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  1. A Theory of Perceptual Objects.E. J. Green - 2019 - Philosophy and Phenomenological Research 99 (3):663-693.
    Objects are central in visual, auditory, and tactual perception. But what counts as a perceptual object? I address this question via a structural unity schema, which specifies how a collection of parts must be arranged to compose an object for perception. On the theory I propose, perceptual objects are composed of parts that participate in causally sustained regularities. I argue that this theory falls out of a compelling account of the function of object perception, and illustrate its applications to multisensory (...)
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  • Numerosity discrimination in infants: Evidence for two systems of representations.Fei Xu - 2003 - Cognition 89 (1):B15-B25.
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  • From numerical concepts to concepts of number.Lance J. Rips, Amber Bloomfield & Jennifer Asmuth - 2008 - Behavioral and Brain Sciences 31 (6):623-642.
    Many experiments with infants suggest that they possess quantitative abilities, and many experimentalists believe that these abilities set the stage for later mathematics: natural numbers and arithmetic. However, the connection between these early and later skills is far from obvious. We evaluate two possible routes to mathematics and argue that neither is sufficient: (1) We first sketch what we think is the most likely model for infant abilities in this domain, and we examine proposals for extrapolating the natural number concept (...)
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  • Base-rate respect: From ecological rationality to dual processes.Aron K. Barbey & Steven A. Sloman - 2007 - Behavioral and Brain Sciences 30 (3):241-254.
    The phenomenon of base-rate neglect has elicited much debate. One arena of debate concerns how people make judgments under conditions of uncertainty. Another more controversial arena concerns human rationality. In this target article, we attempt to unpack the perspectives in the literature on both kinds of issues and evaluate their ability to explain existing data and their conceptual coherence. From this evaluation we conclude that the best account of the data should be framed in terms of a dual-process model of (...)
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  • The Perception-Cognition Border: Architecture or Format?E. J. Green - 2007 - In Brian P. McLaughlin & Jonathan Cohen (eds.), Contemporary Debates in Philosophy of Mind. Wiley-Blackwell. pp. 469-493.
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  • The Rutherford Atom of Culture.Lawrence A. Hirschfeld - 2018 - Journal of Cognition and Culture 18 (3-4):231-261.
    Increasingly, psychologists have shown a healthy interest in cultural variation and a skepticism about assuming that research with North American and Northern European undergraduates provides reliable insight into universal psychological processes. Unfortunately, this reappraisal has not been extended to questioning the notion of culture central to this project. Rather, there is wide acceptance that culture refers to a kind of social form that is entity-like, territorialized, marked by a high degree of shared beliefs and coalescing into patterns of key values (...)
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  • Chronometric studies of numerical cognition in five-month-old infants.Justin N. Wood & Elizabeth S. Spelke - 2005 - Cognition 97 (1):23-39.
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  • Enumeration takes time: Accuracy improves even after stimuli disappear.Yanfei Yu & Kristy vanMarle - 2022 - Cognition 225 (C):105147.
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  • Perceived number is not abstract.Lauren S. Aulet & Stella F. Lourenco - 2021 - Behavioral and Brain Sciences 44.
    To support the claim that the approximate number system represents rational numbers, Clarke and Beck argue that number perception is abstract and characterized by a second-order character. However, converging evidence from visual illusions and psychophysics suggests that perceived number is not abstract, but rather, is perceptually interdependent with other magnitudes. Moreover, number, as a concept, is second-order, but number, as a percept, is not.
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  • Possible Objects: Topological Approaches to Individuation.Lance J. Rips - 2020 - Cognitive Science 44 (11):e12916.
    We think of the world around us as divided into physical objects like toasters and daisies, rather than solely as a smear of properties like yellow and smooth. How do we single out these objects? One theory of object concepts uses part‐of relations and relations of connectedness. According to this proposal, an object is a connected spatial item of maximal extent: Any other connected item that overlaps (i.e., shares a part with) the object must be a part of that object. (...)
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  • Infants chunk object arrays into sets of individuals.Lisa Feigenson & Justin Halberda - 2004 - Cognition 91 (2):173-190.
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  • Open questions and a proposal: A critical review of the evidence on infant numerical abilities.Lisa Cantrell & Linda B. Smith - 2013 - Cognition 128 (3):331-352.
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  • What Do Object Files Pick Out?Edwin Green - 2018 - Philosophy of Science 85 (2):177-200.
    Many authors have posited an “object file” system, which underlies perceptual selection and tracking of objects. Several have proposed that this system internalizes principles specifying what counts as an object and relies on them during tracking. Here I consider a popular view on which the object file system is tuned to entities that satisfy principles of three-dimensionality, cohesion, and boundedness. I argue that the evidence gathered in support of this view is consistent with a more permissive view on which object (...)
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  • Why frequencies are natural.Brian Butterworth - 2007 - Behavioral and Brain Sciences 30 (3):259-260.
    Research in mathematical cognition has shown that rates, and other interpretations of x/y, are hard to learn and understand. On the other hand, there is extensive evidence that the brain is endowed with a specialized mechanism for representing and manipulating the numerosities of sets – that is, frequencies. Hence, base-rates are neglected precisely because they are rates, whereas frequencies are indeed natural.
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  • Evidence for a non-linguistic distinction between singular and plural sets in rhesus monkeys.David Barner, Justin Wood, Marc Hauser & Susan Carey - 2008 - Cognition 107 (2):603-622.
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  • Don't throw the baby out with the math water: Why discounting the developmental foundations of early numeracy is premature and unnecessary.Kevin Muldoon, Charlie Lewis & Norman Freeman - 2008 - Behavioral and Brain Sciences 31 (6):663-664.
    We see no grounds for insisting that, because the concept natural number is abstract, its foundations must be innate. It is possible to specify domain general learning processes that feed into more abstract concepts of numerical infinity. By neglecting the messiness of children's slow acquisition of arithmetical concepts, Rips et al. present an idealized, unnecessarily insular, view of number development.
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  • The role of representation in bayesian reasoning: Correcting common misconceptions.Gerd Gigerenzer & Ulrich Hoffrage - 2007 - Behavioral and Brain Sciences 30 (3):264-267.
    The terms nested sets, partitive frequencies, inside-outside view, and dual processes add little but confusion to our original analysis (Gigerenzer & Hoffrage 1995; 1999). The idea of nested set was introduced because of an oversight; it simply rephrases two of our equations. Representation in terms of chances, in contrast, is a novel contribution yet consistent with our computational analysis System 1.dual process theory” is: Unless the two processes are defined, this distinction can account post hoc for almost everything. In contrast, (...)
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  • Predicting first-grade mathematics achievement: the contributions of domain-general cognitive abilities, nonverbal number sense, and early number competence.Caroline Hornung, Christine Schiltz, Martin Brunner & Romain Martin - 2014 - Frontiers in Psychology 5.
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  • Baby arithmetic: one object plus one tone.Tessei Kobayashi, Kazuo Hiraki, Ryoko Mugitani & Toshikazu Hasegawa - 2004 - Cognition 91 (2):B23-B34.
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  • Set representations required for the acquisition of the “natural number” concept.Justin Halberda & Lisa Feigenson - 2008 - Behavioral and Brain Sciences 31 (6):655-656.
    Rips et al. consider whether representations of individual objects or analog magnitudes are building blocks for the concept natural number. We argue for a third core capacity – the ability to bind representations of individuals into sets. However, even with this addition to the list of starting materials, we agree that a significant acquisition story is needed to capture natural number.
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  • Infants’ auditory enumeration: Evidence for analog magnitudes in the small number range.Kristy vanMarle & Karen Wynn - 2009 - Cognition 111 (3):302-316.
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  • Turning Durkheim on His Head: A Reply to Peterson and Bjerre.Albert J. Bergesen - 2012 - Journal for the Theory of Social Behaviour 42 (4):485-495.
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  • Commentary: “An Evaluation of Universal Grammar and the Phonological Mind”—UG Is Still a Viable Hypothesis.Iris Berent - 2016 - Frontiers in Psychology 7.
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  • Collections, collectives, and individuals: Preschoolers’ attributions of intentionality.Hammad Sheikh & Lawrence A. Hirschfeld - 2019 - Cognition 190 (C):99-104.
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  • The Acuity and Manipulability of the ANS Have Separable Influences on Preschoolers’ Symbolic Math Achievement.Ariel Starr, Rachel C. Tomlinson & Elizabeth M. Brannon - 2018 - Frontiers in Psychology 9.
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  • Increasing magnitude counts more: Asymmetrical processing of ordinality in 4-month-old infants.Viola Macchi Cassia, Marta Picozzi, Luisa Girelli & Maria Dolores de Hevia - 2012 - Cognition 124 (2):183-193.
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  • Small-range numerical representations of linguistic sounds in 9- to 10-month-old infants.Silvia Benavides-Varela & Natalia Reoyo-Serrano - 2021 - Cognition 213 (C):104637.
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