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  1. Birth of the Mind: How a Tiny Number of Genes Creates the Complexity of Human Thought.Gary Marcus - 2004 - Basic Books.
    A psychologist offers a detailed study of the genetic underpinnings of human thought, looking at the small number of genes that contain the instructions for building the vastly complex human brain to determine how these genes work, common misconceptions about genes, and their implications for the future of genetic engineering. 30,000 first printing.
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  • Essay Review: Sociobiology: Twenty-Five Years Later. [REVIEW]Edward O. Wilson - 1975 - Journal of the History of Biology 33 (3):577-584.
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  • The Harmonie Mind. From Neural Computation to Optimality-Theoretic Grammar.Paul Smolensky & Géraldine Legendre - 2009 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 40 (1):141-147.
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  • Not in Our Genes: Biology, Ideology and Human Nature.Steven Rose, Richard Charles Lewontin & Leon J. Kamin - 1984 - Pantheon.
    Three eminent scientists analyze the scientific, social, and political roots of biological determinism.
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  • (2000).M. S. Gazzaniga - 1995 - In Michael S. Gazzaniga (ed.), The Cognitive Neurosciences. MIT Press.
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  • The Cognitive Neurosciences III.Michael S. Gazzaniga (ed.) - 2004 - MIT Press.
    "The Cognitive Neurosciences III is a magnificent accomplishment. It covers topics trom ions to consciousness, from reflexes to social psychology. ...
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  • The neural basis of cognitive development: A constructivist manifesto.Steven R. Quartz & Terrence J. Sejnowski - 1997 - Behavioral and Brain Sciences 20 (4):537-556.
    How do minds emerge from developing brains? According to the representational features of cortex are built from the dynamic interaction between neural growth mechanisms and environmentally derived neural activity. Contrary to popular selectionist models that emphasize regressive mechanisms, the neurobiological evidence suggests that this growth is a progressive increase in the representational properties of cortex. The interaction between the environment and neural growth results in a flexible type of learning: minimizes the need for prespecification in accordance with recent neurobiological evidence (...)
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  • The Century of the Gene.Evelyn Fox Keller - 2001 - Journal of the History of Biology 34 (3):613-615.
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  • 5 Patterning of the Cerebral Cortex.Sonia Garel & John Lr Rubenstein - 2004 - In Michael S. Gazzaniga (ed.), The Cognitive Neurosciences III. MIT Press.
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  • The Spandrels of San Marco and the Panglossian Paradigm: A Critique of the Adaptationist Programme.S. J. Gould & R. C. Lewontin - 1994 - In Elliott Sober (ed.), Conceptual Issues in Evolutionary Biology. The Mit Press. Bradford Books. pp. 73-90.
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  • Split decisions.G. Wolford, M. B. Miller & M. S. Gazzaniga - 2004 - In Michael S. Gazzaniga (ed.), The Cognitive Neurosciences III. MIT Press. pp. 1189--1199.
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  • 3 Setting the Stage for Cognition: Genesis of the Primate Cerebral Cortex.Pasko Rakic, A. N. G. Sbc & Joshua Breunig - 2004 - In Michael S. Gazzaniga (ed.), The Cognitive Neurosciences III. MIT Press. pp. 33.
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  • Newborns' preferential tracking of face-like stimuli and its subsequent decline.Mark H. Johnson, Suzanne Dziurawiec, Hadyn Ellis & John Morton - 1991 - Cognition 40 (1-2):1-19.
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  • Genes and the development of neural networks underlying cognitive processes.J. Fossella & M. I. Posner - 2004 - In Michael S. Gazzaniga (ed.), The Cognitive Neurosciences III. MIT Press. pp. 1255--66.
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