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Sreenivasulu Reddy Mogali; Olivia Ng; Jia Xin Tan; Thu Htet San; Kian Bee Ng – Anatomical Sciences Education, 2024
The COVID-19 pandemic revealed the pivotal role of digital learning and online lecture videos, leading a shift toward blended and flipped classrooms in the post-pandemic era. This shift calls for development and (or) refreshment of novel online educational resources, such as Voice-Over PowerPoint (VOPPT) presentations, specifically designed for…
Descriptors: Undergraduate Students, Medical Students, Medical Education, Anatomy
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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
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Javaid, Muhammad Asim; Chakraborty, Shelly; Cryan, John F.; Schellekens, Harriët; Toulouse, André – Anatomical Sciences Education, 2018
Recent studies have highlighted a fear or difficulty with the study and understanding of neuroanatomy among medical and healthcare students. This has been linked with a diminished confidence of clinical practitioners and students to manage patients with neurological conditions. The underlying reasons for this difficulty have been queried among a…
Descriptors: Anatomy, Neurology, Interdisciplinary Approach, Medical Students
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Sugand, Kapil; Abrahams, Peter; Khurana, Ashish – Anatomical Sciences Education, 2010
Anatomy has historically been a cornerstone in medical education regardless of nation or specialty. Until recently, dissection and didactic lectures were its sole pedagogy. Teaching methodology has been revolutionized with more reliance on models, imaging, simulation, and the Internet to further consolidate and enhance the learning experience.…
Descriptors: Medical Education, Teacher Effectiveness, Laboratory Procedures, Patients
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Trelease, Robert B.; Rosset, Antoine – Anatomical Sciences Education, 2008
Advances in anatomical informatics, three-dimensional (3D) modeling, and virtual reality (VR) methods have made computer-based structural visualization a practical tool for education. In this article, the authors describe streamlined methods for producing VR "learning objects," standardized interactive software modules for anatomical sciences…
Descriptors: Computer Simulation, Computer Software, Anatomy, Information Science
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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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Richards, Boyd F.; And Others – Medical Teacher, 1987
With advances in computer technology, it has become possible to create three-dimensional (3-D) images of anatomical structures for use in teaching gross anatomy. Reported is a survey of attitudes of 91 first-year medical students toward the use of 3-D images in their anatomy course. Reactions to the 3-D images and suggestions for improvement are…
Descriptors: Anatomy, Computer Assisted Instruction, Higher Education, Instruction
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Sundsten, John W.; And Others – Journal of Biocommunication, 1991
Described is an interactive video system that reconstructs three-dimensional representations of the brain and its components from two-dimensional serial cross-sections. (KR)
Descriptors: Anatomy, Computer Assisted Instruction, Higher Education, Hypermedia
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McCracken, Thomas O.; Spurgeon, Thomas L. – Journal of Biocommunication, 1991
Described is a high-resolution, interactive 3-D atlas of human/animal anatomy that students will use to learn the structure of the body and to understand their own bodies in health and disease. This system can be used to reinforce cadaver study or to serve as a substitute for institutions where it is not practical to use cadavers. (KR)
Descriptors: Anatomy, Computer Assisted Instruction, Higher Education, Interactive Video
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Radice, Gary P. – Journal of College Science Teaching, 1997
Describes a technological approach to teaching the relationships between biological form and function. Computer-assisted image analysis was integrated into a microanatomy course. Students spend less time memorizing and more time observing, measuring, and interpreting, building technical and analytical skills. Appendices list hardware and software…
Descriptors: Anatomy, Biology, College Science, Computer Assisted Instruction
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Jha, Vikram; Widdowson, Shelley; Duffy, Sean – British Journal of Educational Technology, 2002
Discusses computer-assisted learning (CAL) in medical education and describes the development of an interactive CAL program on CD-ROM, combining video, illustrations, and three-dimensional images, to enhance understanding of vaginal hysterectomy in terms of the anatomy and steps of the surgical procedure. (Author/LRW)
Descriptors: Anatomy, Computer Assisted Instruction, Illustrations, Instructional Material Evaluation
Coleman, Frances – Learning & Leading with Technology, 1998
Describes how computer simulations can enhance students' learning of physiology. Discusses how computer models enhance experimentation; using computer modeling in high school science; three steps in students' writing of a simulation; and the value of simulations. Lists six software vendors who offer packages on the PC or Macintosh platforms. (AEF)
Descriptors: Anatomy, Computer Assisted Instruction, Computer Oriented Programs, Computer Simulation
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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
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Samsel, Richard W.; And Others – Advances in Physiology Education, 1994
At the introductory level, the computer provides an effective alternative to using animals for laboratory teaching. Computer software can simulate the operation of multiple organ systems. Advantages of software include alteration of variables that are not easily changed in vivo, repeated interventions, and cost-effective hands-on student access.…
Descriptors: Anatomy, Biological Sciences, Cardiovascular System, Case Studies
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Ritt, Laura; Stewart, Barbara – TechTrends, 1996
Describes the development of new teaching strategies in an anatomy and physiology laboratory at Burlington County College (New Jersey) based on laser disc technology, computers with multimedia capabilities, and appropriate software. Lab activities are described and results of a survey of former students are reported, including a comparison of lab…
Descriptors: Anatomy, Comparative Analysis, Computer Assisted Instruction, Courseware