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Sveistrup, Michelle A.; Langlois, Jean; Wilson, Timothy D. – Anatomical Sciences Education, 2023
Spatial abilities (SAs) are cognitive resources used to mentally manipulate representations of objects to solve problems. Haptic abilities (HAs) represent tactile interactions with real-world objects transforming somatic information into mental representations. Both are proposed to be factors in anatomy education, yet relationships between SAs and…
Descriptors: Spatial Ability, Tactual Perception, Anatomy, Science Education
Labranche, Leah; Wilson, Timothy D.; Terrell, Mark; Kulesza, Randy J. – Anatomical Sciences Education, 2022
Three-dimensional (3D) digital anatomical models show potential to demonstrate complex anatomical relationships; however, the literature is inconsistent as to whether they are effective in improving the anatomy performance, particularly for students with low spatial visualization ability (Vz). This study investigated the educational effectiveness…
Descriptors: Spatial Ability, Computer Simulation, Anatomy, Visualization
Roach, Victoria A.; Fraser, Graham M.; Kryklywy, James H.; Mitchell, Derek G. V.; Wilson, Timothy D. – Anatomical Sciences Education, 2019
Research suggests that spatial ability may predict success in complex disciplines including anatomy, where mastery requires a firm understanding of the intricate relationships occurring along the course of veins, arteries, and nerves, as they traverse through and around bones, muscles, and organs. Debate exists on the malleability of spatial…
Descriptors: Spatial Ability, Anatomy, Visual Perception, Eye Movements
Roach, Victoria A.; Fraser, Graham M.; Kryklywy, James H.; Mitchell, Derek G. V.; Wilson, Timothy D. – Anatomical Sciences Education, 2017
Learning in anatomy can be both spatially and visually complex. Pedagogical investigations have begun exploration as to how spatial ability may mitigate learning. Emerging hypotheses suggests individuals with higher spatial reasoning may attend to images differently than those who are lacking. To elucidate attentional patterns associated with…
Descriptors: Anatomy, Spatial Ability, Attention, Eye Movements
Time Limits in Testing: An Analysis of Eye Movements and Visual Attention in Spatial Problem Solving
Roach, Victoria A.; Fraser, Graham M.; Kryklywy, James H.; Mitchell, Derek G. V.; Wilson, Timothy D. – Anatomical Sciences Education, 2017
Individuals with an aptitude for interpreting spatial information (high mental rotation ability: HMRA) typically master anatomy with more ease, and more quickly, than those with low mental rotation ability (LMRA). This article explores how visual attention differs with time limits on spatial reasoning tests. Participants were assorted to two…
Descriptors: Timed Tests, Eye Movements, Visual Perception, Attention
Loftus, Jay J.; Jacobsen, Michele; Wilson, Timothy D. – British Journal of Educational Technology, 2017
Understanding the relationship between cognitive processing and learner performance on tasks using digital media has become increasingly important as the transition towards online learning programs increases. Determining the impact of implementation of instructional resources is often limited to performance outcomes and comparisons to the status…
Descriptors: Cognitive Processes, Difficulty Level, Brain, Brain Hemisphere Functions
Loftus, Jay; Jacobsen, Michele; Wilson, Timothy D. – AERA Online Paper Repository, 2016
The relationship between cognitive processing and spatial ability offers insight into the effectiveness of complex images for learning. In this study we demonstrate that high and low spatial ability learners process complex images differently for learning. Processing for the present study was determined by changes in cerebral blood velocity and…
Descriptors: Spatial Ability, Cognitive Processes, Difficulty Level, Imagery
Cui, Dongmei; Wilson, Timothy D.; Rockhold, Robin W.; Lehman, Michael N.; Lynch, James C. – Anatomical Sciences Education, 2017
The head and neck region is one of the most complex areas featured in the medical gross anatomy curriculum. The effectiveness of using three-dimensional (3D) models to teach anatomy is a topic of much discussion in medical education research. However, the use of 3D stereoscopic models of the head and neck circulation in anatomy education has not…
Descriptors: Anatomy, Models, Technology Uses in Education, Educational Technology
Roach, Victoria A.; Mistry, Manisha R.; Wilson, Timothy D. – Anatomical Sciences Education, 2014
Elevated spatial visualization ability (Vz) is thought to influence surgical skill acquisition and performance. Current research suggests that stereo visualization technology and its association with skill performance may confer perceptual advantages. This is of particular interest in laparoscopic skill training, where stereo visualization may…
Descriptors: Spatial Ability, Visualization, Surgery, Skill Development
Nguyen, Ngan; Mulla, Ali; Nelson, Andrew J.; Wilson, Timothy D. – Anatomical Sciences Education, 2014
The present study explored the problem-solving strategies of high- and low-spatial visualization ability learners on a novel spatial anatomy task to determine whether differences in strategies contribute to differences in task performance. The results of this study provide further insights into the processing commonalities and differences among…
Descriptors: Problem Solving, Anatomy, Visual Perception, Spatial Ability
Nguyen, Ngan; Nelson, Andrew J.; Wilson, Timothy D. – Anatomical Sciences Education, 2012
Computer visualizations are increasingly common in education across a range of subject disciplines, including anatomy. Despite optimism about their educational potential, students sometime have difficulty learning from these visualizations. The purpose of this study was to explore a range of factors that influence spatial anatomy comprehension…
Descriptors: Spatial Ability, Anatomy, Computer Uses in Education, Visual Aids
Roach, Victoria A.; Brandt, Michael G.; Moore, Corey C.; Wilson, Timothy D. – Anatomical Sciences Education, 2012
The process of learning new surgical technical skills is vital to the career of a surgeon. The acquisition of these new skills is influenced greatly by visual-spatial ability (VSA) and may be difficult for some learners to rapidly assimilate. In many cases, the role of VSA on the acquisition of a novel technical skill has been explored; however,…
Descriptors: Surgery, Video Technology, Visual Aids, Skill Development
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