Sprache: Englisch
Fachgebiet (DDC): 370: Bildung und Erziehung
Zusammenfassung: Debriefings are crucial for learning during simulationbased training (SBT). Although the quality of debriefings is very important for SBT, few studies have examined actual debriefing conversations. Investigating debriefing conversations is important for identifying typical debriefer-learner interaction patterns, obtaining insights into associations between debriefers’ communication and learners’ reflection and comparing different debriefing approaches. We aim at contributing to the science of debriefings by developing DE-CODE, a valid and reliable coding scheme for assessing debriefers’ and learners’ communication in debriefings. It is applicable for both direct, on-site observations and video-based coding. Methods: The coding scheme was developed both deductively and inductively from literature on team learning and debriefing and observing debriefings during SBT, respectively. Inter-rater reliability was calculated using Cohen’s kappa. DE-CODE was tested for both live and video-based coding. Results: DE-CODE consists of 32 codes for debriefers’ communication and 15 codes for learners’ communication. For live coding, coders achieved good inter-rater reliabilities with the exception of four codes for debriefers’ communication and two codes for learners’ communication. For video-based coding, coders achieved substantial inter-rater reliabilities with the exception of five codes for debriefers’ communication and three codes for learners’ communication. Conclusion: DE-CODE is designed as micro-level measurement tool for coding debriefing conversations applicable to any debriefing of SBT in any field (except for the code medical input). It is reliable for direct, on-site observations as well as for video-based coding. DE-CODE is intended to allow for obtaining insights into what works and what does not work during debriefings and contribute to the science of debriefing.
URI: https://digitalcollection.zhaw.ch/handle/11475/11161
Volltext Version: Publizierte Version
Lizenz (gemäss Verlagsvertrag): Lizenz gemäss Verlagsvertrag
Departement: School of Management and Law
Organisationseinheit: Winterthurer Institut für Gesundheitsökonomie (WIG)
Enthalten in den Sammlungen:Publikationen School of Management and Law

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Seelandt, J. C., Grande, B., Kriech, S., & Kolbe, M. (2018). DE-CODE : a coding scheme for assessing debriefing interactions. BMJ Simulation & Technology Enhanced Learning, 2018(4), 51–58. https://doi.org/10.1136/bmjstel-2017-000233
Seelandt, J.C. et al. (2018) ‘DE-CODE : a coding scheme for assessing debriefing interactions’, BMJ Simulation & Technology Enhanced Learning, 2018(4), pp. 51–58. Available at: https://doi.org/10.1136/bmjstel-2017-000233.
J. C. Seelandt, B. Grande, S. Kriech, and M. Kolbe, “DE-CODE : a coding scheme for assessing debriefing interactions,” BMJ Simulation & Technology Enhanced Learning, vol. 2018, no. 4, pp. 51–58, 2018, doi: 10.1136/bmjstel-2017-000233.
SEELANDT, Julia C, Bastian GRANDE, Sarah KRIECH und Michaela KOLBE, 2018. DE-CODE : a coding scheme for assessing debriefing interactions. BMJ Simulation & Technology Enhanced Learning. 2018. Bd. 2018, Nr. 4, S. 51–58. DOI 10.1136/bmjstel-2017-000233
Seelandt, Julia C, Bastian Grande, Sarah Kriech, and Michaela Kolbe. 2018. “DE-CODE : A Coding Scheme for Assessing Debriefing Interactions.” BMJ Simulation & Technology Enhanced Learning 2018 (4): 51–58. https://doi.org/10.1136/bmjstel-2017-000233.
Seelandt, Julia C., et al. “DE-CODE : A Coding Scheme for Assessing Debriefing Interactions.” BMJ Simulation & Technology Enhanced Learning, vol. 2018, no. 4, 2018, pp. 51–58, https://doi.org/10.1136/bmjstel-2017-000233.


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