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Showing all 12 results Save | Export
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Skulmowski, Alexander – Education and Information Technologies, 2022
Realistic visualizations are abundantly used in digital education. However, the use of realism is still thought to risk a cognitive overload due to excessive details. Moreover, it is still not precisely known whether there is an optimal level of realism that benefits learners the most. In two experimental studies, different versions of anatomical…
Descriptors: Visual Aids, Computer Assisted Instruction, Cognitive Processes, Difficulty Level
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Styn, Amelie; Scheiter, Katharina; Fischer, Martin R.; Shiozawa, Thomas; Behrmann, Felix; Steffan, Adrian; Kugelmann, Daniela; Berndt, Markus – Anatomical Sciences Education, 2023
The way medical students learn anatomy is constantly evolving. Nowadays, technologies such as tablets support established learning methods like drawing. In this study, the effect of drawing on a tablet on medical students' anatomy learning was investigated compared to drawing or summarizing on paper. The quality of drawings or summaries was…
Descriptors: Medical Education, Medical Students, Anatomy, Tablet Computers
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Yvonne M. Baptiste; Samuel Abramovich – Anatomical Sciences Education, 2024
Digital model platforms and applications are common in anatomy education and continue to grow in number, which suggests that educators and students find use for these tools despite the lack of widely accepted best practices. Consequently, it is a challenge for educators to mindfully integrate digital models into curriculum. This short-term,…
Descriptors: Community College Students, Student Attitudes, Technology Uses in Education, Anatomy
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Pani, John R.; Chariker, Julia H.; Naaz, Farah; Mattingly, William; Roberts, Joshua; Sephton, Sandra E. – Advances in Health Sciences Education, 2014
Instruction of neuroanatomy depends on graphical representation and extended self-study. As a consequence, computer-based learning environments that incorporate interactive graphics should facilitate instruction in this area. The present study evaluated such a system in the undergraduate neuroscience classroom. The system used the method of…
Descriptors: Neurology, Anatomy, Computer Graphics, Computer Assisted Instruction
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Pani, John R.; Chariker, Julia H.; Naaz, Farah – Anatomical Sciences Education, 2013
The large volume of material to be learned in biomedical disciplines requires optimizing the efficiency of instruction. In prior work with computer-based instruction of neuroanatomy, it was relatively efficient for learners to master whole anatomy and then transfer to learning sectional anatomy. It may, however, be more efficient to continuously…
Descriptors: Computer Assisted Instruction, Brain Hemisphere Functions, Biomedicine, Feedback (Response)
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Nowinski, Wieslaw L.; Thirunavuukarasuu, Arumugam; Volkau, Ihar; Marchenko, Yevgen; Aminah, Bivi; Gelas, Arnaud; Huang, Su; Lee, Looi Chow; Liu, Jimin; Ng, Ting Ting; Nowinska, Natalia G.; Qian, Guoyu Yu; Puspitasari, Fiftarina; Runge, Val M. – Anatomical Sciences Education, 2009
The increasing complexity of human body models enabled by advances in diagnostic imaging, computing, and growing knowledge calls for the development of a new generation of systems for intelligent exploration of these models. Here, we introduce a novel paradigm for the exploration of digital body models illustrating cerebral vasculature. It enables…
Descriptors: Medical Education, Models, Human Body, Brain
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Schleich, Jean-Marc; Dillenseger, Jean-Louis; Houyel, Lucile; Almange, Claude; Anderson, Robert H. – Anatomical Sciences Education, 2009
Learning embryology remains difficult, since it requires understanding of many complex phenomena. The temporal evolution of developmental events has classically been illustrated using cartoons, which create difficulty in linking spatial and temporal aspects, such correlation being the keystone of descriptive embryology. We synthesized the…
Descriptors: Computer Graphics, Cartoons, Pediatrics, Embryology
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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
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Levine, Leonard – Optometric Education, 1992
A new optometry-oriented program for the Macintosh computer has been written for the Neural Sciences Computer-Assisted Learning Package to include graphics and synthesized speech. It has 21 modules in 6 categories: anatomical drawings; diagrams illustrating physiological concepts; records from experiments; flow charts of neuroanatomical pathways;…
Descriptors: Algorithms, Anatomy, Computer Assisted Instruction, Computer Graphics
Quentin-Baxter, Megan; Dewhurst, David – Humane Innovations and Alternatives in Animal Experimentation: A Notebook, 1990
A hypermedia computer program that uses text, graphics, sound, and animation with associative information linking techniques to teach the functional anatomy of a rat is described. The program includes a nonintimidating tutor, to which the student may turn. (KR)
Descriptors: Anatomy, College Science, Computer Assisted Instruction, Computer Graphics
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Edwards, Robert; Reynon, Cheryl; Case, Jennifer – Journal of Biocommunication, 2000
Presents the historical background of how medical illustration was incorporated into a science, math, and technology curriculum. Describes the four-week, adapted graduate medical illustration program that aimed to provide a more realistic understanding of graduate school experience to high school students. Describes student development while…
Descriptors: Anatomy, Art, Biology, Career Awareness
Stredney, Donald Larry – 1982
An overview of computer animation and the techniques involved in its creation is provided in the introduction to this masters thesis, which focuses on the problems encountered by students in learning the forms and functions of complex anatomical structures and ways in which computer animation can address these problems. The objectives for,…
Descriptors: Anatomy, Animation, Computer Assisted Instruction, Computer Graphics