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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
Vandenbossche, Vicky; Van de Velde, Joris; Avet, Stind; Willaert, Wouter; Soltvedt, Stian; Smit, Noeska; Audenaert, Emmanuel – Anatomical Sciences Education, 2022
High-fidelity anatomical models can be produced with three-dimensional (3D) scanning techniques and as such be digitally preserved, archived, and subsequently rendered through various media. Here, a novel methodology--digital body preservation--is presented for combining and matching scan geometry with radiographic imaging. The technique…
Descriptors: Anatomy, Computer Software, Computer Simulation, Science Instruction
From Virtual to Reality: Evaluating Student Attitudes through VR Dissection Preparations--A Use Case
Sarah Shine; Julia Warznie; Guoli Zhou; John Zubek – Advances in Physiology Education, 2025
Animal dissections have long been central to anatomy and physiology education, despite their costs, safety issues, and ethical concerns. Alternatives like computer-based simulations and synthetic models often fail to replicate the authentic experience of live dissections. Virtual reality (VR) offers an immersive, interactive alternative that…
Descriptors: Computer Simulation, Anatomy, Physiology, Science Instruction
Sarah Alturkustani; Ashley Durfee; Olivia F. O'Leary; Siobhain M. O'Mahony; Conor O'Mahony; Mutahira Lone; Andreea Factor – Anatomical Sciences Education, 2025
Anatomy is fundamental to medical disciplines. However, its complexity can be challenging to learners, and traditional anatomy teaching may not be easily accessible. Virtual Reality has the potential to supplement anatomy education, but its effectiveness depends on students' willingness to accept it. This study aimed to measure students'…
Descriptors: Student Attitudes, Computer Simulation, Anatomy, Electronic Learning
Ethan P. McNaughton; Liam Bilbie; Matea Zuljevic; Lauren K. Allen; Daiana-Roxana Pur; Roy Eagleson; Sandrine Ribaupierre – Anatomical Sciences Education, 2025
In this article, we introduce a new virtual application that offers an interactive model of the brain for neuroanatomy education. Through a dual-platform architecture, the application can be downloaded on both desktop and mobile devices, with the mobile app leveraging unique capacities of modern handheld systems to deploy the brain model in…
Descriptors: Undergraduate Students, Anatomy, Brain, Science Instruction
Abrams, Kathryn Mey – ProQuest LLC, 2023
Individuals with disabilities have been less involved in school activities than their same age peers and this includes career preparation in science and math (Eriksson et al., 2007; Agran et al., 2020; Jackson et al., 2022). Specifically, individuals with intellectual disabilities (ID) have been underrepresented in science education (Lee, 2011)…
Descriptors: Students with Disabilities, Intellectual Disability, Scientific Concepts, Science Instruction
Wainman, Bruce; Aggarwal, Akanksha; Birk, Sapriya K.; Gill, Jaskaran S.; Hass, Katrina S.; Fenesi, Barbara – Anatomical Sciences Education, 2021
The novelty of three-dimensional visualization technology (3DVT), such as virtual reality (VR), has captured the interest of many educational institutions. This study's objectives were to (1) assess how VR and physical models impact anatomy learning, (2) determine the effect of visuospatial ability on anatomy learning from VR and physical models,…
Descriptors: Electronic Learning, Computer Simulation, Laboratory Procedures, Anatomy
Carol A. Britson; James E. Clark; Chinenye Anako; Rachel Hopp; Heather Armbruster; Chris Kule; Julia M. Schmitz; Jeff Huffman; Marnie Chapman; Cynthia Schmaeman; Janay Dennis; Kathleen Ahles – HAPS Educator, 2023
In early 2022, the Human Anatomy & Physiology Society (HAPS) Curriculum & Instruction Lab Survey subcommittee launched the third survey of instructors for introductory undergraduate-level courses in human anatomy and physiology. This manuscript presents analyses of questions regarding the laboratory activities and learning outcomes (LOs)…
Descriptors: College Faculty, Teacher Surveys, Anatomy, Physiology
Duncan-Vaidya, Elizabeth A.; Stevenson, Erica L. – Anatomical Sciences Education, 2021
Despite an increase in the use of technology in undergraduate anatomy education, and the rising popularity of online anatomy courses at community colleges in the United States, there have been no reports on the efficacy of augmented reality on anatomy education in this population. The purpose of this study was to test the hypothesis that augmented…
Descriptors: Community Colleges, Two Year College Students, Technology Uses in Education, Anatomy
Birbara, Nicolette S.; Sammut, Claude; Pather, Nalini – Anatomical Sciences Education, 2020
Technologies such as virtual reality are used in higher education to develop virtual learning resources (VLRs). These VLRs can be delivered in multiple modalities, from truly immersive involving wearable devices to less immersive modalities such as desktop. However, research investigating perceptions of VLRs in anatomy has mainly focused on a…
Descriptors: Anatomy, Computer Simulation, Delivery Systems, Science Instruction
Niedermair, Julian F.; Antipova, Veronica; Manhal, Simone; Siwetz, Martin; Wimmer-Röll, Monika; Hammer, Niels; Fellner, Franz A. – Anatomical Sciences Education, 2023
Technological approaches deploying three-dimensional visualization to integrate virtual anatomy are increasingly used to provide medical students with state-of-the-art teaching. It is unclear to date to which extent virtual anatomy may help replace the dissection course. Medical students of Johannes Kepler University attend both a dissection and a…
Descriptors: Anatomy, Laboratory Procedures, Science Instruction, Visual Aids
Keçeci, Gonca; Yildirim, Pelin; Zengin, Fikriye Kirbag – Journal of Science Learning, 2021
Mobile augmented reality (MAR) draws attention in terms of providing a flexible learning process and environment. It is thought that learning environments can be more effective using MAR technology. The research aimed to determine the secondary school students' views on the use of MAR technology in science teaching. The research was conducted with…
Descriptors: Middle School Students, Student Attitudes, Grade 6, Handheld Devices
Turan Güntepe, Ebru; Dönmez Usta, Necla – Journal of Science Learning, 2021
The study aimed to examine AR-based teaching material's effect on viscera learning through algorithmic thinking by the primary school teacher candidates who are sophomores in the classroom teaching department in the spring term of the 2018-2019 academic year at a state university in the Eastern Black Sea and selected by convenience method. Viscera…
Descriptors: Computer Simulation, Teaching Methods, Thinking Skills, Computation
PaaBen, Benjamin; Bertsch, Andreas; Langer-Fischer, Katharina; Rüdian, Sylvio; Wang, Xia; Sinha, Rupali; Kuzilek, Jakub; Britsch, Stefan; Pinkwart, Niels – International Educational Data Mining Society, 2021
Many modern anatomy curricula teach histology using virtual microscopes, where students inspect tissue slices in a computer program (e.g. a web browser). However, the educational data mining (EDM) potential of these virtual microscopes remains under-utilized. In this paper, we use EDM techniques to investigate three research questions on a virtual…
Descriptors: Anatomy, Science Instruction, Computer Simulation, Computer Software
Keçeci, Gonca; Yildirim, Pelin; Zengin, Fikriye Kirbag – Science Education International, 2021
In this research, the effects of science education using mobile augmented reality (MAR) application on students' attitudes towards science and technology and their academic achievement were determined and two socioeconomic levels were compared. In this research, a parallel pattern mixed method is used. The research, was carried out 143 sixth grade…
Descriptors: Science Instruction, Instructional Effectiveness, Technology Integration, Handheld Devices