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  1. The Psychology of Language: An Introduction to Psycholinguistics and Generative Grammar.Jerry Fodor, Bever A., Garrett T. G. & F. M. - 1974 - Mcgraw-Hill.
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  • The Language Instinct: How the Mind Creates Language.Steven Pinker - 1994/2007 - Harper Perennial.
    In this classic, the world's expert on language and mind lucidly explains everything you always wanted to know about language: how it works, how children learn it, how it changes, how the brain computes it, and how it evolved. With deft use of examples of humor and wordplay, Steven Pinker weaves our vast knowledge of language into a compelling story: language is a human instinct, wired into our brains by evolution. The Language Instinct received the William James Book Prize from (...)
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  • Vision.David Marr - 1982 - W. H. Freeman.
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  • Aspects of the Theory of Syntax.Noam Chomsky - 1965 - Cambridge, MA, USA: MIT Press.
    Chomsky proposes a reformulation of the theory of transformational generative grammar that takes recent developments in the descriptive analysis of particular ...
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  • Genetic epistemology.Jean Piaget - 1970 - New York,: Columbia University Press.
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  • Escape from linear time: Prefrontal cortex and conscious experience.Robert T. Knight & M. Grabowecky - 1995 - In Michael S. Gazzaniga (ed.), The Cognitive Neurosciences. MIT Press.
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  • The Ecological Approach to Visual Perception: Classic Edition.James J. Gibson - 1979 - Houghton Mifflin.
    This is a book about how we see: the environment around us (its surfaces, their layout, and their colors and textures); where we are in the environment; whether or not we are moving and, if we are, where we are going; what things are good for; how to do things (to thread a needle or drive an automobile); or why things look as they do.The basic assumption is that vision depends on the eye which is connected to the brain. The (...)
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  • Natural language and natural selection.Steven Pinker & Paul Bloom - 1990 - Behavioral and Brain Sciences 13 (4):707-27.
    Many people have argued that the evolution of the human language faculty cannot be explained by Darwinian natural selection. Chomsky and Gould have suggested that language may have evolved as the by-product of selection for other abilities or as a consequence of as-yet unknown laws of growth and form. Others have argued that a biological specialization for grammar is incompatible with every tenet of Darwinian theory – that it shows no genetic variation, could not exist in any intermediate forms, confers (...)
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  • The Adapted Mind: Evolutionary Psychology and the Generation of Culture.Jerome H. Barkow, Leda Cosmides & John Tooby - 1992 - Oxford University Press. Edited by Jerome H. Barkow, Leda Cosmides & John Tooby.
    Second, this collection of cognitive programs evolved in the Pleistocene to solve the adaptive problems regularly faced by our hunter-gatherer ancestors-...
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  • Computation and Cognition: Toward a Foundation for Cognitive Science.Zenon W. Pylyshyn - 1984 - Cambridge: MIT Press.
    This systematic investigation of computation and mental phenomena by a noted psychologist and computer scientist argues that cognition is a form of computation, that the semantic contents of mental states are encoded in the same general way as computer representations are encoded. It is a rich and sustained investigation of the assumptions underlying the directions cognitive science research is taking. 1 The Explanatory Vocabulary of Cognition 2 The Explanatory Role of Representations 3 The Relevance of Computation 4 The Psychological Reality (...)
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  • The Embodied Mind: Cognitive Science and Human Experience.Francisco J. Varela, Evan Thompson & Eleanor Rosch - 1991 - MIT Press.
    The Embodied Mind provides a unique, sophisticated treatment of the spontaneous and reflective dimension of human experience.
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  • Against direct perception.Shimon Ullman - 1980 - Behavioral and Brain Sciences 3 (3):333-81.
    Central to contemporary cognitive science is the notion that mental processes involve computations defined over internal representations. This view stands in sharp contrast to the to visual perception and cognition, whose most prominent proponent has been J.J. Gibson. In the direct theory, perception does not involve computations of any sort; it is the result of the direct pickup of available information. The publication of Gibson's recent book (Gibson 1979) offers an opportunity to examine his approach, and, more generally, to contrast (...)
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  • How direct is visual perception? Some reflections on Gibson's 'ecological approach'.Jerry A. Fodor & Zenon W. Pylyshyn - 1981 - Cognition 9 (2):139-96.
    Examines the theses that the postulation of mental processing is unnecessary to account for our perceptual relationship with the world, see turvey etal. for a criticque.
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  • (4 other versions)Rules and Representations.Noam Chomsky - 1980 - Philosophy 56 (218):587-589.
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  • (2 other versions)Aspects of the Theory of Syntax.J. F. Staal - 1965 - Journal of Symbolic Logic 32 (3):385-387.
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  • The Ecological Approach to Visual Perception.Marc H. Bornstein - 1980 - Journal of Aesthetics and Art Criticism 39 (2):203-206.
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  • Rules and Representations.Charles A. Perfetti - 1981 - Philosophy of Science 48 (1):153-156.
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  • Review of The Computational Brain by Patricia S. Churchland and Terrence J. Sejnowski. [REVIEW]Brian P. McLaughlin - 1996 - Philosophy of Science 63 (1):137-139.
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  • On the Validity of Simulating Stagewise Development by Means of PDP Networks: Application of Catastrophe Analysis and an Experimental Test of Rule‐Like Network Performance.Maartje E. J. Raijmakers, Sylvester von Koten & Peter C. M. Molenaar - 1996 - Cognitive Science 20 (1):101-136.
    This article addresses the ability of Parallel Distributed Processing (PDP) networks to generate stagewise cognitive development in accordance with Piaget's theory of cognitive epigenesis. We carried out a replication study of the simulation experiments by McClelland (1989) and McClelland and Jenkins (1991) in which a PDP network learns to solve balance scale problems. In objective tests motivated from catastrophe theory, a mathematical theory of transitions in epigenetical systems, no evidence for stage transitions in network performance was found. It is concluded (...)
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  • (2 other versions)Vision: Variations on Some Berkeleian Themes.Robert Schwartz & David Marr - 1985 - Philosophical Review 94 (3):411.
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  • (1 other version)The Modularity of Mind.Robert Cummins & Jerry Fodor - 1983 - Philosophical Review 94 (1):101.
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  • Aspects of the Theory of Syntax.Ann S. Ferebee - 1965 - Journal of Symbolic Logic 35 (1):167.
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  • A theory of cognitive development: The control and construction of hierarchies of skills.Kurt W. Fischer - 1980 - Psychological Review 87 (6):477-531.
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  • Conceptions of prenatal development: Behavioral embryology.Gilbert Gottlieb - 1976 - Psychological Review 83 (3):215-234.
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  • The Architecture of Complexity.Herbert A. Simon - 1962 - Proceedings of the American Philosophical Society 106.
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  • Memory, Imprinting, and the Brain: An Inquiry Into Mechanisms.Gabriel Horn - 1985 - Oxford University Press UK.
    Ranging from behavioral to molecular levels of analysis, this informative study presents the results of recent research into the biochemistry and neural mechanisms of imprinting. Horn discusses some of the difficulties that researchers have encountered in analyzing the neural basis of memory and describes ways in which these difficulties have been overcome through the analysis of memories underlying habituation and imprinting. He also considers the biochemical consequences of imprinting and its cerebral localization, and examines the relationships between human and animal (...)
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  • Language related dispositions in early infancy.Jacques Mehler - 1985 - In Jacques Mehler & Robin Fox (eds.), Neonate Cognition: Beyond the Blooming Buzzing Confusion. Lawrence Erlbaum. pp. 7.
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  • Antibodies and learning: Selection versus instruction.Niels Kaj Jerne - 1994 - In H. Gutfreund & G. Toulouse (eds.), Biology and Computation: A Physicist's Choice. World Scientific. pp. 278.
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  • Neuronal models of cognitive functions.Jean-Pierre Changeux & Stanislas Dehaene - 1989 - Cognition 33 (1-2):63-109.
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  • Formal models of language learning.Steven Pinker - 1979 - Cognition 7 (3):217-283.
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  • Language, tools and brain: The ontogeny and phylogeny of hierarchically organized sequential behavior.Patricia M. Greenfield - 1991 - Behavioral and Brain Sciences 14 (4):531-551.
    During the first two years of human life a common neural substrate underlies the hierarchical organization of elements in the development of speech as well as the capacity to combine objects manually, including tool use. Subsequent cortical differentiation, beginning at age two, creates distinct, relatively modularized capacities for linguistic grammar and more complex combination of objects. An evolutionary homologue of the neural substrate for language production and manual action is hypothesized to have provided a foundation for the evolution of language (...)
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  • The child's trigger experience: Degree-0 learnability.David Lightfoot - 1989 - Behavioral and Brain Sciences 12 (2):321-334.
    According to a “selective” (as opposed to “instructive”) model of human language capacity, people come to know more than they experience. The discrepancy between experience and eventual capacity (the “poverty of the stimulus”) is bridged by genetically provided information. Hence any hypothesis about the linguistic genotype (or “Universal Grammar,” UG) has consequences for what experience is needed and what form people's mature capacities (or “grammars”) will take. This BBS target article discusses the “trigger experience,” that is, the experience that actually (...)
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  • Hypothesis behavior by humans during discrimination learning.Marvin Levine - 1966 - Journal of Experimental Psychology 71 (3):331.
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  • Maturational Constraints on Language Learning.Elissa L. Newport - 1990 - Cognitive Science 14 (1):11-28.
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  • A critique of pure vision.Patricia S. Churchland, V. S. Ramachandran & Terrence J. Sejnowski - 1994 - In Christof Koch & Joel L. Davis (eds.), Large-Scale Neuronal Theories of the Brain. MIT Press. pp. 23.
    Anydomainofscientificresearchhasitssustainingorthodoxy. Thatis, research on a problem, whether in astronomy, physics, or biology, is con- ducted against a backdrop of broadly shared assumptions. It is these as- sumptionsthatguideinquiryandprovidethecanonofwhatisreasonable-- of what "makes sense." And it is these shared assumptions that constitute a framework for the interpretation of research results. Research on the problem of how we see is likewise sustained by broadly shared assump- tions, where the current orthodoxy embraces the very general idea that the business of the visual system is to (...)
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  • Innate talents: Reality or myth?Michael J. A. Howe, Jane W. Davidson & John A. Sloboda - 1998 - Behavioral and Brain Sciences 21 (3):399-407.
    Talents that selectively facilitate the acquisition of high levels of skill are said to be present in some children but not others. The evidence for this includes biological correlates of specific abilities, certain rare abilities in autistic savants, and the seemingly spontaneous emergence of exceptional abilities in young children, but there is also contrary evidence indicating an absence of early precursors of high skill levels. An analysis of positive and negative evidence and arguments suggests that differences in early experiences, preferences, (...)
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  • From simple associations to systematic reasoning: A connectionist representation of rules, variables, and dynamic binding using temporal synchrony.Lokendra Shastri & Venkat Ajjanagadde - 1993 - Behavioral and Brain Sciences 16 (3):417-51.
    Human agents draw a variety of inferences effortlessly, spontaneously, and with remarkable efficiency – as though these inferences were a reflexive response of their cognitive apparatus. Furthermore, these inferences are drawn with reference to a large body of background knowledge. This remarkable human ability seems paradoxical given the complexity of reasoning reported by researchers in artificial intelligence. It also poses a challenge for cognitive science and computational neuroscience: How can a system of simple and slow neuronlike elements represent a large (...)
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  • Evolution, selection, and cognition: From learning to parameter setting in biology and in the study of language.Massimo Piattelli-Palmarini - 1989 - Cognition 31 (1):1-44.
    Most biologists and some cognitive scientists have independently reached the conclusion that there is no such thing as learning in the traditional “instructive‘ sense. This is, admittedly, a somewhat extreme thesis, but I defend it herein the light of data and theories jointly extracted from biology, especially from evolutionary theory and immunology, and from modern generative grammar. I also point out that the general demise of learning is uncontroversial in the biological sciences, while a similar consensus has not yet been (...)
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  • Computation and Cognition: Toward a Foundation for Cognitive Science.John Haugeland - 1987 - Philosophy of Science 54 (2):309-311.
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  • The Language of Thought.Patricia Smith Churchland - 1975 - Noûs 14 (1):120-124.
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  • The Language of Thought.J. A. Fodor - 1978 - Critica 10 (28):140-143.
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  • Addition and subtraction by human infants. 358 (6389), 749-750. Xu, F., & Spelke, ES (2000). Large number discrimination in 6-month-old infants. [REVIEW]Karen Wynn - 1992 - Cognition 74 (1).
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  • The Human Semantic Potential.Terry Regier - 1998 - Trends in Cognitive Sciences 2 (2).
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  • Leda Cosmoides, and John Tooby, eds.Jerome H. Barkow - 1992 - In Jerome H. Barkow, Leda Cosmides & John Tooby (eds.), The Adapted Mind: Evolutionary Psychology and the Generation of Culture. Oxford University Press.
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  • Computational power and realistic cognitive development.David Buckingham & Thomas R. Shultz - 1996 - In Garrison W. Cottrell (ed.), Proceedings of the Eighteenth Annual Conference of The Cognitive Science Society. Lawrence Erlbaum. pp. 507--511.
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  • A precursor of language acquisition in young infants.Jacques Mehler, Peter Jusczyk, Ghislaine Lambertz, Nilofar Halsted, Josiane Bertoncini & Claudine Amiel-Tison - 1988 - Cognition 29 (2):143-178.
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  • Beyond modularity: Neural evidence for constructivist principles in development.Steven R. Quartz & Terrence J. Sejnowski - 1994 - Behavioral and Brain Sciences 17 (4):725-726.
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  • Constraints on Constraints: Surveying the Epigenetic Landscape.Frank C. Keil - 1990 - Cognitive Science 14 (1):135-168.
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  • Connectionist Models and Their Properties.J. A. Feldman & D. H. Ballard - 1982 - Cognitive Science 6 (3):205-254.
    Much of the progress in the fields constituting cognitive science has been based upon the use of explicit information processing models, almost exclusively patterned after conventional serial computers. An extension of these ideas to massively parallel, connectionist models appears to offer a number of advantages. After a preliminary discussion, this paper introduces a general connectionist model and considers how it might be used in cognitive science. Among the issues addressed are: stability and noise‐sensitivity, distributed decision‐making, time and sequence problems, and (...)
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  • The specificity of language skills.Jerry A. Fodor, Thomas G. Bever & Mary Garrett - 1974 - In Jerry Fodor, Bever A., Garrett T. G. & F. M. (eds.), The Psychology of Language: An Introduction to Psycholinguistics and Generative Grammar. Mcgraw-Hill.
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