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  1. Language and the development of spatial reasoning.Anna Shusterman & E. S. Spelke - 2005 - In Peter Carruthers, Stephen Laurence & Stephen P. Stich (eds.), The Innate Mind: Structure and Contents. New York, US: Oxford University Press USA. pp. 89--106.
    This chapter argues that human and animal minds indeed depend on a collection of domain-specific, task-specific, and encapsulated cognitive systems: on a set of cognitive ‘modules’ in Fodor's sense. It also argues that human and animal minds are endowed with domain-general, central systems that orchestrate the information delivered by core knowledge systems. The chapter begins by reviewing the literature on spatial reorientation in animals and in young children, arguing that spatial reorientation bears the hallmarks of core knowledge and of modularity. (...)
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  • Ecological perception affords an explanation of object permanence.Garry Young - 2005 - Philosophical Explorations 8 (2):189-208.
    In this paper I aim to present an explanation of object permanence that is derived from an ecological account of perceptually based action. In understanding why children below a certain age do not search for occluded objects, one must first understand the process by which these children perform certain intentional actions on non-occluded items; and to do this one must understand the role affordances play in eliciting retrieval behaviour. My affordance-based explanation is contrasted with Shinskey and Munakata's graded representation account; (...)
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  • Infants' ability to use object kind information for object individuation.Fei Xu, Susan Carey & Jenny Welch - 1999 - Cognition 70 (2):137-166.
  • Young infants' reasoning about hidden objects: evidence from violation-of-expectation tasks with test trials only.S. Wang - 2004 - Cognition 93 (3):167-198.
  • A tale of two theories: response to Fisher.Michael Tomasello & Kirsten Abbot-Smith - 2002 - Cognition 83 (2):207-214.
  • The dynamics of embodiment: A field theory of infant perseverative reaching.Esther Thelen, Gregor Schöner, Christian Scheier & Linda B. Smith - 2001 - Behavioral and Brain Sciences 24 (1):1-34.
    The overall goal of this target article is to demonstrate a mechanism for an embodied cognition. The particular vehicle is a much-studied, but still widely debated phenomenon seen in 7–12 month-old-infants. In Piaget's classic “A-not-B error,” infants who have successfully uncovered a toy at location “A” continue to reach to that location even after they watch the toy hidden in a nearby location “B.” Here, we question the traditional explanations of the error as an indicator of infants' concepts of objects (...)
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  • Pulling out the intentional structure of action: the relation between action processing and action production in infancy.Jessica A. Sommerville & Amanda L. Woodward - 2005 - Cognition 95 (1):1-30.
  • Representation and knowledge are not the same thing.Leslie Smith - 1999 - Behavioral and Brain Sciences 22 (5):784-785.
    Two standard epistemological accounts are conflated in Dienes & Perner's account of knowledge, and this conflation requires the rejection of their four conditions of knowledge. Because their four metarepresentations applied to the explicit-implicit distinction are paired with these conditions, it follows by modus tollens that if the latter are inadequate, then so are the former. Quite simply, their account misses the link between true reasoning and knowledge.
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  • Young infants' expectations about hidden objects.Ted Ruffman, Lance Slade & Jessica Redman - 2005 - Cognition 97 (2):B35-B43.
  • Précis of semantic cognition: A parallel distributed processing approach.Timothy T. Rogers & James L. McClelland - 2008 - Behavioral and Brain Sciences 31 (6):689-714.
    In this prcis we focus on phenomena central to the reaction against similarity-based theories that arose in the 1980s and that subsequently motivated the approach to semantic knowledge. Specifically, we consider (1) how concepts differentiate in early development, (2) why some groupings of items seem to form or coherent categories while others do not, (3) why different properties seem central or important to different concepts, (4) why children and adults sometimes attest to beliefs that seem to contradict their direct experience, (...)
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  • Parallel Distributed Processing at 25: Further Explorations in the Microstructure of Cognition.Timothy T. Rogers & James L. McClelland - 2014 - Cognitive Science 38 (6):1024-1077.
    This paper introduces a special issue of Cognitive Science initiated on the 25th anniversary of the publication of Parallel Distributed Processing (PDP), a two-volume work that introduced the use of neural network models as vehicles for understanding cognition. The collection surveys the core commitments of the PDP framework, the key issues the framework has addressed, and the debates the framework has spawned, and presents viewpoints on the current status of these issues. The articles focus on both historical roots and contemporary (...)
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  • Human infants’ understanding of social imitation: Inferences of affiliation from third party observations.Lindsey J. Powell & Elizabeth S. Spelke - 2018 - Cognition 170 (C):31-48.
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  • Six principles for biologically based computational models of cortical cognition.Randall C. O'Reilly - 1998 - Trends in Cognitive Sciences 2 (11):455-462.
  • Conjunctive representations in learning and memory: Principles of cortical and hippocampal function.Randall C. O'Reilly & Jerry W. Rudy - 2001 - Psychological Review 108 (2):311-345.
  • A sensorimotor account of vision and visual consciousness.J. Kevin O’Regan & Alva Noë - 2001 - Behavioral and Brain Sciences 24 (5):883-917.
    Many current neurophysiological, psychophysical, and psychological approaches to vision rest on the idea that when we see, the brain produces an internal representation of the world. The activation of this internal representation is assumed to give rise to the experience of seeing. The problem with this kind of approach is that it leaves unexplained how the existence of such a detailed internal representation might produce visual consciousness. An alternative proposal is made here. We propose that seeing is a way of (...)
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  • Rich interpretation vs. deflationary accounts in cognitive development: the case of means-end skills in 7-month-old infants.Yuko Munakata, David Bauer, Tracy Stackhouse, Laura Landgraf & Jennifer Huddleston - 2002 - Cognition 83 (3):B43-B53.
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  • Can connectionism save constructivism?Gary F. Marcus - 1998 - Cognition 66 (2):153-182.
  • Can connectionism save constructivism?Gary F. Marcus - 1998 - Cognition 66 (2):153-182.
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  • Reassessing working memory: Comment on Just and Carpenter (1992) and Waters and Caplan (1996).Maryellen C. MacDonald & Morten H. Christiansen - 2002 - Psychological Review 109 (1):35-54.
  • Reasoning about a hidden object after a delay: Evidence for robust representations in 5-month-old infants.Yuyan Luo, Renée Baillargeon, Laura Brueckner & Yuko Munakata - 2003 - Cognition 88 (3):B23-B32.
  • Goal attributions and instrumental helping at 14 and 24 months of age.Kathryn Hobbs & Elizabeth Spelke - 2015 - Cognition 142 (C):44-59.
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  • Coming from a world without objects.Frauke Hildebrandt, Ramiro Glauer & Gregor Kachel - 2022 - Mind and Language 37 (2):159-176.
    While research on object individuation assumes that even very young children are able to perceive objects as particulars, we argue that the results of relevant studies can be explained in terms of feature discrimination. We propose that children start out navigating the world with a feature‐based ontology and only later become able to individuate objects spatiotemporally. Furthermore, object individuation is a cognitively demanding achievement resting on a uniquely human form of enculturation, namely the acquisition of deictic demonstratives. We conclude by (...)
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  • Young infants’ actions reveal their developing knowledge of support variables: Converging evidence for violation-of-expectation findings.Susan J. Hespos & Renée Baillargeon - 2008 - Cognition 107 (1):304-316.
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  • Filling the Gaps: Hume and Connectionism on the Continued Existence of Unperceived Objects.Mark Collier - 1999 - Hume Studies 25 (1 and 2):155-170.
    In Book I, part iv, section 2 of the Treatise, "Of scepticism with regard to the senses," Hume presents two different answers to the question of how we come to believe in the continued existence of unperceived objects. He rejects his first answer shortly after its formulation, and the remainder of the section articulates an alternative account of the development of the belief. The account that Hume adopts, however, is susceptible to a number of insurmountable objections, which motivates a reassessment (...)
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  • Connecting Conscious and Unconscious Processing.Axel Cleeremans - 2014 - Cognitive Science 38 (6):1286-1315.
    Consciousness remains a mystery—“a phenomenon that people do not know how to think about—yet” (Dennett, , p. 21). Here, I consider how the connectionist perspective on information processing may help us progress toward the goal of understanding the computational principles through which conscious and unconscious processing differ. I begin by delineating the conceptual challenges associated with classical approaches to cognition insofar as understanding unconscious information processing is concerned, and to highlight several contrasting computational principles that are constitutive of the connectionist (...)
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  • Correspondences between what infants see and know about causal and self-propelled motion.Jessica B. Cicchino, Richard N. Aslin & David H. Rakison - 2011 - Cognition 118 (2):171-192.
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  • Representing Space and Objects in Monkeys and Apes.Josep Call - 2000 - Cognitive Science 24 (3):397-422.
    Primate foraging can be construed as a set of interconnected problems that include finding food, selecting efficient travel routes, anticipating the positions of moving prey, and manipulating, and occasionally, extracting food items using tools. The evidence reviewed in this paper strongly suggests that both monkeys and apes use three types of representation (i.e., static, dynamic, and relational) to solve various problems. Static representations involve recalling certain features of the environment, dynamic representations involve imagining changes in the trajectories of moving objects, (...)
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  • Infants’ understanding of actions performed by mechanical devices.Ty W. Boyer, J. Samantha Pan & Bennett I. Bertenthal - 2011 - Cognition 121 (1):1-11.
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  • Doing Without Schema Hierarchies: A Recurrent Connectionist Approach to Normal and Impaired Routine Sequential Action.Matthew Botvinick & David C. Plaut - 2004 - Psychological Review 111 (2):395-429.
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  • Implicit Learning and Consciousness: A Graded, Dynamic Perspective.Axel Cleeremans & Luis Jimenez - 2002 - In Robert M. French & Axel Cleeremans (eds.), Implicit Learning and Consciousness: An Empirical. Psychology Press.
    While the study of implicit learning is nothing new, the field as a whole has come to embody — over the last decade or so — ongoing questioning about three of the most fundamental debates in the cognitive sciences: The nature of consciousness, the nature of mental representation (in particular the difficult issue of abstraction), and the role of experience in shaping the cognitive system. Our main goal in this chapter is to offer a framework that attempts to integrate current (...)
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