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Validation of Clay Modeling as a Learning Tool for the Periventricular Structures of the Human Brain
Akle, Veronica; Peña-Silva, Ricardo A.; Valencia, Diego M.; Rincón-Perez, Carlos W. – Anatomical Sciences Education, 2018
Visualizing anatomical structures and functional processes in three dimensions (3D) are important skills for medical students. However, contemplating 3D structures mentally and interpreting biomedical images can be challenging. This study examines the impact of a new pedagogical approach to teaching neuroanatomy, specifically how building a…
Descriptors: Anatomy, Visualization, Brain, Medical Education
Davenport, Jodi L.; Silberglitt, Matt; Boxerman, Jonathan; Olson, Arthur – Grantee Submission, 2014
3D models derived from actual molecular structures have the potential to transform student learning in biology. We share findings related to our research questions: 1) what types of interactions with a protein folding kit promote specific learning objectives?, and 2) what features of the instructional environment (e.g., peer interactions, teacher…
Descriptors: Geometric Concepts, Depth Perception, Spatial Ability, Models
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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