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The foundations of numeracy: Subitizing, finger gnosia, and fine-motor ability

In McNamara D. S. & Trafton J. G. (eds.), Proceedings of the 29th Annual Cognitive Science Society. Cognitive Science Society (2007)

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  1. Putting a Finger on Numerical Development – Reviewing the Contributions of Kindergarten Finger Gnosis and Fine Motor Skills to Numerical Abilities.Roberta Barrocas, Stephanie Roesch, Caterina Gawrilow & Korbinian Moeller - 2020 - Frontiers in Psychology 11.
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  • Materiality and human cognition.Karenleigh Overmann & Thomas Wynn - 2019 - Journal of Archaeological Method and Theory 2 (26):457–478.
    In this paper, we examine the role of materiality in human cognition. We address issues such as the ways in which brain functions may change in response to interactions with material forms, the attributes of material forms that may cause change in brain functions, and the spans of time required for brain functions to reorganize when interacting with material forms. We then contrast thinking through materiality with thinking about it. We discuss these in terms of their evolutionary significance and history (...)
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  • On Tools Making Minds: an Archaeological Perspective on Human Cognitive Evolution.Karenleigh A. Overmann & Thomas Wynn - 2019 - Journal of Cognition and Culture 19 (1-2):39-58.
    Using a model of cognition as extended and enactive, we examine the role of materiality in making minds as exemplified by lithics and writing, forms associated with conceptual thought and meta-awareness of conceptual domains. We address ways in which brain functions may change in response to interactions with material forms, the attributes of material forms that may cause such change, and the spans of time required for neurofunctional reorganization. We also offer three hypotheses for investigating co-influence and change in cognition (...)
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  • Constructing a concept of number.Karenleigh Overmann - 2018 - Journal of Numerical Cognition 2 (4):464–493.
    Numbers are concepts whose content, structure, and organization are influenced by the material forms used to represent and manipulate them. Indeed, as argued here, it is the inclusion of multiple forms (distributed objects, fingers, single- and two-dimensional forms like pebbles and abaci, and written notations) that is the mechanism of numerical elaboration. Further, variety in employed forms explains at least part of the synchronic and diachronic variability that exists between and within cultural number systems. Material forms also impart characteristics like (...)
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  • A hand full of numbers: a role for offloading in arithmetics learning?Annelise Júlio Annelise - 2011 - Frontiers in Psychology 2.
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  • A Finger-Based Numerical Training Failed to Improve Arithmetic Skills in Kindergarten Children Beyond Effects of an Active Non-numerical Control Training.Ulrike Schild, Anne Bauch & Hans-Christoph Nuerk - 2020 - Frontiers in Psychology 11.
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  • Effect of Finger Gnosis on Young Chinese Children’s Addition Skills.Li Zhang, Wei Wang & Xiao Zhang - 2020 - Frontiers in Psychology 11.
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  • The Implicit Contribution of Fine Motor Skills to Mathematical Insight in Early Childhood.Ursula Fischer, Sebastian P. Suggate & Heidrun Stoeger - 2020 - Frontiers in Psychology 11.
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