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Showing 1 to 15 of 79 results Save | Export
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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
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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
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Sajjad Salimi; Zahra Asgari; Amirreza Mohammadnejad; Ashkan Teimazi; Mitra Bakhtiari – Anatomical Sciences Education, 2024
Anatomy is the cornerstone of medical education. Virtual reality (VR) and augmented reality (AR) technologies are becoming increasingly popular in the development of anatomy education. Various studies have evaluated VR and AR in anatomy education. This meta-analysis aims to evaluate the effectiveness of VR and AR in anatomical education. The…
Descriptors: Computer Simulation, Anatomy, Science Instruction, Teaching Methods
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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
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Liu Liu; Yue Chen; Yubin Cao; Lei Yang; Yiyan Yang; Yantong Li; Dingming Huang; Ling Ye; Qinghua Zheng – Anatomical Sciences Education, 2025
Anatomy forms the foundation for the training and execution of routine surgical procedures. However, a gap persists in effectively bridging anatomical knowledge with the confident performance of procedures. Virtual simulation (VS) techniques, based on experiential and situated learning theory, hold promise in addressing this challenge.…
Descriptors: Anatomy, Surgery, Medical Education, Computer Simulation
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Moro, Christian – Anatomical Sciences Education, 2023
Of the many disruptive technologies being introduced within modern curricula, the metaverse, is of particular interest for its ability to transform the environment in which students learn. The modern metaverse refers to a computer-generated world which is networked, immersive, and allows users to interact with others by engaging a number of senses…
Descriptors: Simulated Environment, Computer Simulation, Electronic Learning, Anatomy
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Marvin Mergen; Lisa Will; Norbert Graf; Marcel Meyerheim – Education and Information Technologies, 2025
Despite growing interest in the inclusion of virtual reality (VR) in medical education, its full potential for immersive and interactive training remains underutilized, particularly in dermatology. As part of a multidisciplinary project, we tested the feasibility of integrating a VR training scenario for a complete skin cancer screening into the…
Descriptors: Medical Students, Medical Education, Cancer, Feasibility Studies
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Christopoulos, Athanasios; Pellas, Nikolaos; Kurczaba, Justyna; Macredie, Robert – British Journal of Educational Technology, 2022
A significant body of the literature has documented the potential of Augmented Reality (AR) in education, but little is known about the effects of AR-supported instruction in tertiary-level Medical Education (ME). This quasi-experimental study compares a traditional instructional approach with supplementary online lecture materials using digital…
Descriptors: Medical Education, Simulated Environment, Teaching Methods, Instructional Effectiveness
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Nan Zhang; Hongkai Wang; Tianqi Huang; Xinran Zhang; Hongen Liao – IEEE Transactions on Learning Technologies, 2024
Trunk anatomy education is critical in the training of the surgeon. Most trunk anatomy education systems use a personal or synthetic anatomical model. It remains difficult to obtain appropriate population anatomy information and create individualized anatomy customization based on a quantity of diverse data. Furthermore, the naked-eye virtual…
Descriptors: Computer Simulation, Simulated Environment, Human Body, Anatomy
Caruso, Thomas Jon – ProQuest LLC, 2023
Given the expanding field of education within medicine, the purpose of this dissertation is to introduce an augmented reality (AR) medical simulator to the medical education community. This dissertation will describe the simulator development, feasibility, and acceptability to medical students and medical trainees. The following series of studies…
Descriptors: Computer Simulation, Medical Education, Teaching Methods, Medical Students
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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
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Amanda J. Meyer; Jamie A. Chapman – Anatomical Sciences Education, 2024
Australia and Aotearoa New Zealand (AANZ) medical schools have been impacted by curricular changes and the introduction of virtual microscopy (VM). No survey has explicitly described the outcome of these events on histology education in AANZ. This study provides a cross-sectional overview of histology education in accredited medical schools across…
Descriptors: Foreign Countries, Medical Schools, Medical Education, Anatomy
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Kamil Bartu Feridun; Ümmü Bayraktar – Turkish Online Journal of Educational Technology - TOJET, 2024
In today's world, technology plays a significant role in shaping our daily interactions and how we connect with the world. The rapid advancements in technology have influenced many sectors, particularly education, where integrating technology is now seen as essential rather than just a luxury. As a result, the education field has adapted over time…
Descriptors: Computer Simulation, Educational Technology, Technology Uses in Education, Teaching Methods
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Gyeong-Geon Lee; Wonhyeong Jang – Educational Technology & Society, 2024
This study conceptualized Technology-Enhanced Distance Laboratory (TEDL) as a subset of Non-Traditional Laboratory (NTL) to best describe global STEM education practices after the COVID-19 pandemic. We systematically gathered and examined 141 empirical TEDL studies reported from March 2020 to August 2022. Most studies were contextually rooted in…
Descriptors: COVID-19, Pandemics, STEM Education, Laboratory Procedures
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Maurizio Costabile; Jasmina Turkanovic – Journal of Biological Education, 2024
The method for producing monoclonal antibodies (MAbs) was first published in 1975. MAbs have revolutionised research, diagnosis, and disease treatment approaches. While students need a good understanding of MAb production, teaching the key steps via traditional methods can be challenging. Numerous resources exist, but these focus on hybridoma…
Descriptors: Biology, Science Instruction, Undergraduate Students, Diseases
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