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50 Years of ERIC
50 Years of ERIC
The Education Resources Information Center (ERIC) is celebrating its 50th Birthday! First opened on May 15th, 1964 ERIC continues the long tradition of ongoing innovation and enhancement.

Learn more about the history of ERIC here. PDF icon

Showing 1 to 15 of 23 results
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Hoyek, Nady; Collet, Christian; Di Rienzo, Franck; De Almeida, Mickael; Guillot, Aymeric – Anatomical Sciences Education, 2014
Three-dimensional (3D) digital animations were used to teach the human musculoskeletal system to first year kinesiology students. The purpose of this study was to assess the effectiveness of this method by comparing two groups from two different academic years during two of their official required anatomy examinations (trunk and upper limb…
Descriptors: Anatomy, Visual Aids, Animation, Technology Uses in Education
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Martin, Charys M.; Roach, Victoria A.; Nguyen, Ngan; Rice, Charles L.; Wilson, Timothy D. – Anatomical Sciences Education, 2013
The use of three-dimensional (3D) models for education, pre-operative assessment, presurgical planning, and measurement have become more prevalent. With the increase in prevalence of 3D models there has also been an increase in 3D reconstructive software programs that are used to create these models. These software programs differ in…
Descriptors: Anatomy, Comparative Analysis, Visual Aids, Models
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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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Tworek, Janet K.; Jamniczky, Heather A.; Jacob, Christian; Hallgrímsson, Benedikt; Wright, Bruce – Anatomical Sciences Education, 2013
The increasing number of digital anatomy teaching software packages challenges anatomy educators on how to best integrate these tools for teaching and learning. Realistically, there exists a complex interplay of design, implementation, politics, and learning needs in the development and integration of software for education, each of which may be…
Descriptors: Anatomy, Physiology, Medical Education, Computer Uses in Education
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Rich, Peter; Guy, Richard – Anatomical Sciences Education, 2013
A stand-alone online teaching module was developed to cover an area of musculoskeletal anatomy (structure of bone) found to be difficult by students. The material presented in the module was not formally presented in any other way, thus providing additional time for other curriculum components, but it was assessed in the final examination. The…
Descriptors: Teaching Methods, Instructional Effectiveness, Anatomy, Computer Software
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Sander, Bjoern; Golas, Mariola Monika – Anatomical Sciences Education, 2013
Understanding tissue architecture and the morphological characteristics of cells is a central prerequisite to comprehending the basis of physiological tissue function in healthy individuals and relating this to disease states. Traditionally, medical curricula include courses where students examine glass slides of cytological or tissue samples…
Descriptors: Physiology, Science Instruction, Cytology, Computer Software
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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
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Wright, Shirley J. – Anatomical Sciences Education, 2012
Several programs in health professional education require or are considering requiring upper-level human anatomy as prerequisite for their applicants. Undergraduate students are confronted with few institutions offering such a course, in part because of the expense and logistical issues associated with a cadaver-based human anatomy course. This…
Descriptors: Anatomy, Advanced Courses, Undergraduate Students, Student Attitudes
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Park, Jin Seo; Kim, Dae Hyun; Chung, Min Suk – Anatomical Sciences Education, 2011
Comics are powerful visual messages that convey immediate visceral meaning in ways that conventional texts often cannot. This article's authors created comic strips to teach anatomy more interestingly and effectively. Four-frame comic strips were conceptualized from a set of anatomy-related humorous stories gathered from the authors' collective…
Descriptors: Medical Schools, Cartoons, Anatomy, Foreign Countries
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Shin, Dong Sun; Chung, Min Suk; Park, Hyo Seok; Park, Jin Seo; Hwang, Sung Bae – Anatomical Sciences Education, 2011
The interpretation of computed tomographs (CTs) and magnetic resonance images (MRIs) to diagnose clinical conditions requires basic knowledge of sectional anatomy. Sectional anatomy has traditionally been taught using sectioned cadavers, atlases, and/or computer software. The computer software commonly used for this subject is practical and…
Descriptors: Medical Students, Intervals, Computer Assisted Instruction, Computer Software
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Adams, Christina M.; Wilson, Timothy D. – Anatomical Sciences Education, 2011
The inherent spatial complexity of the human cerebral ventricular system, coupled with its deep position within the brain, poses a problem for conceptualizing its anatomy. Cadaveric dissection, while considered the gold standard of anatomical learning, may be inadequate for learning the anatomy of the cerebral ventricular system; even with…
Descriptors: Video Technology, Laboratory Procedures, Physics, Depth Perception
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Tam, Matthew D. B. S. – Anatomical Sciences Education, 2010
Radiology and radiologists are recognized as increasingly valuable resources for the teaching and learning of anatomy. State-of-the-art radiology department workstations with industry-standard software applications can provide exquisite demonstrations of anatomy, pathology, and more recently, physiology. Similar advances in personal computers and…
Descriptors: Radiology, Visual Aids, Models, Computer Simulation
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McNulty, John A.; Sonntag, Beth; Sinacore, James M. – Anatomical Sciences Education, 2009
Web-based computer-aided instruction (CAI) has become increasingly important to medical curricula. This multi-year study investigated the effectiveness of CAI and the factors affecting level of individual use. Three CAI were tested that differed in specificity of applicability to the curriculum and in the level of student interaction with the CAI.…
Descriptors: Medical Students, Cognitive Style, Computer Assisted Instruction, Student Surveys
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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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Greene, John Richard T. – Anatomical Sciences Education, 2009
This article discusses factors in the design, commissioning, project management, and intellectual property protection of developments within a new clinical anatomy facility in the United Kingdom. The project was aimed at creating cost-effective facilities that would address widespread concerns over anatomy teaching, and support other activities…
Descriptors: Workstations, Pathology, Neurology, Physiology
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