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Bilen, Banu Rukiye – ProQuest LLC, 2018
Nurses need a solid understanding of anatomy knowledge to perform nursing skills, to understand how diseases affect the body, to understand treatment for the patient and help them for documentation. While past research has focused on using virtual learning environments to teach anatomical structures of the human body, there has been limited…
Descriptors: Anatomy, Human Body, Nursing, Diseases
Thompson, Andrew R.; Lowrie, Donald J., Jr. – Anatomical Sciences Education, 2017
Changes in medical school curricula often require educators to develop teaching strategies that decrease contact hours while maintaining effective pedagogical methods. When faced with this challenge, faculty at the University of Cincinnati College of Medicine converted the majority of in-person histology laboratory sessions to self-study modules…
Descriptors: Independent Study, Anatomy, Medical Education, Outcomes of Education
Hackett, Matthew; Proctor, Michael – Journal of Science Education and Technology, 2016
Anatomy is a foundational component of biological sciences and medical education and is important for a variety of clinical tasks. To augment current curriculum and improve students' spatial knowledge of anatomy, many educators, anatomists, and researchers use three-dimensional (3D) visualization technologies. This article reviews 3D display…
Descriptors: Science Education, Anatomy, Spatial Ability, Visualization
Attardi, Stefanie M.; Barbeau, Michele L.; Rogers, Kem A. – Anatomical Sciences Education, 2018
An online section of a face-to-face (F2F) undergraduate (bachelor's level) anatomy course with a prosection laboratory was offered in 2013-2014. Lectures for F2F students (353) were broadcast to online students (138) using Blackboard Collaborate (BBC) virtual classroom. Online laboratories were offered using BBC and three-dimensional (3D)…
Descriptors: Undergraduate Students, Online Courses, Computer Simulation, Course Descriptions
Kogan, Lori R.; Dowers, Kristy L.; Cerda, Jacey R.; Schoenfeld-Tacher, Regina M.; Stewart, Sherry M. – Journal of Science Education and Technology, 2014
Veterinary schools, similar to many professional health programs, face a myriad of evolving challenges in delivering their professional curricula including expansion of class size, costs to maintain expensive laboratories, and increased demands on veterinary educators to use curricular time efficiently and creatively. Additionally, exponential…
Descriptors: Veterinary Medical Education, Laboratory Equipment, Computer Simulation, Medical Students
Bowling, Kristi G.; Miller, Leslie M.; Patel, Ruchita; Bass, Kristin M. – Electronic Journal of Science Education, 2017
"Virtual Clinical Trials" simulations were designed to highlight neuroscience research and reinforce experimental design through the recreation of published clinical trials. This paper reports the effectiveness of "Virtual Clinical Trials" simulations in improving knowledge of concepts related to the experimental design process…
Descriptors: Computer Simulation, Neurosciences, Knowledge Level, High School Students
Ferrer-Torregrosa, J.; Torralba, J.; Jimenez, M. A.; García, S.; Barcia, J. M. – Journal of Science Education and Technology, 2015
The evolution of technologies and the development of new tools with educational purposes are growing up. This work presents the experience of a new tool based on augmented reality (AR) focusing on the anatomy of the lower limb. ARBOOK was constructed and developed based on TC and MRN images, dissections and drawings. For ARBOOK evaluation, a…
Descriptors: Anatomy, Computer Simulation, Questionnaires, Delphi Technique
Gatumu, Margaret K.; MacMillan, Frances M.; Langton, Philip D.; Headley, P. Max; Harris, Judy R. – Anatomical Sciences Education, 2014
This article describes the introduction of a virtual microscope (VM) that has allowed preclinical histology teaching to be fashioned to better suit the needs of approximately 900 undergraduate students per year studying medicine, dentistry, or veterinary science at the University of Bristol, United Kingdom. Features of the VM implementation…
Descriptors: Foreign Countries, Laboratory Equipment, Anatomy, Medical Education
Saltarelli, Andrew J.; Roseth, Cary J.; Saltarelli, William A. – Anatomical Sciences Education, 2014
Multimedia and simulation programs are increasingly being used for anatomy instruction, yet it remains unclear how learning with these technologies compares with learning with actual human cadavers. Using a multilevel, quasi-experimental-control design, this study compared the effects of "Anatomy and Physiology Revealed" (APR) multimedia…
Descriptors: Anatomy, Human Body, Multimedia Instruction, Computer Simulation
Moro, Christian; Stromberga, Zane; Stirling, Allan – Australasian Journal of Educational Technology, 2017
Consumer-grade virtual reality has recently become available for both desktop and mobile platforms and may redefine the way that students learn. However, the decision regarding which device to utilise within a curriculum is unclear. Desktop-based VR has considerably higher setup costs involved, whereas mobile-based VR cannot produce the quality of…
Descriptors: Educational Technology, Technology Uses in Education, Simulated Environment, Computer Simulation
Trelease, Robert B.; Nieder, Gary L. – Anatomical Sciences Education, 2013
Web deployable anatomical simulations or "virtual reality learning objects" can easily be produced with QuickTime VR software, but their use for online and mobile learning is being limited by the declining support for web browser plug-ins for personal computers and unavailability on popular mobile devices like Apple iPad and Android…
Descriptors: Anatomy, Computer Simulation, Electronic Learning, Handheld Devices
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
Mione, Sylvia; Valcke, Martin; Cornelissen, Maria – Anatomical Sciences Education, 2013
Histology stands as a major discipline in the life science curricula, and the practice of teaching it is based on theoretical didactic strategies along with practical training. Traditionally, students achieve practical competence in this subject by learning optical microscopy. Today, students can use newer information and communication…
Descriptors: Foreign Countries, Anatomy, Medical Education, Laboratory Equipment
Hennessy, Catherine M.; Kirkpatrick, Emma; Smith, Claire F.; Border, Scott – Anatomical Sciences Education, 2016
Neuroanatomy is a difficult subject in medical education, with students often feeling worried and anxious before they have even started, potentially decreasing their engagement with the subject. At the University of Southampton, we incorporated the use of Twitter as a way of supporting students' learning on a neuroanatomy module to evaluate how it…
Descriptors: Social Media, Anatomy, Focus Groups, Test Results
Lombardi, Sara A.; Hicks, Reimi E.; Thompson, Katerina V.; Marbach-Ad, Gili – Advances in Physiology Education, 2014
This study investigated the impact of three commonly used cardiovascular model-assisted activities on student learning and student attitudes and perspectives about science. College students enrolled in a Human Anatomy and Physiology course were randomly assigned to one of three experimental groups (organ dissections, virtual dissections, or…
Descriptors: Teaching Methods, Experiential Learning, Manipulative Materials, Human Body

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