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Seunghan Lee; Amar Sadanand Shetty; Lora A. Cavuoto – IEEE Transactions on Learning Technologies, 2024
Recent usage of virtual reality (VR) technology in surgical training has emerged because of its cost-effectiveness, time savings, and cognition-based feedback generation. However, the quantitative evaluation of its effectiveness in training is still not thoroughly studied. This article demonstrates the effectiveness of a VR-based surgical training…
Descriptors: Markov Processes, Computer Simulation, Teaching Methods, Surgery
Caroline Corves; Matthias Stadler; Martin R. Fischer – European Journal of Psychology of Education, 2024
Authenticity in simulation-based learning is linked to cognitive processes implicated in learning. However, evidence on authenticity across formats is insufficient. We compared three case-based settings and investigated the effect of discontinuity in simulation on perceived authenticity. In a quasi-experiment, we compared formats of simulation in…
Descriptors: Authentic Learning, Medical Education, Role Playing, Computer Simulation
Ahmad Chaddad; Yuchen Jiang – IEEE Transactions on Learning Technologies, 2025
The concept of the Metaverse, viewed as the ultimate manifestation of the Internet, has gained significant attention due to rapid advances in technologies such as the Internet of Things (IoT) and blockchain. Acting as a bridge between the physical and virtual worlds, the Metaverse has the potential to offer remarkable experiences to its users.…
Descriptors: Internet, Medical Education, Instructional Effectiveness, Artificial Intelligence
Christian Gießer; Johannes Schmitt; Emma Löwenstein; Christian Weber; Veit Braun; Rainer Brück – IEEE Transactions on Learning Technologies, 2024
Digital technologies have transformed medical care and education by providing rapid access to knowledge and advanced methods, such as augmented reality and haptic feedback. These technologies are improving the efficiency of healthcare professionals and the quality of medical education. Particularly in Germany, where a shortage of skilled workers…
Descriptors: Computer Simulation, Medical Education, Technology Uses in Education, Feedback (Response)
Shannon L. Cooper; Scott E. Renshaw – International Journal of Designs for Learning, 2023
For many instructional designers (ID), subject matter experts (SMEs) are viewed as a necessary evil. Depending upon their day job, SMEs can be challenging to work with due to their schedules and responsibilities outside the ID's project. They can be unaware of the eLearning process, learning models and theories, and expensive -- a SME can easily…
Descriptors: Instructional Design, Expertise, Intellectual Disciplines, Medical Students
Washburn, Micki; Zhou, Shu – Journal of Social Work Education, 2018
Technology-based simulations provide vehicles for social work students to practice clinical skills in online environments. This teaching note reviews 2 simulation tools educators may consider implementing in their training programs: virtual patients and Second Life. The current literature is presented discussing the use of these simulations in…
Descriptors: College Students, Social Work, Technology Uses in Education, Computer Simulation
Thies, Anna-Lena; Weissenstein, Anne; Haulsen, Ivo; Marschall, Bernhard; Friederichs, Hendrik – Journal of Technology and Science Education, 2014
Simulation as a tool for medical education has gained considerable importance in the past years. Various studies have shown that the mastering of basic skills happens best if taught in a realistic and workplace-based context. It is necessary that simulation itself takes place in the realistic background of a genuine clinical or in an accordingly…
Descriptors: Medical Education, Simulated Environment, Medical Students, Foreign Countries
Masiello, Italo – Advances in Health Sciences Education, 2012
Advanced medical education simulators are broadly used today to train both technical/procedural and team-based skills. While there is convincing evidence of the benefits of training technical skills, this is not the case for team-based skills. Research on medical expertise could drive the creation of a new regime of simulation-based team training.…
Descriptors: Expertise, Evidence, Medical Education, Team Training
Cendan, Juan; Lok, Benjamin – Advances in Physiology Education, 2012
The demonstration of patient-based cases using automated technology [virtual patients (VPs)] has been available to health science educators for a number of decades. Despite the promise of VPs as an easily accessible and moldable platform, their widespread acceptance and integration into medical curricula have been slow. Here, the authors review…
Descriptors: Medical Education, Medical Schools, Patients, Virtual Classrooms
Singh, Gurmukh; Siddiqui, Khalid; Singh, Mankiran; Singh, Satpal – Journal of Educational Technology Systems, 2011
The current research article is based on a simple and practical way of employing the computational power of widely available, versatile software MS Excel 2007 to perform interactive computer simulations for undergraduate/graduate students in biology, biochemistry, biophysics, microbiology, medicine in college and university classroom setting. To…
Descriptors: Heredity, Genetics, Biological Sciences, Medical Education
Rosen, Michael A.; Hunt, Elizabeth A.; Pronovost, Peter J.; Federowicz, Molly A.; Weaver, Sallie J. – Journal of Continuing Education in the Health Professions, 2012
Introduction: Education in the health sciences increasingly relies on simulation-based training strategies to provide safe, structured, engaging, and effective practice opportunities. While this frequently occurs within a simulation center, in situ simulations occur within an actual clinical environment. This blending of learning and work…
Descriptors: Evidence, Best Practices, Program Development, Work Environment
Lu, Jingyan; Lajoie, Susanne P.; Wiseman, Jeffrey – International Journal of Computer-Supported Collaborative Learning, 2010
Small-group medical problem-based learning (PBL) was a pioneering form of collaborative learning at the university level. It has traditionally been delivered in face-to-face text-based format. With the advancement of computer technology and progress in CSCL, educational researchers are now exploring how to design digitally-implemented scaffolding…
Descriptors: Problem Based Learning, Scaffolding (Teaching Technique), Role Playing, Computer Simulation
Barfield, Woodrow – Themes in Science and Technology Education, 2009
The experience of "virtual reality" can consist of head-tracked and stereoscopic virtual worlds, spatialized sound, haptic feedback, and to a lesser extent olfactory cues. Although virtual reality systems have been proposed for numerous applications, the field of education is one particular application that seems well-suited for virtual…
Descriptors: Technology Uses in Education, Visual Aids, Educational Technology, Computer Simulation
Dabbagh, Nada; Blijd, Cecily Williams – Journal of Educational Multimedia and Hypermedia, 2009
This study is a third in a series of studies that examined students' information seeking and problem solving behaviors while interacting with one of two types of web-based representations of an ill-structured instructional design case: hierarchical (tree-like) and heterarchical (network-like). A Java program was used to track students' hypermedia…
Descriptors: Medical Education, Graduate Students, Quasiexperimental Design, Problem Based Learning
Nowinski, Wieslaw L.; Thirunavuukarasuu, Arumugam; Volkau, Ihar; Marchenko, Yevgen; Aminah, Bivi; Gelas, Arnaud; Huang, Su; Lee, Looi Chow; Liu, Jimin; Ng, Ting Ting; Nowinska, Natalia G.; Qian, Guoyu Yu; Puspitasari, Fiftarina; Runge, Val M. – Anatomical Sciences Education, 2009
The increasing complexity of human body models enabled by advances in diagnostic imaging, computing, and growing knowledge calls for the development of a new generation of systems for intelligent exploration of these models. Here, we introduce a novel paradigm for the exploration of digital body models illustrating cerebral vasculature. It enables…
Descriptors: Medical Education, Models, Human Body, Brain
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