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  1. Grouping in working memory guides chunk formation in long-term memory: Evidence from the Hebb effect.Philipp Musfeld, Joscha Dutli, Klaus Oberauer & Lea M. Bartsch - 2024 - Cognition 248 (C):105795.
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  • Word frequency effects found in free recall are rather due to Bayesian surprise.Serban C. Musca & Anthony Chemero - 2022 - Frontiers in Psychology 13.
    The inconsistent relation between word frequency and free recall performance and the non-monotonic relation found between the two cannot all be explained by current theories. We propose a theoretical framework that can explain all extant results. Based on an ecological psychology analysis of the free recall situation in terms of environmental and informational resources available to the participants, we propose that because participants’ cognitive system has been shaped by their native language, free recall performance is best understood as the end (...)
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  • Chunk formation in immediate memory and how it relates to data compression.Mustapha Chekaf, Nelson Cowan & Fabien Mathy - 2016 - Cognition 155 (C):96-107.
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  • With No Attention Specifically Directed to It, Rhythmic Sound Does Not Automatically Facilitate Visual Task Performance.Jorg De Winne, Paul Devos, Marc Leman & Dick Botteldooren - 2022 - Frontiers in Psychology 13.
    In a century where humans and machines—powered by artificial intelligence or not—increasingly work together, it is of interest to understand human processing of multi-sensory stimuli in relation to attention and working memory. This paper explores whether and when supporting visual information with rhythmic auditory stimuli can optimize multi-sensory information processing. In turn, this can make the interaction between humans or between machines and humans more engaging, rewarding and activating. For this purpose a novel working memory paradigm was developed where participants (...)
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  • Statistically Induced Chunking Recall: A Memory‐Based Approach to Statistical Learning.Erin S. Isbilen, Stewart M. McCauley, Evan Kidd & Morten H. Christiansen - 2020 - Cognitive Science 44 (7):e12848.
    The computations involved in statistical learning have long been debated. Here, we build on work suggesting that a basic memory process, chunking, may account for the processing of statistical regularities into larger units. Drawing on methods from the memory literature, we developed a novel paradigm to test statistical learning by leveraging a robust phenomenon observed in serial recall tasks: that short‐term memory is fundamentally shaped by long‐term distributional learning. In the statistically induced chunking recall (SICR) task, participants are exposed to (...)
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  • Chunk‐Based Memory Constraints on the Cultural Evolution of Language.Erin S. Isbilen & Morten H. Christiansen - 2018 - Topics in Cognitive Science 12 (2):713-726.
    How linguistic structures evolve so as to become easier to process is addressed by Isbilen and Christiansen for the Now‐or‐Never bottleneck. The authors suggest that this fundamental challenge in language processing is coped with by rapid compression of the transient linguistic input into chunks then to be passed on. As linguistic structures that can be chunked more easily tend to stabilize and proliferate, language evolves to fit learners’ cognitive capabilities.
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  • Does short-term memory develop?Gary Jones, Lucy V. Justice, Francesco Cabiddu, Bethany J. Lee, Lai-Sang Iao, Natalie Harrison & Bill Macken - 2020 - Cognition 198 (C):104200.
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  • The influence of children’s exposure to language from two to six years: The case of nonword repetition.Gary Jones - 2016 - Cognition 153 (C):79-88.
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  • Chunking and data compression in verbal short-term memory.Dennis Norris & Kristjan Kalm - 2021 - Cognition 208 (C):104534.
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  • Individual differences in artificial and natural language statistical learning.Erin S. Isbilen, Stewart M. McCauley & Morten H. Christiansen - 2022 - Cognition 225 (C):105123.
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  • Implicit Statistical Learning: A Tale of Two Literatures.Morten H. Christiansen - 2019 - Topics in Cognitive Science 11 (3):468-481.
    In this review article, Christiansen provides a historical perspective on the two research traditions, implicit learning and statistical learning, thus nicely setting the scene for this special issue of Topics in Cognitive Science. In this “tale of two literatures”, he first traces the history of both literatures before sketching a framework that provides a basis for understanding implicit learning and statistical learning as a unified phenomenon.
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  • Compression in Working Memory and Its Relationship With Fluid Intelligence.Mustapha Chekaf, Nicolas Gauvrit, Alessandro Guida & Fabien Mathy - 2018 - Cognitive Science 42 (S3):904-922.
    Working memory has been shown to be strongly related to fluid intelligence; however, our goal is to shed further light on the process of information compression in working memory as a determining factor of fluid intelligence. Our main hypothesis was that compression in working memory is an excellent indicator for studying the relationship between working-memory capacity and fluid intelligence because both depend on the optimization of storage capacity. Compressibility of memoranda was estimated using an algorithmic complexity metric. The results showed (...)
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  • Basic Measures of Auditory Perception in Children: No Evidence for Mediation by Auditory Working Memory Capacity.Srikanta K. Mishra & Udit Saxena - 2020 - Frontiers in Human Neuroscience 14.
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