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J. Bradley Barger; Danielle N. Edwards – Anatomical Sciences Education, 2024
Skull anatomy is a difficult region for anatomy students to learn and understand but is necessary for a variety of health professional students. To improve learning, a 3D-printed human skull was developed, produced, and distributed to a course of 83 dental students for use as a take-home study tool over the 10-week anatomy course. The 70% scale…
Descriptors: Anatomy, Student Attitudes, Dental Schools, Computer Software
Muhiddin Furkan Kiliç; Afife Zehra Yurtsever; Feyza Açikgöz; Beste Basgut; Burcu Mavi; Ezgihan Ertuç; Sinem Sevim; Tuhan Oruk; Yavuz Selim Kiyak; Tuncay Peker – Anatomical Sciences Education, 2025
Traditional education often relies on passive learning approaches, whereas modern medical students increasingly seek interactive, technology-enhanced experiences. Despite the growing use of digital tools in anatomy education, there remains a lack of structured, student-centered 3D modeling courses embedded within the undergraduate medical…
Descriptors: Anatomy, Medical Education, Medical Students, Learner Engagement
Gautham Arun; Vivek Perumal; Francis Paul John Bato Urias; Yan En Ler; Bryan Wen Tao Tan; Ranganath Vallabhajosyula; Emmanuel Tan; Olivia Ng; Kian Bee Ng; Sreenivasulu Reddy Mogali – Anatomical Sciences Education, 2024
Large Language Models (LLMs) have the potential to improve education by personalizing learning. However, ChatGPT-generated content has been criticized for sometimes producing false, biased, and/or hallucinatory information. To evaluate AI's ability to return clear and accurate anatomy information, this study generated a custom interactive and…
Descriptors: Artificial Intelligence, Teaching Methods, Computational Linguistics, Anatomy
Marli Crabtree; Kenneth L. Thompson; Ellen M. Robertson – HAPS Educator, 2024
Research has suggested that changing one's answer on multiple-choice examinations is more likely to lead to positive academic outcomes. This study aimed to further understand the relationship between changing answer selections and item attributes, student performance, and time within a population of 158 first-year medical students enrolled in a…
Descriptors: Anatomy, Science Tests, Medical Students, Medical Education
Mickael Antoine Joseph; Jansirani Natarajan; Omar Al Zaabi; Srinivasa Rao Sirasanagandla – Anatomical Sciences Education, 2025
Anatomy and physiology courses are foundational in nursing education but are often perceived as challenging due to heavy content load. Innovative teaching methods, including social media platforms like Instagram Reels, may enhance student engagement and learning. In this quasi-experimental pre-post-test design with a control group, we examined the…
Descriptors: Student Motivation, Anatomy, Physiology, Science Instruction
Meyer, Edgar R.; James, Amber M.; Sinning, Allan; Thompson, Kenneth; Cui, Dongmei – HAPS Educator, 2020
Despite proliferative use of anatomical virtual models, there are few studies exploring whether stereoscopic models help medical students retain information regarding three-dimensional (3D) relationships of structures. This pilot study examined first-year medical students' exposure to a virtual 3D stereoscopic pelvis model and their corresponding…
Descriptors: Anatomy, Teaching Methods, Medical Education, Medical Students
Golenhofen, Nikola; Heindl, Felix; Grab-Kroll, Claudia; Messerer, David A. C.; Böckers, Tobias M.; Böckers, Anja – Anatomical Sciences Education, 2020
Hand-held devices have revolutionized communication and education in the last decade. Consequently, mobile learning (m-learning) has become popular among medical students. Nevertheless, there are relatively few studies assessing students' learning outcomes using m-learning devices. This observational study presents an anatomy m-learning tool…
Descriptors: Anatomy, Undergraduate Students, Telecommunications, Handheld Devices
Knudsen, Lars; Nawrotzki, Ralph; Schmiedl, Andreas; Mühlfeld, Christian; Kruschinski, Carsten; Ochs, Matthias – Anatomical Sciences Education, 2018
Medical students have difficulties in interpreting two-dimensional (2D) topographic anatomy on sectional images. Hands-on and no hands-on training in ultrasound imaging facilitate learning topographic anatomy. Hands-on training is linked with active search for patterns of anatomical structures and might train pattern recognition for image…
Descriptors: Diagnostic Tests, Medical Students, Anatomy, Medical Education
Hidayati, Nuril; Irmawati, Farizha – Journal of Biological Education Indonesia (Jurnal Pendidikan Biologi Indonesia), 2019
The development of multimedia based on science, technology, engineering, and mathematics (STEM) to empower students critical thinking skills has not been optimally carried out. The purpose of this research was to develop multimedia of human anatomy and physiology material based on STEM which improve students' critical thinking skills. This…
Descriptors: Physiology, Anatomy, Science Instruction, Likert Scales
Rich, Peter; Guy, Richard – Anatomical Sciences Education, 2013
A stand-alone online teaching module was developed to cover an area of musculoskeletal anatomy (structure of bone) found to be difficult by students. The material presented in the module was not formally presented in any other way, thus providing additional time for other curriculum components, but it was assessed in the final examination. The…
Descriptors: Teaching Methods, Instructional Effectiveness, Anatomy, Computer Software
Lalley, James P.; Piotrowski, Phillip S.; Battaglia, Barbara; Brophy, Keith; Chugh, Kevin – International Journal of Environmental and Science Education, 2010
The purpose of the present study was to examine and compare the effectiveness of virtual frog dissection using V-Frog[C] and physical frog dissection on learning, retention, and affect. Subjects were secondary students enrolled in year-long life science classes in a suburban high school (N=102). Virtual dissections were done with V-Frog[C], a…
Descriptors: Computer Simulation, Computer Assisted Instruction, Laboratory Procedures, Pretests Posttests
Kesner, Michael H.; Linzey, Alicia V. – American Biology Teacher, 2005
InterActive Physiology (IAP) is one of a new generation of anatomy and physiology learning aids with a broader range of sensory inputs than is possible from a static textbook or moderately dynamic lecture. This best-selling software has modules covering the muscular, respiratory, urinary, cardiovascular, and nervous systems plus a module on fluids…
Descriptors: Computer Software, Physiology, Anatomy, Academic Achievement