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Michelle A. Sveistrup; Jean Langlois; Timothy D. Wilson – Anatomical Sciences Education, 2025
The Cognitive Theory of Multimedia Learning (CTML) suggests humans learn through visual and auditory sensory channels. Haptics represent a third channel within CTML and a missing component for experiential learning. The objective was to measure visual and haptic behaviors during spatial tasks. The haptic abilities test (HAT) quantifies results in…
Descriptors: Learning Theories, Multimedia Instruction, Sensory Integration, Experiential Learning
Ercenur Ünal; Kevser Kirbasoglu; Dilay Z. Karadöller; Beyza Sümer; Asli Özyürek – Cognitive Science, 2025
In spoken languages, children acquire locative terms in a cross-linguistically stable order. Terms similar in meaning to in and on emerge earlier than those similar to "front" and "behind," followed by "left" and "right." This order has been attributed to the complexity of the relations expressed by…
Descriptors: Nonverbal Communication, Cognitive Mapping, Spatial Ability, Language Processing
Investigating the Influence of Visuospatial Stimuli on Driver's Speed Perception: A Laboratory Study
Köhler, Anna-Lena; Klatt, Maren; Koch, Iring; Ladwig, Stefan – Cognitive Research: Principles and Implications, 2023
Driving at an inappropriate speed is a major accident cause in the EU. Understanding the underlying sensory mechanisms can help to reduce speed and increase traffic safety. The present study investigated the effect of visuospatial stimuli on speed perception using an adaptive countermeasure to speeding based on a manipulation of optic flow. We…
Descriptors: Traffic Safety, Motor Vehicles, Accidents, Sensory Integration
Zheng, Yinyuan; Matlen, Bryan; Gentner, Dedre – Cognitive Science, 2022
Visual comparison is a key process in everyday learning and reasoning. Recent research has discovered the spatial alignment principle, based on the broader framework of structure-mapping theory in comparison. According to the spatial alignment principle, visual comparison is more efficient when the figures being compared are arranged in…
Descriptors: Visual Stimuli, Comparative Analysis, Spatial Ability, Correlation
Kaiwen Man; Joni M. Lakin – Journal of Educational Measurement, 2024
Eye-tracking procedures generate copious process data that could be valuable in establishing the response processes component of modern validity theory. However, there is a lack of tools for assessing and visualizing response processes using process data such as eye-tracking fixation sequences, especially those suitable for young children. This…
Descriptors: Problem Solving, Spatial Ability, Task Analysis, Network Analysis
Lindsey Hildebrand; Sara Cordes – Developmental Psychology, 2024
Increasing evidence suggests that success in science, technology, engineering, and math (STEM) fields is not only dependent upon one's actual STEM-relevant abilities but also upon one's STEM-relevant attitudes--in particular, math and spatial attitudes. Here, we examine whether simply mentioning the math or spatial relevance of a task affects…
Descriptors: Mathematics Achievement, Spatial Ability, Mathematics Anxiety, Comparative Analysis
Block, Elisa; Farran, Emily K.; Van Herwegen, Jo – American Journal on Intellectual and Developmental Disabilities, 2022
The block design task (BDT) is a visuospatial measure that individuals with Williams syndrome (WS) perform poorly on. However, it is unclear what underlies their impaired performance. This study investigated whether poorer performance is a result of visuospatial difficulties, executive function (EF) difficulties, atypical looking strategies, or a…
Descriptors: Task Analysis, Visual Perception, Spatial Ability, Executive Function
Ramful, Ajay; Maesuri Patahuddin, Sitti; Moheeput, Khemanand; Johar, Rahmah – International Journal of Science Education, 2023
This paper explores the spatial dimension of Fleming's Left Hand Rule (LHR), commonly-used in Physics instruction for determining the direction of force using the left hand's thumb, forefinger and middle finger. A new instrument was developed to gauge students' ability to coordinate their fingers in 3D space (egocentric frame of reference) based…
Descriptors: Spatial Ability, Handedness, Science Education, Comparative Analysis

Kelsey E. Schenck; Doy Kim; Fangli Xia; Michael I. Swart; Candace Walkington; Mitchell J. Nathan – Grantee Submission, 2024
Access to body-based resources has been shown to augment cognitive processes, but not all movements equally aid reasoning. Interactive technologies, like dynamic geometry systems (DGS), potentially amplify the link between movement and geometric representation, thereby deepening students' understanding of geometric properties. This study…
Descriptors: Geometric Concepts, Task Analysis, Thinking Skills, Validity
Heled, Eyal; Ohayon, Maayan – Journal of Deaf Studies and Deaf Education, 2021
Studies examining visuospatial working memory (WM) in individuals with congenital deafness have yielded inconsistent results, and tactile WM has rarely been examined. The current study examined WM span tasks in the two modalities among 20 individuals with congenital deafness and 20 participants with typical hearing. The congenital deafness group…
Descriptors: Short Term Memory, Deafness, Tactual Perception, Visual Perception
Dolscheid, Sarah; Verlage, Heiko – Mind, Brain, and Education, 2019
People associate numbers and horizontal space. This association has been demonstrated by the so-called SNARC (Spatial-Numerical Association of Response Codes)-effect, with Western participants responding faster to larger numbers with their right hand and vice versa for smaller numbers. SNARC-like effects have also been reported for preschoolers.…
Descriptors: Preschool Children, Numbers, Correlation, Spatial Ability
Vercellotti, Mary Lou – Sign Language Studies, 2022
Experience with a visual-spatial language may influence certain cognitive processes (Keehner and Gathercole 2007). Spatial ability is an important cognitive skill (Linn and Petersen 1985). Some research has found that deaf signers outperform hearing nonsigners on certain spatial tasks (e.g., Emmorey, Kosslyn, and Bellugi 1993) and that hearing…
Descriptors: American Sign Language, Second Language Learning, Second Language Instruction, Spatial Ability
West, Eloise; McCrink, Koleen – Journal of Cognition and Development, 2021
This experiment tests the age at which left-to-right spatial associations found in infancy shift to culture-specific spatial biases in later childhood, for both numerical and non-numerical information. Children ages 1-5 years (N = 320) were tested within an eye-tracking paradigm which required passive viewing of a video portraying a spatial…
Descriptors: Eye Movements, Spatial Ability, Preschool Children, Video Technology
Tran, Tammy; Tobin, Kaitlyn E.; Block, Sophia H.; Puliyadi, Vyash; Gallagher, Michela; Bakker, Arnold – Learning & Memory, 2021
There has been considerable focus on investigating age-related memory changes in cognitively healthy older adults, in the absence of neurodegenerative disorders. Previous studies have reported age-related domain-specific changes in older adults, showing increased difficulty encoding and processing object information but minimal to no impairment in…
Descriptors: Aging (Individuals), Comparative Analysis, Cognitive Processes, Self Concept
Sun, Yuyu; Lu, Xiaoxu; Wang, Yan – Journal of Geography, 2020
In this article, we use eye-tracking technology to analyze the eye movement differences in cognitive maps between high and low level map-based spatial ability participants, revealing key factors of superior spatial ability. It is found that focusing on the perception of spatial structure information, constructing and manipulating complex images…
Descriptors: Eye Movements, Spatial Ability, Geography Instruction, High School Seniors