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Geetika Ail; Frances Freer; Chui Shan Chan; Melissa Jones; John Broad; Gian Paulo Canale; Pedro Elston; Jessica Leeney; Paula Vickerton – Anatomical Sciences Education, 2024
Immersive virtual reality (i-VR) is a powerful tool that can be used to explore virtual models in three dimensions. It could therefore be a valuable tool to supplement anatomical teaching by providing opportunities to explore spatial anatomical relationships in a virtual environment. However, there is a lack of consensus in the literature as to…
Descriptors: Computer Simulation, Models, Anatomy, Premedical Students
Liu Liu; Yue Chen; Yubin Cao; Lei Yang; Yiyan Yang; Yantong Li; Dingming Huang; Ling Ye; Qinghua Zheng – Anatomical Sciences Education, 2025
Anatomy forms the foundation for the training and execution of routine surgical procedures. However, a gap persists in effectively bridging anatomical knowledge with the confident performance of procedures. Virtual simulation (VS) techniques, based on experiential and situated learning theory, hold promise in addressing this challenge.…
Descriptors: Anatomy, Surgery, Medical Education, Computer Simulation
Pickering, James D.; Panagiotis, Antoniou; Ntakakis, Georgios; Athanassiou, Alkinoos; Babatsikos, Emmanouil; Bamidis, Panagiotis D. – Anatomical Sciences Education, 2022
Augmented, mixed, and virtual reality applications and content have surged into the higher education arena, thereby allowing institutions to engage in research and development projects to better understand their efficacy within curricula. However, despite the increasing interest, there remains a lack of robust empirical evidence to justify the…
Descriptors: Computer Simulation, Medical Students, Anatomy, Computer Assisted Instruction
Bork, Felix; Stratmann, Leonard; Enssle, Stefan; Eck, Ulrich; Navab, Nassir; Waschke, Jens; Kugelmann, Daniela – Anatomical Sciences Education, 2019
Early exposure to radiological cross-section images during introductory anatomy and dissection courses increases students' understanding of both anatomy and radiology. Novel technologies such as augmented reality (AR) offer unique advantages for an interactive and hands-on integration with the student at the center of the learning experience. In…
Descriptors: Computer Simulation, Radiology, Anatomy, Educational Benefits
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
Moro, Christian; Štromberga, Zane; Raikos, Athanasios; Stirling, Allan – Anatomical Sciences Education, 2017
Although cadavers constitute the gold standard for teaching anatomy to medical and health science students, there are substantial financial, ethical, and supervisory constraints on their use. In addition, although anatomy remains one of the fundamental areas of medical education, universities have decreased the hours allocated to teaching gross…
Descriptors: Health Sciences, Anatomy, Science Instruction, Human Body
Allen, Lauren K.; Eagleson, Roy; de Ribaupierre, Sandrine – Anatomical Sciences Education, 2016
Neuroanatomy is one of the most challenging subjects in anatomy, and novice students often experience difficulty grasping the complex three-dimensional (3D) spatial relationships. This study evaluated a 3D neuroanatomy e-learning module, as well as the relationship between spatial abilities and students' knowledge in neuroanatomy. The study's…
Descriptors: Anatomy, Neurosciences, Undergraduate Students, Medical Students
Codd, Anthony M.; Choudhury, Bipasha – Anatomical Sciences Education, 2011
The use of cadavers to teach anatomy is well established, but limitations with this approach have led to the introduction of alternative teaching methods. One such method is the use of three-dimensional virtual reality computer models. An interactive, three-dimensional computer model of human forearm anterior compartment musculoskeletal anatomy…
Descriptors: Anatomy, Computer Simulation, Computer Assisted Instruction, Electronic Learning
Yeung, Jeffrey C.; Fung, Kevin; Wilson, Timothy D. – Anatomical Sciences Education, 2011
Advancements in technology and personal computing have allowed for the development of novel teaching modalities such as online web-based modules. These modules are currently being incorporated into medical curricula and, in some paradigms, have been shown to be superior to classroom instruction. We believe that these modules have the potential of…
Descriptors: Computer Assisted Instruction, Web Based Instruction, Computer Simulation, Neurology
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
Nguyen, Ngan; Wilson, Timothy D. – Anatomical Sciences Education, 2009
Advances in computer and interface technologies have made it possible to create three-dimensional (3D) computerized models of anatomical structures for visualization, manipulation, and interaction in a virtual 3D environment. In the past few decades, a multitude of digital models have been developed to facilitate complex spatial learning of the…
Descriptors: Computer Simulation, Anatomy, Human Body, Science Course Improvement Projects
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
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
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