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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
Kurul, Ramazan; Ögün, Muhammed Nur; Neriman Narin, Ayse; Avci, Sebnem; Yazgan, Beyza – Anatomical Sciences Education, 2020
The aim of this study was to investigate the effect of immersive three-dimensional (3D) interactive virtual reality (VR) on anatomy training in undergraduate physical therapy students. A total of 72 students were included in the study. The students were randomized into control (n = 36) and VR (n = 36) group according to the Kolb Learning Style…
Descriptors: Undergraduate Students, Computer Simulation, Anatomy, Physical Therapy
Cui, Dongmei; Lynch, James C.; Smith, Andrew D.; Wilson, Timothy D.; Lehman, Michael N. – Anatomical Sciences Education, 2016
Computer-assisted 3D models are used in some medical and allied health science schools; however, they are often limited to online use and 2D flat screen-based imaging. Few schools take advantage of 3D stereoscopic learning tools in anatomy education and clinically relevant anatomical variations when teaching anatomy. A new approach to teaching…
Descriptors: Models, Anatomy, Computer Assisted Instruction, Teaching Methods
Chen, Jian; Smith, Andrew D.; Khan, Majid A.; Sinning, Allan R.; Conway, Marianne L.; Cui, Dongmei – Anatomical Sciences Education, 2017
Recent improvements in three-dimensional (3D) virtual modeling software allows anatomists to generate high-resolution, visually appealing, colored, anatomical 3D models from computed tomography (CT) images. In this study, high-resolution CT images of a cadaver were used to develop clinically relevant anatomic models including facial skull, nasal…
Descriptors: Anatomy, Human Body, Models, Science Instruction
Fleagle, Timothy R.; Borcherding, Nicholas C.; Harris, Jennie; Hoffmann, Darren S. – Anatomical Sciences Education, 2018
To improve student preparedness for anatomy laboratory dissection, the dental gross anatomy laboratory was transformed using flipped classroom pedagogy. Instead of spending class time explaining the procedures and anatomical structures for each laboratory, students were provided online materials to prepare for laboratory on their own. Eliminating…
Descriptors: Teaching Methods, Blended Learning, Anatomy, Science Instruction
Berney, Sandra; Bétrancourt, Mireille; Molinari, Gaëlle; Hoyek, Nady – Anatomical Sciences Education, 2015
The emergence of dynamic visualizations of three-dimensional (3D) models in anatomy curricula may be an adequate solution for spatial difficulties encountered with traditional static learning, as they provide direct visualization of change throughout the viewpoints. However, little research has explored the interplay between learning material…
Descriptors: Spatial Ability, Visualization, Computer Simulation, Models
Yammine, Kaissar; Violato, Claudio – Anatomical Sciences Education, 2015
Many medical graduates are deficient in anatomy knowledge and perhaps below the standards for safe medical practice. Three-dimensional visualization technology (3DVT) has been advanced as a promising tool to enhance anatomy knowledge. The purpose of this review is to conduct a meta-analysis of the effectiveness of 3DVT in teaching and learning…
Descriptors: Anatomy, Visualization, Teaching Methods, Medical Education
Svirko, Elena; Mellanby, Jane – Anatomical Sciences Education, 2017
Computer-aided learning (CAL) is an integral part of many medical courses. The neuroscience course at Oxford University for medical students includes CAL course of neuroanatomy. CAL is particularly suited to this since neuroanatomy requires much detailed three-dimensional visualization, which can be presented on screen. The CAL course was…
Descriptors: Outcomes of Education, Computer Assisted Instruction, Anatomy, Science Instruction
Curcio, Daniella Franco; Behlau, Mara; Barros, Mirna Duarte; Smith, Ricardo Luiz – Anatomical Sciences Education, 2012
Multidisciplinary cooperation in health care requires a solid knowledge in the basic sciences for a common ground of communication. In speech pathology, these fundamentals improve the accuracy of descriptive diagnoses and support the development of new therapeutic techniques and strategies. The aim of this study is to briefly discuss the benefits…
Descriptors: Research Methodology, Speech Language Pathology, Physiology, Anatomy
Estevez, Maureen E.; Lindgren, Kristen A.; Bergethon, Peter R. – Anatomical Sciences Education, 2010
Three-dimensional (3D) visualization of neuroanatomy can be challenging for medical students. This knowledge is essential in order for students to correlate cross-sectional neuroanatomy and whole brain specimens within neuroscience curricula and to interpret clinical and radiological information as clinicians or researchers. This study implemented…
Descriptors: Anatomy, Neurology, Visualization, Medical Students
Petersson, Helge; Sinkvist, David; Wang, Chunliang; Smedby, Orjan – Anatomical Sciences Education, 2009
Despite a long tradition, conventional anatomy education based on dissection is declining. This study tested a new virtual reality (VR) technique for anatomy learning based on virtual contrast injection. The aim was to assess whether students value this new three-dimensional (3D) visualization method as a learning tool and what value they gain…
Descriptors: Student Attitudes, Textbooks, Computer Simulation, Visualization