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How Group Size and Composition Influences the Effectiveness of Collaborative Screen-Based Simulation Training: A Study of Dental and Nursing University Students Learning Radiographic Techniques

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Abstract (2. Language): 
This study analyses how changes in the design of screen-based computer simulation training influence the collaborative training process. Specifically, this study examine how the size of a group and a group’s composition influence the way these tools are used. One case study consisted of 18+18 dental students randomized into either collaborative 3D simulation training or conventional collaborative training. The students worked in groups of three. The other case consisted of 12 nursing students working in pairs (partners determined by the students) with a 3D simulator. The results showed that simulation training encouraged different types of dialogue compared to conventional training and that the communication patterns were enhanced in the nursing students´ dyadic simulation training. The concrete changes concerning group size and the composition of the group influenced the nursing students’ engagement with the learning environment and consequently the communication patterns that emerged. These findings suggest that smaller groups will probably be more efficient than larger groups in a free collaboration setting that uses screen-based simulation training.
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REFERENCES

References: 

Ahlqvist, J.B., Nilsson, T.A., Hedman, L.R., Desser, T.S., Dev, P., Johansson, M., Youngblood, P.L., Cheng, R.P., & Gold, G. E. (2012, submitted). A randomized controlled trial on simulation based training in radiology. Effects on radiologic technologist student skill at interpreting radiographic projections.
Bolton, K., Saalman, E., Christie, M., Ingerman, Å., & Linder, C. (2008). SimChemistry as an active learning tool in chemical education. Chemistry Education Research Practice, 9(3), 274-284.
de Leng, B. A., Muijtjens, A. M., & van der Vleuten, C. P. (2009). The Effect of face-to-face collaborative learning on the elaboration of computer-based simulated cases. Simulation in Healthcare, 4(4), 217-222.
Egbert, R. (1965). The role of computer-simulation in education. Journal of Educational Measurement, 2 (1), 1-3.
Gorman, P.J., Meier, A.H., & Krummel, T.M.(2000). Computer-assisted training and learning in surgery. Computer Aided Surgery, 5, 120-130.
Hmelo, C., & Day, R. (1999). Contextualized questioning to scaffold learning from simulations. Computers & Education, 32(2), 151-164.
Hmelo-Silver, C. E. (2003). Analyzing collaborative knowledge construction: Multiple methods for integrated understanding. Computers & Education, 41(4), 397-420.
Hindmarsh J. (2010). Peripherality, participation and communities of practice: Examining the patient in dental training. In N. Llewellyn, & J. Hindmarsh (Eds.), Organisation, Interaction and Practice (pp. 218-240).Cambridge: Cambridge University Press.
Tor Söderström et all. / World Journal on Educational Technology 4-3 (2012) 180-193
193
Häll, L.O., & Söderström. (2012). Designing for Learning in Computer-assisted Health Care Simulations. In J.O. Lindberg & A.D. Olofsson (Eds.), Informed Design of Educational Technologies in Higher Education: Enhanced Learning and Teaching(pp. 167-192). Hershey, PA: IGI Global.
Issenberg, B.S., McGaghie, W.C., Petrusa, E.M., Gordon, D.L., & Scalese R.J. (2005). Features and uses of high – fidelity medical simulations that lead to effective learning: A BEME systematic review. Medical Teacher, 27 (1), 10-28.
Keser, H., Uzunboylo, H., & Ozdamli, F (2011). The trends in technology supported collaborative learning studies in 21st century. World Journal on Educational Technology, 3 (2), 103-119.
Kvale S. & Brinkmann S. (2009) Den kvalitativa forskningsintervjun. [The qualitative research interview] Lund: Studentlitteratur.
Krippendorff K. (2004). Content analysis. An introduction to its methodology. Thousand Oaks: Sage.
Lane, L.J., Slavin, S., & Ziv, A. (2001). Simulation in medical education: A review. Simulation& Gaming, 32(3), 297-314.
Liu, H. C., Andre, T., & Greenbowe, T. (2008). The impact of learner's prior knowledge on their use of chemistry computer simulations: A case study. Journal of Science Education and Technology, 17(5), 466-482.
Liu, H.C., & Chuang, H.H. (2011). Investigation of the impact of two verbal instruction formats and prior knowledge on student learning in simulation based environment. Interactive Learning Environments, 19(4), 433-446.
Mawdesley, M., Long, G., Al-Jibouri, S., & Scott, D. (2011). The enhancement of simulation based learning exercises through formalised reflection, focus group and group presentation. Computers & Education, 56, 44-52.
Nilsson, T. (2007). Simulation supported training in oral radiology. Methods and impact on interpretative skill. Umeå University: Department of odontology, oral and maxillofacial radiology.
Rogers, L. (2011). Developing simulations in multi-user virtual environments to enhance healthcare education. British Journal of Educational Technology, 42(4), 608-615.
Rystedt H., & Lindwall O. (2004). The interactive construction of learning foci in simulation-based learning environments: a case study of an anaesthesia course. PsychNology Journal, 2(2), 165-188.
Scalese, R.J., Obeso, V.T., & Issenberg, B.S. (2008). Simulation technology for skills training and competency assessment in medical education. Journal of General Internal Medicine, 23 (1), 46-49.
Söderström, T., & Häll, L., Nilsson, T, Ahlqvist, J (2012a). How does collaborative 3D screen-based computer simulation training influence diagnostic skills of radiographic images and peer communication? Contemporary Educational Technology, 3 (4), 293-307.
Söderström, T., Häll, L-O., Nilsson, T., & Ahlqvist, J. (2012b). Patterns of interaction and dialogue in computer assisted simulation training. Procedia - Social and Behavioral Sciences, Volume 46, 2825-2831, DOI: 10.1016/j.sbspro.2012.05.571
Trowbridge, D. (1987). An investigation of groups working at the computer. In D. E. Berger, K. Pezdek, & W. P. Banks (Eds.), Applications of cognitive psychology: Problem solving, education, and computing (pp. 47-58). Hillsdale, NJ: Lawrence Erlbaum Associates.

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