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André de Sá Braga Oliveira; Luciano César P. C. Leonel; Edward R. LaHood; Bachtri T. Nguyen; Anahid Ehtemami; Stephen P. Graepel; Michael J. Link; Carlos D. Pinheiro-Neto; Nirusha Lachman; Jonathan M. Morris; Maria Peris-Celda – Anatomical Sciences Education, 2024
The 3D stereoscopic technique consists in providing the illusional perception of depth of a given object using two different images mimicking how the right and left eyes capture the object. Both images are slightly different and when overlapped gives a three-dimensional (3D) experience. Considering the limitations for establishing surgical…
Descriptors: Computer Simulation, Photography, Visualization, Models
Downton, Ann; Livy, Sharyn – International Journal of Science and Mathematics Education, 2022
Whilst spatial reasoning skills have been found to predict mathematical achievement, little is known about how primary (elementary) students' conceptual understanding of three-dimensional objects develops. In this article, we report a qualitative study and the impact of rich learning experiences on 48 Years 3-6 students' geometric reasoning…
Descriptors: Mathematics Skills, Mathematical Logic, Geometric Concepts, Spatial Ability
Rabattu, Pierre-Yves; Debarnot, Ursula; Hoyek, Nady – Anatomical Sciences Education, 2023
Descriptive and functional anatomy is one of the most important sciences for kinesiology students. Anatomy learning requires spatial and motor imagery abilities. Learning anatomy is complex when teaching methods and instructional tools do not appropriately develop spatial and motor imagery abilities. Recent technological developments such as…
Descriptors: College Students, Kinesiology, Anatomy, Movement Education
Bogomolova, Katerina; Vorstenbosch, Marc A. T. M.; El Messaoudi, Inssaf; Holla, Micha; Hovius, Steven E. R.; van der Hage, Jos A.; Hierck, Beerend P. – Anatomical Sciences Education, 2023
Binocular disparity provides one of the important depth cues within stereoscopic three-dimensional (3D) visualization technology. However, there is limited research on its effect on learning within a 3D augmented reality (AR) environment. This study evaluated the effect of binocular disparity on the acquisition of anatomical knowledge and…
Descriptors: Anatomy, Visualization, Technology, Difficulty Level
Dere, H. Ebru; Kalelioglu, Filiz – Informatics in Education, 2020
The purpose of this study is to investigate the effects of applications created using a web-based 3D design environment on the spatial visualisation and mental rotation abilities of secondary school students. A total of 63 school students from the sixth grade participated in the study. The researchers applied a mixed research method including both…
Descriptors: Spatial Ability, Visualization, Geometric Concepts, Depth Perception
Kok, Petrus Jacobus – African Journal of Research in Mathematics, Science and Technology Education, 2020
This research focused on first-year university students' visuospatial cognition in terms of producing three-dimensional (3D) representations of objects from two-dimensional (2D) views. The research was important since students often had difficulty with 2D to 3D transition activities. A synthesis from the literature established a 2D to 3D…
Descriptors: Foreign Countries, Preservice Teachers, Visual Perception, Spatial Ability
Victoria Damjanovic; Laura Harrison – Social Studies and the Young Learner, 2023
The authors introduce the readers to a project that highlights digital heritage in early childhood. The highlighted teachers partnered with an anthropologically-trained archaeologist who utilizes advanced digital technologies to enhance public understanding of cultural heritage. This collaboration emphasized social studies and reinforced…
Descriptors: Archaeology, Context Effect, Learner Engagement, Spatial Ability
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
Polys, Nicholas F.; Bacim, Felipe; Setareh, Mehdi; Jones, Brett D. – Engineering Design Graphics Journal, 2015
There has been a significant gap between the tools used for the design of a building's architectural form and those that evaluate the structural physics of that form. Seeking to bring the perspectives of visual design and structural engineering closer together, we developed and evaluated a design tool for students and practitioners to explore the…
Descriptors: Architecture, Design, Depth Perception, Computer Simulation
Özdemir, Ahmet Sükrü; Göktepe Yildiz, Sevda – Eurasian Journal of Educational Research, 2015
Problem Statement: The SOLO model places responses provided by students on a certain level instead of placing students there themselves. SOLO taxonomy, including five sub-levels, is used for determining observed structures of learning outcomes in various disciplines and grade levels. On the other hand, the spatial orientation skill is the ability…
Descriptors: Elementary School Teachers, Preservice Teachers, Spatial Ability, Orientation
Kuo, Ming-Shiou; Chuang, Tsung-Yen – International Journal of Distance Education Technologies, 2013
The teaching of 3D digital game design requires the development of students' meta-skills, from story creativity to 3D model construction, and even the visualization process in design thinking. The characteristics a good game designer should possess have been identified as including redesign things, creativity thinking and the ability to…
Descriptors: Design, Cognitive Processes, Thinking Skills, Creativity
Kogo, Naoki; Strecha, Christoph; Van Gool, Luc; Wagemans, Johan – Psychological Review, 2010
Human visual perception is a fundamentally relational process: Lightness perception depends on luminance ratios, and depth perception depends on occlusion (difference of depth) cues. Neurons in low-level visual cortex are sensitive to the difference (but not the value itself) of signals, and these differences have to be used to reconstruct the…
Descriptors: Cues, Depth Perception, Mathematical Models, Visual Perception