Publication Date
In 2025 | 4 |
Since 2024 | 24 |
Since 2021 (last 5 years) | 65 |
Since 2016 (last 10 years) | 110 |
Since 2006 (last 20 years) | 161 |
Descriptor
Anatomy | 171 |
Educational Technology | 171 |
Teaching Methods | 82 |
Technology Uses in Education | 70 |
Student Attitudes | 62 |
Medical Education | 53 |
Computer Simulation | 51 |
Foreign Countries | 50 |
Human Body | 38 |
Medical Students | 38 |
Science Instruction | 31 |
More ▼ |
Source
Author
Publication Type
Education Level
Audience
Teachers | 3 |
Practitioners | 1 |
Location
Australia | 8 |
Canada | 5 |
Texas | 4 |
United Kingdom | 4 |
Germany | 3 |
Indonesia | 3 |
Saudi Arabia | 3 |
Turkey | 3 |
Utah | 3 |
Florida | 2 |
France | 2 |
More ▼ |
Laws, Policies, & Programs
Assessments and Surveys
Learning Style Inventory | 1 |
Medical College Admission Test | 1 |
Myers Briggs Type Indicator | 1 |
What Works Clearinghouse Rating
Mélanie Gallot; Franck di Rienzo; Marion Binay; Christian Collet; Nady Hoyek – Anatomical Sciences Education, 2024
Human anatomy requires understanding spatial relationships among anatomical structures and is often perceived as difficult to learn by students. To overcome this concern, several digital tools exist with some strengths and limitations among which the lack of interactivity especially for complex functional anatomy learning. In this way, a new…
Descriptors: Anatomy, Technology Uses in Education, Interaction, Kinesiology
Jordan M. Renna; Katelyn B. Sondereker; Christopher L. Cors; Sara N. Chaszeyka; Kristin N. Keenan; Michael R. Corigliano; Lindsey A. Milgrom; Jessica R. Onyak; Edward J. Hamad; Maureen E. Stabio – Anatomical Sciences Education, 2024
The reconstruction of two-dimensional (2D) slices to three-dimensional (3D) digital anatomical models requires technical skills and software that are becoming increasingly important to the modern anatomist, but these skills are rarely taught in undergraduate science classrooms. Furthermore, learning opportunities that allow students to…
Descriptors: Anatomy, Undergraduate Students, Science Instruction, Models
Yusuf Kalinkara; Oguzhan Özdemir – Anatomical Sciences Education, 2024
The impact of technology on educational domains has been a subject of research for many years. Therefore, understanding how students perceive and utilize technologies for educational purposes is crucial. Especially in a critical subject like anatomy education, it is essential to employ various models to determine students' technology acceptance…
Descriptors: Educational Technology, Technology Uses in Education, Anatomy, College Students
William Brown; Sam Afshari; Megan Zhou; Jacob Lythgoe; Ryan Walsh; Abigail C. Hielscher – Anatomical Sciences Education, 2024
Basic competency in radiological imaging is essential for physicians to identify and manage diseases. An optimal place in which to include imaging in the medical curriculum is during anatomy as students can correlate the 3D anatomy from their body donors with the 2D cross-sectional anatomy. The goal of this project was to enhance first-year…
Descriptors: Anatomy, Medical Education, Donors, Human Body
Jones, David Gareth – Anatomical Sciences Education, 2023
Concerns have recently been expressed about the continuing availability of human bones from India, obtained originally for educational purposes but lacking the requisite informed consent that would be expected today. More generally, a broader claim is being made, namely, that the practice of using any unconsented bones in educational settings is…
Descriptors: Anatomy, Human Body, Ethics, Undergraduate Study
Vasil'ev, Yuriy L.; Dydykin, Sergey S.; Kashtanov, Artem D.; Molotok, Ekaterina V.; Lyakisheva, Alexandra A.; Kytko, Olesya V.; Kapitonova, Marina; Vorobyov, Alexandr A.; Litvina, Ekaterina V.; Filimonov, Vladimir I.; Bezhin, Alexandr I.; Kolsanov, Alexandr V. – Anatomical Sciences Education, 2023
Anatomy is increasingly taught using computer-assisted learning tools, including electronic interactive anatomy dissection tables. Anatomage was he first virtual anatomy dissection table introduced in Russian medical universities and gained popularity among lecturers and students. The Pirogov interactive anatomy table was recently released, but…
Descriptors: Anatomy, Laboratory Procedures, Medical Education, Computer Simulation
Jessica Saini; Danielle Brewer-Deluce; Noori Akhtar-Danesh; Anthony N. Saraco; Ilana Bayer; Courtney Pitt; Bruce Wainman – Canadian Journal for the Scholarship of Teaching and Learning, 2023
Pursuant to pedagogical changes necessitated by the COVID-19 pandemic, this study was designed to determine which aspects of an online anatomy course students most preferred and most disliked using Q-methodology. Data were collected in fall 2020 and winter 2021, and 166 student responses were analyzed via by-person factor analysis. Three distinct…
Descriptors: Student Attitudes, Online Courses, Anatomy, COVID-19
Xiao, Junhua; Adnan, Sharmeen – Anatomical Sciences Education, 2022
Anatomy is shifting toward a greater focus on adopting digital delivery. To advance digital and authentic learning in anatomy, a flipped classroom model integrating multimodal digital resources and a multimedia group assignment was designed and implemented for first-year neuroanatomy and third-year regional anatomy curricula. A five-point Likert…
Descriptors: Anatomy, Flipped Classroom, Undergraduate Students, Health Sciences
Ghosh, Sanjib Kumar – Anatomical Sciences Education, 2022
The COVID-19 pandemic stipulated adoption of unfamiliar strategies for delivering anatomy education in online mode. The factors which determine education strategies are variable across geographical regions. It was perceived that an overview of education strategies around the globe would be useful for anatomists. Hence this narrative review was…
Descriptors: COVID-19, Pandemics, Anatomy, Teaching Methods
Paloma García-Robles; Irene Cortés-Pérez; Francisco Antonio Nieto-Escámez; Héctor García-López; Esteban Obrero-Gaitán; María Catalina Osuna-Pérez – Anatomical Sciences Education, 2024
The purpose of this review was to (1) analyze the effectiveness of immersive virtual reality (iVR) and augmented reality (AR) as teaching/learning resources (collectively called XR-technologies) for gaining anatomy knowledge compared to traditional approaches and (2) gauge students' perceptions of the usefulness of these technologies as learning…
Descriptors: Computer Simulation, Physical Environment, Simulated Environment, Anatomy
Irene Neri; Laura Cercenelli; Massimo Marcuccio; Simone Lodi; Foteini-Dionysia Koufi; Antonietta Fazio; Maria Vittoria Marvi; Emanuela Marcelli; Anna Maria Billi; Alessandra Ruggeri; Achille Tarsitano; Lucia Manzoli; Giovanni Badiali; Stefano Ratti – Anatomical Sciences Education, 2024
Anatomical education is pivotal for medical students, and innovative technologies like augmented reality (AR) are transforming the field. This study aimed to enhance the interactive features of the "AEducAR" prototype, an AR tool developed by the University of Bologna, and explore its impact on human anatomy learning process in 130…
Descriptors: Anatomy, Medical Education, Human Body, Computer Simulation
Chao-Ying Wang; Ti Yin; Kuo-Hsing Ma; Jia-Fwu Shyu; Chia-Pi Cheng; Yu-Chiao Wang; Yun-Ling Huang; Ming-Hsien Chiang – Journal of Microbiology & Biology Education, 2023
The advent of virtual reality (VR) in education offers unique possibilities for facilitating cooperative learning strategies, particularly in fields demanding intricate spatial understanding, such as gross anatomy. This study investigates the impact of integrating cooperative learning strategies within a VR-based gross anatomy curriculum, focusing…
Descriptors: Anatomy, Cooperative Learning, Computer Simulation, Nursing Students
Kathryn M. Abrams; Donald D. McMahon; Jonah Firestone; Holly Whittenburg; Lauren Bruno – Journal of Inclusive Postsecondary Education, 2024
The purpose of this study was to examine the use of virtual reality, an emerging technology, to teach college-age students with intellectual disability and autism to acquire science vocabulary words relating to human anatomy. One student with autism and two students with an intellectual disability participated in a multiple baseline across skills…
Descriptors: Educational Technology, Students with Disabilities, Intellectual Disability, Autism Spectrum Disorders
Alex Morichon; Guillaume Dannhoff; Laurent Barantin; Christophe Destrieux; Igor Lima Maldonado – Anatomical Sciences Education, 2024
Traditional teaching methods struggle to convey three-dimensional concepts effectively. While 3D virtual models and virtual reality platforms offer a promising approach to teaching anatomy, their cost and specialized equipment pose limitations, especially in disadvantaged areas. A simpler alternative is to use virtual 3D models displayed on…
Descriptors: Anatomy, Models, Handheld Devices, Telecommunications
Hortsch, Michael – Anatomical Sciences Education, 2023
The term "histology" was coined a little over 200 years ago and the subject has always relied on microscopy as its defining technology. Microscopy was and still is an essential approach for the description of cellular components and their arrangements in living organisms. For more than a century and a half, histology or microanatomy has…
Descriptors: Science Instruction, Cytology, Educational History, Laboratory Equipment