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Behnam Karami; Caspar M. Schwiedrzik – npj Science of Learning, 2024
Visual objects are often defined by multiple features. Therefore, learning novel objects entails learning feature conjunctions. Visual cortex is organized into distinct anatomical compartments, each of which is devoted to processing a single feature. A prime example are neurons purely selective to color and orientation, respectively. However,…
Descriptors: Visual Perception, Visual Learning, Novelty (Stimulus Dimension), Brain Hemisphere Functions
Heusser, Andrew C.; Ezzyat, Youssef; Shiff, Ilana; Davachi, Lila – Journal of Experimental Psychology: Learning, Memory, and Cognition, 2018
Episodic memories are not veridical records of our lives, but rather are better described as organized summaries of experience. Theories and empirical research suggest that shifts in perceptual, temporal, and semantic information lead to a chunking of our continuous experiences into segments, or "events." However, the consequences of…
Descriptors: Mnemonics, Associative Learning, Memory, Cognitive Processes
Jessica E. Bartley; Michael C. Riedel; Taylor Salo; Emily R. Boeving; Katherine L. Bottenhorn; Elsa I. Bravo; Rosalie Odean; Alina Nazareth; Robert W. Laird; Matthew T. Sutherland; Shannon M. Pruden; Eric Brewe; Angela R. Laird – npj Science of Learning, 2019
Understanding how students learn is crucial for helping them succeed. We examined brain function in 107 undergraduate students during a task known to be challenging for many students--physics problem solving--to characterize the underlying neural mechanisms and determine how these support comprehension and proficiency. Further, we applied module…
Descriptors: Brain, Cognitive Processes, Science Process Skills, Abstract Reasoning
Baumgartner, Heidi A.; Oakes, Lisa M. – Journal of Cognition and Development, 2011
When learning object function, infants must detect relations among features--for example, that squeezing is associated with squeaking or that objects with wheels roll. Previously, Perone and Oakes (2006) found 10-month-old infants were sensitive to relations between object appearances and actions, but not to relations between appearances and…
Descriptors: Infants, Manipulative Materials, Visual Stimuli, Auditory Perception
Madalan, Adrian; Yang, Xiao; Ferris, Jacob; Zhang, Shixing; Roman, Gregg – Learning & Memory, 2012
Heterotrimeric G(o) is an abundant brain protein required for negatively reinforced short-term associative olfactory memory in "Drosophila". G(o) is the only known substrate of the S1 subunit of pertussis toxin (PTX) in fly, and acute expression of PTX within the mushroom body neurons (MB) induces a reversible deficit in associative olfactory…
Descriptors: Associative Learning, Short Term Memory, Cognitive Processes, Animals
Feifer, Steven G.; Nader, Rebecca Gerhardstein; Flanagan, Dawn P.; Fitzer, Kim R.; Hicks, Kelly – Learning Disabilities: A Multidisciplinary Journal, 2014
The primary purpose of this study was to investigate the various neurocognitive processes concomitant to reading by attempting to identify various subtypes of reading disorders in a referred sample. Participants were 216 elementary school students in grades two through five who were given select subtests of the Woodcock Johnson-III Tests of…
Descriptors: Reading Difficulties, Neurology, Cognitive Processes, Reading Processes
Fazl, Arash; Grossberg, Stephen; Mingolla, Ennio – Cognitive Psychology, 2009
How does the brain learn to recognize an object from multiple viewpoints while scanning a scene with eye movements? How does the brain avoid the problem of erroneously classifying parts of different objects together? How are attention and eye movements intelligently coordinated to facilitate object learning? A neural model provides a unified…
Descriptors: Reaction Time, Eye Movements, Earth Science, Associative Learning
Peer reviewedPrawat, Richard S.; Gaines, Paul – Psychology in the Schools, 1974
Examines the usefulness of paired associative performance to assess for school learning proficiency by comparing a sample of learning-disabled (LD) youngsters to normals. Results indicate that the proportion of subjects in the normal and the LD groups who reported use of elaborative strategies compared to none laborative strategies does not differ…
Descriptors: Associative Learning, Cognitive Processes, Concept Formation, Learning Theories
Peer reviewedRovee-Collier, Carolyn – Journal of Experimental Child Psychology, 2001
Considers reasons for infants' selective looking and information gathering. Discusses three general theoretical issues raised by studies of selective looking, related to type of information gathered, speed of processing time, and the effect of prior exposure on processing time. Considers these issues in relation to Needham's study of infant…
Descriptors: Association (Psychology), Associative Learning, Cognitive Development, Cognitive Processes
Peer reviewedKroes, William H.; Libby, William L., Jr. – Perceptual and Motor Skills, 1971
Descriptors: Associative Learning, Cognitive Processes, College Students, Concept Formation
Peer reviewedCohen, Leslie B.; Cashon, Cara H. – Journal of Experimental Child Psychology, 2001
Argues for an informational processing explanation for young infants' ability to use featural cues to differentiate objects, centering on the development of infants' ability to integrate both featural and object information. Considers information processing propositions and evidence on object segregation. (JPB)
Descriptors: Association (Psychology), Associative Learning, Attention, Cognitive Development
Peer reviewedKellman, Philip J. – Journal of Experimental Child Psychology, 2001
Discusses connections between infants' use of object knowledge in recognition to computational, psychophysical, and neurophysiological research on adult perceptual segmentation and grouping. Considers these connections through a framework of the tasks and information involved in adult object segregation, and interprets Needham's results in this…
Descriptors: Association (Psychology), Associative Learning, Attention, Cognitive Development
Kilian, Lawrence J. – 1978
In this study, cognitive processes hypothesized to be relevant to the digit symbol task of the Wechsler Adult Intelligence Scale (WAIS) were examined. Fifty-two undergraduate education students were divided into four groups to receive four different treatments. All the students took the digit symbol test, followed immediately by a test of their…
Descriptors: Associative Learning, Cognitive Processes, Higher Education, Intelligence
Peer reviewedBartholomeus, Bonnie N.; Doehring, Donald G. – Perceptual and Motor Skills, 1971
Descriptors: Associative Learning, Cognitive Processes, Discrimination Learning, Error Patterns
Peer reviewedBreger, Ilana – Perceptual and Motor Skills, 1970
Descriptors: Associative Learning, Cognitive Processes, College Students, Nonverbal Communication
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