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  1. Beyond 'what'and 'how many': Capacity, complexity, and resolution of infants' object representations.Jennifer M. Zosh & Lisa Feigenson - 2009 - In Bruce M. Hood & Laurie Santos (eds.), The origins of object knowledge. Oxford: Oxford University Press. pp. 25--51.
  • Re-establishing the distinction between numerosity, numerousness, and number in numerical cognition.César Frederico Dos Santos - 2022 - Philosophical Psychology 35 (8):1152-1180.
    In 1939, the influential psychophysicist S. S. Stevens proposed definitional distinctions between the terms ‘number,’ ‘numerosity,’ and ‘numerousness.’ Although the definitions he proposed were adopted by syeveral psychophysicists and experimental psychologists in the 1940s and 1950s, they were almost forgotten in the subsequent decades, making room for what has been described as a “terminological chaos” in the field of numerical cognition. In this paper, I review Stevens’s distinctions to help bring order to this alleged chaos and to shed light on (...)
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  • Cognition, Meaning and Action: Lodz-Lund Studies in Cognitive Science.Piotr Łukowski, Aleksander Gemel & Bartosz Żukowski (eds.) - 2015 - Kraków, Polska: Lodz University Press & Jagiellonian University Press.
    The book is addressed to all readers interested in cognitive science, and especially in research combining a logical analysis with psychological, linguistic and neurobiological approaches. The publication is the result of a collaboration between the Department of Cognitive Science at University of Lodz and the Department of Cognitive Science at Lund University. It is intended to provide a comprehensive presentation of the key research issues undertaken in both Departments, including considerations on meaning, natural language and reasoning, linguistic as well as (...)
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  • Why do numbers exist? A psychologist constructivist account.Markus Pantsar - forthcoming - Inquiry: An Interdisciplinary Journal of Philosophy.
    In this paper, I study the kind of questions we can ask about the existence of numbers. In addition to asking whether numbers exist, and how, I argue that there is also a third relevant question: why numbers exist. In platonist and nominalist accounts this question may not make sense, but in the psychologist account I develop, it is as well-placed as the other two questions. In fact, there are two such why-questions: the causal why-question asks what causes numbers to (...)
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  • Building blocks for a cognitive science-led epistemology of arithmetic.Stefan Buijsman - 2021 - Philosophical Studies 179 (5):1-18.
    In recent years philosophers have used results from cognitive science to formulate epistemologies of arithmetic :5–18, 2001). Such epistemologies have, however, been criticised, e.g. by Azzouni, for interpreting the capacities found by cognitive science in an overly numerical way. I offer an alternative framework for the way these psychological processes can be combined, forming the basis for an epistemology for arithmetic. The resulting framework avoids assigning numerical content to the Approximate Number System and Object Tracking System, two systems that have (...)
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  • Object individuation by iconic content: How is numerosity represented in iconic representation?Athanasios Raftopoulos - 2020 - Rivista Internazionale di Filosofia e Psicologia 11 (1):42-70.
    : Fodor argues that perceptual representations are a subset of iconic representations, which are distinguished from symbolic/discursive representations. Iconic representations are nonconceptual and they do not support the abilities afforded by concepts. Iconic representations, for example, cannot support object individuation. If someone thinks that perception or some of its parts has imagistic NCC, they face the following dilemma. Either they will have to accept that this NCC does not allow for object individuation, but it represents instead conglomerations of properties and (...)
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  • Concepts and predication from perception to cognition.Jake Quilty-Dunn - 2020 - Philosophical Issues 30 (1):273-292.
    Philosophical Issues, Volume 30, Issue 1, Page 273-292, October 2020.
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  • Compositionality and constituent structure in the analogue mind.Sam Clarke - 2023 - Philosophical Perspectives 37 (1):90-118.
    I argue that analogue mental representations possess a canonical decomposition into privileged constituents from which they compose. I motivate this suggestion, and rebut arguments to the contrary, through reflection on the approximate number system, whose representations are widely expected to have an analogue format. I then argue that arguments for the compositionality and constituent structure of these analogue representations generalize to other analogue mental representations posited in the human mind, such as those in early vision and visual imagery.
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  • Visual perception can account for the close relation between numerosity processing and computational fluency.Xinlin Zhou, Wei Wei, Yiyun Zhang, Jiaxin Cui & Chuansheng Chen - 2015 - Frontiers in Psychology 6.
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  • Statistical regularities reduce perceived numerosity.Jiaying Zhao & Ru Qi Yu - 2016 - Cognition 146:217-222.
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  • Constructing rationals through conjoint measurement of numerator and denominator as approximate integer magnitudes in tradeoff relations.Jun Zhang - 2021 - Behavioral and Brain Sciences 44.
    To investigate mechanisms of rational representation, I consider construction of an ordered continuum of psychophysical scale of magnitude of sensation; counting mechanism leading to an approximate numerosity scale for integers; and conjoint measurement structure pitting the denominator against the numerator in tradeoff positions. Number sense of resulting rationals is neither intuitive nor expedient in their manipulation.
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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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  • Preschoolers and multi-digit numbers: A path to mathematics through the symbols themselves.Lei Yuan, Richard W. Prather, Kelly S. Mix & Linda B. Smith - 2019 - Cognition 189:89-104.
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  • The Connection Between Spatial and Mathematical Ability Across Development.Christopher J. Young, Susan C. Levine & Kelly S. Mix - 2018 - Frontiers in Psychology 9:358219.
    In this article, we review approaches to modeling a connection between spatial and mathematical thinking across development. We critically evaluate the strengths and weaknesses of factor analyses, meta-analyses, and experimental literatures. We examine those studies that set out to describe the nature and number of spatial and mathematical skills and specific connections between these abilities, especially those that included children as participants. We also find evidence of strong spatial-mathematical connections and transfer from spatial interventions to mathematical understanding. Finally, we map (...)
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  • Numerical processing efficiency improved in children using mental abacus: ERP evidence utilizing a numerical Stroop task.Yuan Yao, Fenglei Du, Chunjie Wang, Yuqiu Liu, Jian Weng & Feiyan Chen - 2015 - Frontiers in Human Neuroscience 9.
  • The developmental onset of symbolic approximation: beyond nonsymbolic representations, the language of numbers matters.Iro Xenidou-Dervou, Camilla Gilmore, Menno van der Schoot & Ernest C. D. M. van Lieshout - 2015 - Frontiers in Psychology 6.
  • The role of ANS acuity and numeracy for the calibration and the coherence of subjective probability judgments.Anders Winman, Peter Juslin, Marcus Lindskog, HÃ¥kan Nilsson & Neda Kerimi - 2014 - Frontiers in Psychology 5.
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  • Spontaneous mindreading: a problem for the two-systems account.Evan Westra - 2017 - Synthese 194 (11):4559-4581.
    According to the two-systems account of mindreading, our mature perspective-taking abilities are subserved by two distinct mindreading systems: a fast but inflexible, “implicit” system, and a flexible but slow “explicit” one. However, the currently available evidence on adult perspective-taking does not support this account. Specifically, both Level-1 and Level-2 perspective-taking show a combination of efficiency and flexibility that is deeply inconsistent with the two-systems architecture. This inconsistency also turns out to have serious consequences for the two-systems framework as a whole, (...)
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  • WHAT more IS.Alexis Wellwood - 2018 - Philosophical Perspectives 32 (1):454-486.
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  • Interpreting Degree Semantics.Alexis Wellwood - 2020 - Frontiers in Psychology 10.
    Contemporary research in compositional, truth-conditional semantics often takes judgments of the relative unacceptability of certain phrasal combinations as evidence for lexical semantics. For example, observing that completely full sounds perfectly natural whereas completely tall does not has been used to motivate a distinction whereby the lexical entry for full but not for tall specifies a scalar endpoint. So far, such inferences seem unobjectionable. In general, however, applying this methodology can lead to dubious conclusions. For example, observing that slightly bent is (...)
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  • An association between understanding cardinality and analog magnitude representations in preschoolers.Jennifer B. Wagner & Susan C. Johnson - 2011 - Cognition 119 (1):10-22.
  • The Sexed Brain: Between Science and Ideology.Catherine Vidal - 2011 - Neuroethics 5 (3):295-303.
    Despite tremendous advances in neuroscience, the topic “brain, sex and gender” remains a matter of misleading interpretations, that go well beyond the bounds of science. In the 19th century, the difference in brain sizes was a major argument to explain the hierarchy between men and women, and was supposed to reflect innate differences in mental capacity. Nowadays, our understanding of the human brain has progressed dramatically with the demonstration of cerebral plasticity. The new brain imaging techniques have revealed the role (...)
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  • Attention to number requires magnitude-specific inhibition.Arnaud Viarouge, Hoyeon Lee & Grégoire Borst - 2023 - Cognition 230 (C):105285.
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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.
  • Ten-Month-Old Infants’ Reaching Choices for “more”: The Relationship between Inter-Stimulus Distance and Number.Claudia Uller, Callum Urquhart, Jennifer Lewis & Monica Berntsen - 2013 - Frontiers in Psychology 4.
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  • Number sense biases children's area judgments.Rachel C. Tomlinson, Nicholas K. DeWind & Elizabeth M. Brannon - 2020 - Cognition 204 (C):104352.
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  • Linguistic and Visual Cognition: Verifying Proportional and Superlative Most in Bulgarian and Polish. [REVIEW]Barbara Tomaszewicz - 2013 - Journal of Logic, Language and Information 22 (3):335-356.
    The verification of a sentence against a visual display in experimental conditions reveals a procedure that is driven solely by the properties of the linguistic input and not by the properties of the context (the set-up of the visual display) or extra-linguistic cognition (operations executed to obtain the truth value). This procedure, according to the Interface Transparency Thesis (ITT) (Lidz et al. in Nat Lang Semant 19(3):227–256, 2011), represents the meaning of an expression at the interface with the ‘conceptual-intentional’ system (...)
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  • The Relationship Between Non-symbolic and Symbolic Numerosity Representations in Elementary School: The Role of Intelligence.Tatiana Tikhomirova, Yulia Kuzmina, Irina Lysenkova & Sergey Malykh - 2019 - Frontiers in Psychology 10.
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  • The Challenge of Modeling the Acquisition of Mathematical Concepts.Alberto Testolin - 2020 - Frontiers in Human Neuroscience 14.
  • Questions About Quantifiers: Symbolic and Nonsymbolic Quantity Processing by the Brain.Jakub Szymanik, Arnold Kochari & Heming Strømholt Bremnes - 2023 - Cognitive Science 47 (10):e13346.
    One approach to understanding how the human cognitive system stores and operates with quantifiers such as “some,” “many,” and “all” is to investigate their interaction with the cognitive mechanisms for estimating and comparing quantities from perceptual input (i.e., nonsymbolic quantities). While a potential link between quantifier processing and nonsymbolic quantity processing has been considered in the past, it has never been discussed extensively. Simultaneously, there is a long line of research within the field of numerical cognition on the relationship between (...)
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  • Young Children Intuitively Divide Before They Recognize the Division Symbol.Emily Szkudlarek, Haobai Zhang, Nicholas K. DeWind & Elizabeth M. Brannon - 2022 - Frontiers in Human Neuroscience 16.
    Children bring intuitive arithmetic knowledge to the classroom before formal instruction in mathematics begins. For example, children can use their number sense to add, subtract, compare ratios, and even perform scaling operations that increase or decrease a set of dots by a factor of 2 or 4. However, it is currently unknown whether children can engage in a true division operation before formal mathematical instruction. Here we examined the ability of 6- to 9-year-old children and college students to perform symbolic (...)
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  • Failure to replicate the benefit of approximate arithmetic training for symbolic arithmetic fluency in adults.Emily Szkudlarek, Joonkoo Park & Elizabeth M. Brannon - 2021 - Cognition 207 (C):104521.
    Previous research reported that college students' symbolic addition and subtraction fluency improved after training with non-symbolic, approximate addition and subtraction. These findings were widely interpreted as strong support for the hypothesis that the Approximate Number System (ANS) plays a causal role in symbolic mathematics, and that this relation holds into adulthood. Here we report four experiments that fail to find evidence for this causal relation. Experiment 1 examined whether the approximate arithmetic training effect exists within a shorter training period than (...)
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  • Approximate Arithmetic Training Improves Informal Math Performance in Low Achieving Preschoolers.Emily Szkudlarek & Elizabeth M. Brannon - 2018 - Frontiers in Psychology 9.
  • A Diffusion Model Analysis of Magnitude Comparison in Children with and without Dyscalculia: Care of Response and Ability Are Related to Both Mathematical Achievement and Stimuli.Carsten Szardenings, Jörg-Tobias Kuhn, Jochen Ranger & Heinz Holling - 2018 - Frontiers in Psychology 8.
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  • The Linguistic Analogy: Motivations, Results, and Speculations.Susan Dwyer, Bryce Huebner & Marc D. Hauser - 2010 - Topics in Cognitive Science 2 (3):486-510.
    Inspired by the success of generative linguistics and transformational grammar, proponents of the linguistic analogy (LA) in moral psychology hypothesize that careful attention to folk-moral judgments is likely to reveal a small set of implicit rules and structures responsible for the ubiquitous and apparently unbounded capacity for making moral judgments. As a theoretical hypothesis, LA thus requires a rich description of the computational structures that underlie mature moral judgments, an account of the acquisition and development of these structures, and an (...)
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  • The evolution of foresight: What is mental time travel, and is it unique to humans?Thomas Suddendorf & Michael C. Corballis - 2007 - Behavioral and Brain Sciences 30 (3):299-313.
    In a dynamic world, mechanisms allowing prediction of future situations can provide a selective advantage. We suggest that memory systems differ in the degree of flexibility they offer for anticipatory behavior and put forward a corresponding taxonomy of prospection. The adaptive advantage of any memory system can only lie in what it contributes for future survival. The most flexible is episodic memory, which we suggest is part of a more general faculty of mental time travel that allows us not only (...)
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  • Do Different Groups Have Different Epistemic Intuitions? A Reply to Jennifer Nagel1.Stephen Stich - 2012 - Philosophy and Phenomenological Research 87 (1):151-178.
    Intuitions play an important role in contemporary epistemology. Over the last decade, however, experimental philosophers have published a number of studies suggesting that epistemic intuitions may vary in ways that challenge the widespread reliance on intuitions in epistemology. In a recent paper, Jennifer Nagel offers a pair of arguments aimed at showing that epistemic intuitions do not, in fact, vary in problematic ways. One of these arguments relies on a number of claims defended by appeal to the psychological literature on (...)
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  • The ability of children to delay gratification in an exchange task.Sophie Steelandt, Bernard Thierry, Marie-Hélène Broihanne & Valérie Dufour - 2012 - Cognition 122 (3):416-425.
  • Evidence against continuous variables driving numerical discrimination in infancy.Ariel Starr & Elizabeth M. Brannon - 2015 - Frontiers in Psychology 6.
  • Artificial Languages Between Innate Faculties.Frits Staal - 2007 - Journal of Indian Philosophy 35 (5-6):577-596.
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  • How do people apprehend large numerosities?Catherine Sophian & Yun Chu - 2008 - Cognition 107 (2):460-478.
  • Effects of Presentation Type and Visual Control in Numerosity Discrimination: Implications for Number Processing?Karolien Smets, Pieter Moors & Bert Reynvoet - 2016 - Frontiers in Psychology 7.
  • Connecting numbers to discrete quantification: A step in the child’s construction of integer concepts.Emily Slusser, Annie Ditta & Barbara Sarnecka - 2013 - Cognition 129 (1):31-41.
  • Neurophilosophy of Number.Hourya Benis Sinaceur - 2017 - International Studies in the Philosophy of Science 31 (1):1-25.
    Neurosciences and cognitive sciences provide us with myriad empirical findings that shed light on hypothesised primitive numerical processes in the brain and in the mind. Yet, the hypotheses on which the experiments are based, and hence the results, depend strongly on sophisticated abstract models used to describe and explain neural data or cognitive representations that supposedly are the empirical roots of primary arithmetical activity. I will question the foundational role of such models. I will even cast doubt upon the search (...)
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  • Innate or Acquired? – Disentangling Number Sense and Early Number Competencies.Julia Siemann & Franz Petermann - 2018 - Frontiers in Psychology 9.
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  • Processing of Numerical and Proportional Quantifiers.Sailee Shikhare, Stefan Heim, Elise Klein, Stefan Huber & Klaus Willmes - 2015 - Cognitive Science 39 (7):1504-1536.
    Quantifier expressions like “many” and “at least” are part of a rich repository of words in language representing magnitude information. The role of numerical processing in comprehending quantifiers was studied in a semantic truth value judgment task, asking adults to quickly verify sentences about visual displays using numerical or proportional quantifiers. The visual displays were composed of systematically varied proportions of yellow and blue circles. The results demonstrated that numerical estimation and numerical reference information are fundamental in encoding the meaning (...)
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  • Studying mental states is not a research program for comparative cognition.Sara J. Shettleworth - 2007 - Behavioral and Brain Sciences 30 (3):332-333.
    The title of the target article suggests an agenda for research on cognitive evolution that is doubly flawed. It implies that we can learn directly about animals' mental states, and its focus on human uniqueness impels a search for an existence proof rather than for understanding what components of given cognitive processes are shared among species and why.
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  • The knowledge of the preceding number reveals a mature understanding of the number sequence.Francesco Sella & Daniela Lucangeli - 2020 - Cognition 194 (C):104104.
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  • Object persistence in philosophy and psychology.Brian J. Scholl - 2007 - Mind and Language 22 (5):563–591.
    What makes an object the same persisting individual over time? Philosophers and psychologists have both grappled with this question, but from different perspectives—philosophers conceptually analyzing the criteria for object persistence, and psychologists exploring the mental mechanisms that lead us to experience the world in terms of persisting objects. It is striking that the same themes populate explorations of persistence in these two very different fields—e.g. the roles of spatiotemporal continuity, persistence through property change, and cohesion violations. Such similarities may reflect (...)
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  • Counting and the ontogenetic origins of exact equality.Rose M. Schneider, Erik Brockbank, Roman Feiman & David Barner - 2022 - Cognition 218 (C):104952.
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