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Mark Mohan Kaggwa; Precious Agboinghale; Diana Marginean; Gary Andrew Chaimowitz; Andrew Toyin Olagunju – Discover Education, 2025
This article explores the integration of virtual reality (VR) in medical education, highlighting its transformative potential and benefits over traditional teaching methods. While VR enhances skills acquisition and patients interaction competencies, challenges such as high upfront costs, misconceptions, and unequal access remain. The incorporation…
Descriptors: Computer Simulation, Medical Education, Technology Uses in Education, Physical Environment
Krause, Kayla J.; Mullins, Drew D.; Kist, Madison N.; Goldman, Evan M. – Anatomical Sciences Education, 2023
Virtual reality (VR) is an increasingly available resource with numerous applications to medical education, and as a teaching tool has been widely validated in the literature. Photogrammetry, the process of overlapping two-dimensional (2D) photographic images of three-dimensional (3D) objects to create a 3D image or "model," can be used…
Descriptors: Computer Simulation, Photography, Models, Medical Education
Bogomolova, Katerina; Sam, Amir H.; Misky, Adam T.; Gupte, Chinmay M.; Strutton, Paul H.; Hurkxkens, Thomas J.; Hierck, Beerend P. – Anatomical Sciences Education, 2021
In anatomical education three-dimensional (3D) visualization technology allows for active and stereoscopic exploration of anatomy and can easily be adopted into medical curricula along with traditional 3D teaching methods. However, most often knowledge is still assessed with two-dimensional (2D) paper-and-pencil tests. To address the growing…
Descriptors: Anatomy, Science Education, Teaching Methods, Educational Technology
Helyer, Richard; Dickens, Peter – Advances in Physiology Education, 2016
High-fidelity patient simulators are mainly used to teach clinical skills and remain underutilized in teaching basic sciences. This article summarizes our current views on the use of simulation in basic science education and identifies pitfalls and opportunities for progress.
Descriptors: Science Education, Computer Simulation, Fidelity, Patients
Barneva, Reneta P.; Kanev, Kamen; Kapralos, Bill; Jenkin, Michael; Brimkov, Boris – Journal of Educational Technology Systems, 2017
We place collaborative student engagement in a nontraditional perspective by considering a novel, more interactive educational environment and explaining how to employ it to enhance student learning. To this end, we explore modern technological classroom enhancements as well as novel pedagogical techniques which facilitate collaborative learning.…
Descriptors: Teaching Methods, Learner Engagement, Cooperative Learning, Technology Uses in Education
Moser-Mercer, Barbara – Research-publishing.net, 2020
In this UniCollaboration plenary session, Barbara Moser-Mercer speaks on setting up education classrooms in refugee camps with University of Geneva students. She starts off with a video which speaks to the virtual exchange idea and how students from the University of Geneva are working together with students in Macau and how that could be…
Descriptors: Refugees, Emergency Shelters, Universities, Video Technology
Trelease, Robert B.; Nieder, Gary L. – Anatomical Sciences Education, 2013
Web deployable anatomical simulations or "virtual reality learning objects" can easily be produced with QuickTime VR software, but their use for online and mobile learning is being limited by the declining support for web browser plug-ins for personal computers and unavailability on popular mobile devices like Apple iPad and Android…
Descriptors: Anatomy, Computer Simulation, Electronic Learning, Handheld Devices
Bhaskar, Anand – Advances in Physiology Education, 2014
Theory lectures are boring and sleep inducing for students, and it is difficult to get their full attention during 1 h of lecture. The ability of students to concentrate diminishes 20-25 min after the start of the lecture. There is also a lack of active participation of students during theory lectures. In an effort to break the monotony of the…
Descriptors: Physiology, Teaching Methods, Educational Games, Lecture Method
Helle, Laura; Saljo, Roger – Instructional Science: An International Journal of the Learning Sciences, 2012
Medical education has pioneered educational innovation in higher education as exemplified by the problem-based learning (PBL) movement. A multitude of reviews and meta-analyses indicate that the PBL movement has been successful in many ways. Innovations in medical education, however, are not limited to curricular reform and interactive…
Descriptors: Medical Education, Educational Innovation, Computer Uses in Education, Computer Simulation
Bloodgood, Robert A. – Anatomical Sciences Education, 2012
Histology laboratory instruction is moving away from the sole use of the traditional combination of light microscopes and glass slides in favor of virtual microscopy and virtual slides. At the same time, medical curricula are changing so as to reduce scheduled time for basic science instruction as well as focusing on student-centered learning…
Descriptors: Active Learning, Peer Teaching, Group Activities, Science Laboratories
Honebein, Peter C.; Goldsworthy, Richard – Educational Technology, 2012
Virtual classrooms and virtual activities have waxed and waned, with most focusing on fostering learning in the cognitive domain and, realistically, most becoming rapidly discontinued. But social virtual realities (SVR) are uniquely "social," so what about interpersonal skills? This article describes the authors' experiences exploring SVR as a…
Descriptors: Computer Simulation, Educational Environment, Virtual Classrooms, Educational Technology
Alinier, Guillaume – Simulation & Gaming, 2011
The development of appropriate scenarios is critical in high-fidelity simulation training. They need to be developed to address specific learning objectives, while not preventing other learning points from emerging. Buying a patient simulator, finding a volunteer to act as the patient, or even obtaining ready-made scenarios from another simulation…
Descriptors: Medical Education, Computer Simulation, Health Services, Teaching Methods
Curtis, Michael T.; DiazGranados, Deborah; Feldman, Moshe – Journal of Continuing Education in the Health Professions, 2012
Use of simulation-based training is fast becoming a vital source of experiential learning in medical education. Although simulation is a common tool for undergraduate and graduate medical education curricula, the utilization of simulation in continuing medical education (CME) is still an area of growth. As more CME programs turn to simulation to…
Descriptors: Human Factors Engineering, Fidelity, Experiential Learning, Guidelines
Tam, Matthew D. B. S. – Anatomical Sciences Education, 2010
Radiology and radiologists are recognized as increasingly valuable resources for the teaching and learning of anatomy. State-of-the-art radiology department workstations with industry-standard software applications can provide exquisite demonstrations of anatomy, pathology, and more recently, physiology. Similar advances in personal computers and…
Descriptors: Radiology, Visual Aids, Models, Computer Simulation
Seagull, F. Jacob – Journal of Continuing Education in the Health Professions, 2012
Human factors (HF) is a discipline often drawn upon when there is a need to train people to perform complex, high-stakes tasks and effectively assess their performance. Complex tasks often present unique challenges for training and assessment. HF has developed specialized techniques that have been effective in overcoming several of these…
Descriptors: Medical Education, Professional Continuing Education, Training Methods, Guidelines