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Pazdera, Jesse K.; Kahana, Michael J. – Journal of Experimental Psychology: Learning, Memory, and Cognition, 2023
The modality effect refers to the robust finding that memory performance differs for items presented aurally, as compared with visually. Whereas auditory presentation leads to stronger recency performance in immediate recall, visual presentation often produces better primacy performance (the inverse modality effect). To investigate and model these…
Descriptors: Memory, Recall (Psychology), Aural Learning, Visual Learning
Melissa Ballesteros-Mejía; María Angélica Madero – Journal of Visual Literacy, 2024
Images are central to our understanding of and learning about our world. We argue that visual training needs to be improved in the higher education system to enhance the potential of visual thinking to mediate productively our relationship with the context we inhabit. Initiatives from the social sciences and humanities since the end of the twenty…
Descriptors: Visual Literacy, Visual Learning, Interdisciplinary Approach, Higher Education
Bertels, Julie; San Anton, Estibaliz; Gebuis, Titia; Destrebecqz, Arnaud – Developmental Science, 2017
Extracting the statistical regularities present in the environment is a central learning mechanism in infancy. For instance, infants are able to learn the associations between simultaneously or successively presented visual objects (Fiser & Aslin, 2002; Kirkham, Slemmer & Johnson, 2002). The present study extends these results by…
Descriptors: Infants, Associative Learning, Visual Learning, Cues
van Asselen, Marieke; Almeida, Ines; Andre, Rui; Januario, Cristina; Goncalves, Antonio Freire; Castelo-Branco, Miguel – Neuropsychologia, 2009
Implicit contextual learning refers to the ability to memorize contextual information from our environment. This contextual information can then be used to guide our attention to a specific location. Although the medial temporal lobe is important for this type of learning, the basal ganglia might also be involved considering its role in many…
Descriptors: Context Effect, Patients, Learning Processes, Brain Hemisphere Functions
Hodsoll, John P.; Humphreys, Glyn W. – Journal of Experimental Psychology: Human Perception and Performance, 2005
We investigated the effect of contextual cuing (M. M. Chun & Y. Jiang, 1998) within the preview paradigm (D. G. Watson & G. W. Humphreys, 1997). Contextual cuing was shown with a 10-item letter search but not with more crowded 20-item displays. However, contextual learning did occur in a preview procedure in which 10 preview items were followed by…
Descriptors: Cues, Context Effect, Prompting, Visual Learning
Brembs, Bjorn; Wiener, Jan – Learning & Memory, 2006
In a permanently changing environment, it is by no means an easy task to distinguish potentially important events from negligible ones. Yet, to survive, every animal has to continuously face that challenge. How does the brain accomplish this feat? Building on previous work in "Drosophila melanogaster" visual learning, we have developed an…
Descriptors: Memory, Methods, Cues, Visual Stimuli
Jiang, Yuhong; Song, Joo-Hyun – Journal of Experimental Psychology: Human Perception and Performance, 2005
Humans conduct visual search faster when the same display is presented for a 2nd time, showing implicit learning of repeated displays. This study examines whether learning of a spatial layout transfers to other layouts that are occupied by items of new shapes or colors. The authors show that spatial context learning is sometimes contingent on item…
Descriptors: Spatial Ability, Visual Perception, Visual Learning, Adaptive Testing