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  1. Cultural Innovations and Demographic Change.Peter J. Richerson - unknown
    Demography plays a large role in cultural evolution through its effects on the effective rate of innovation. If we assume that useful inventions are rare, then small isolated societies will have low rates of invention. In small populations, complex technology will tend to be lost as a result of random loss or incomplete transmission (the Tasmanian effect). Large populations have more inventors and are more resistant to loss by chance. If human populations can grow freely, then a population-technology-population positive feedback (...)
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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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  • A Mind So Rare: The Evolution of Human Consciousness.Merlin Donald - 2001 - W.W. Norton.
    Presenting the cultural and neuronal forces that power our distinctively human modes of awareness, the author proposes that the human mind is a hybrid product of interweaving a super-complex form of matter (the brain) with an invisible symbolic web (culture) to form a cognitive network. Reprint. 11,500 first printing.
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  • The Secret of Our Success: How Culture Is Driving Human Evolution, Domesticating Our Species, and Making Us Smarter.J. Henrich - unknown
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  • Language, Cognition, and Human Nature.Steven Pinker - 2015 - Oxford University Press USA.
    Language, Cognition, and Human Nature collects together for the first time much of Steven Pinker's most influential scholarly work on language and cognition. Pinker's seminal research explores the workings of language and its connections to cognition, perception, social relationships, child development, human evolution, and theories of human nature. This eclectic collection spans Pinker's thirty-year career, exploring his favorite themes in greater depth and scientific detail. It includes thirteen of Pinker's classic articles, ranging over topics such as language development in children, (...)
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  • Thought in a Hostile World: The Evolution of Human Cognition.Kim Sterelny - 2003 - Wiley-Blackwell.
    (From the Press's Website) -/- Winner of the 2004 Lakatos Prize, Thought in a Hostile World is an exploration of the evolution of cognition, especially human cognition, by one of today's foremost philosophers of biology and of mind. Features an exploration of the evolution of human cognition. Written by one of today’s foremost philosophers of mind and language. Presents a set of analytic tools for thinking about cognition and its evolution. Offers a critique of nativist, modular versions of evolutionary psychology, (...)
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  • Social Brain, Distributed Mind.Robin Dunbar, Clive Gamble & John Gowlett - 2010 - OUP/British Academy.
    This volume explores how hominin 'brains' became recognisably human 'minds', comparing perspectives from the humanities, social, and biological sciences. New ideas associated with the social brain hypothesis and the concept of the distributed mind, allow us to envisage what might have happened in this crucial phase leading up to modern humans.
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  • Art and cognitive evolution.Merlin Donald - 2006 - In Mark Turner (ed.), The Artful Mind: Cognitive Science and the Riddle of Human Creativity. Oup Usa. pp. 1.
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  • Cultural Niche Construction: An Introduction.Kevin N. Laland & Michael J. O’Brien - 2011 - Biological Theory 6 (3):191-202.
    Niche construction is the process whereby organisms, through their activities and choices, modify their own and each other’s niches. By transforming natural-selection pressures, niche construction generates feedback in evolution at various different levels. Niche-constructing species play important ecological roles by creating habitats and resources used by other species and thereby affecting the flow of energy and matter through ecosystems—a process often referred to as “ecosystem engineering.” An important emphasis of niche construction theory (NCT) is that acquired characters play an evolutionary (...)
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  • How the Mind Works.Steven Pinker - 1997 - Norton.
    A provocative assessment of human thought and behavior, reissued with a new afterword, explores a range of conundrums from the ability of the mind to perceive three dimensions to the nature of consciousness, in an account that draws on ...
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  • Niche construction, biological evolution, and cultural change.Kevin N. Laland, John Odling-Smee & Marcus W. Feldman - 2000 - Behavioral and Brain Sciences 23 (1):131-146.
    We propose a conceptual model that maps the causal pathways relating biological evolution to cultural change. It builds on conventional evolutionary theory by placing emphasis on the capacity of organisms to modify sources of natural selection in their environment (niche construction) and by broadening the evolutionary dynamic to incorporate ontogenetic and cultural processes. In this model, phenotypes have a much more active role in evolution than generally conceived. This sheds light on hominid evolution, on the evolution of culture, and on (...)
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  • Thought in a Hostile World: The Evolution of Human Cognition.Kim Sterelny - 2007 - Philosophy and Phenomenological Research 74 (2):476-497.
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  • Man Makes Himself.V. Gordon Childe, A. Wolf, H. T. Pledge, George Perazich, Philip M. Field & J. D. Bernal - 1940 - Science and Society 4 (4):461-466.
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  • Coevolution of neocortical size, group size and language in humans.R. I. M. Dunbar - 1993 - Behavioral and Brain Sciences 16 (4):681-694.
    Group size is a function of relative neocortical volume in nonhuman primates. Extrapolation from this regression equation yields a predicted group size for modern humans very similar to that of certain hunter-gatherer and traditional horticulturalist societies. Groups of similar size are also found in other large-scale forms of contemporary and historical society. Among primates, the cohesion of groups is maintained by social grooming; the time devoted to social grooming is linearly related to group size among the Old World monkeys and (...)
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  • The cognitive niche: Coevolution of intelligence, sociality, and language.Steven Pinker - unknown
    Although Darwin insisted that human intelligence could be fully explained by the theory of evolution, the codiscoverer of natural selection, Alfred Russel Wallace, claimed that abstract intelligence was of no use to ancestral humans and could only be explained by intelligent design. Wallace’s apparent paradox can be dissolved with two hypotheses about human cognition. One is that intelligence is an adaptation to a knowledge-using, socially interdependent lifestyle, the “cognitive niche.” This embraces the ability to overcome the evolutionary fixed defenses of (...)
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  • Optimizing Engines: Rational Choice in the Neolithic?Kim Sterelny - 2015 - Philosophy of Science 82 (3):402-423.
    This article has both substantive and methodological goals. Methodologically, it shows that rational choice theory is an especially important tool for guiding research in contexts in which agents appear to be acting against their best interests. The Neolithic transition is one such case, and the article develops a substantive conception of that transition, illustrating the heuristic power of behavioral ecology.
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  • The Extended Evolutionary Synthesis: Its Structure, Assumptions and Predictions.Kevin Laland, Uller N., Feldman Tobias, W. Marcus, Kim Sterelny, Gerd Müller, Moczek B., Jablonka Armin, Odling-Smee Eva & John - 2015 - Proceedings of the Royal Society B: Biological Sciences 282 (1813):20151019.
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  • Social Networks and Social Complexity in Female-bonded Primates.Julia Lehmann, Katherine Andrews & Robin Dunbar - 2010 - In Lehmann Julia, Andrews Katherine & Dunbar Robin (eds.), Social Brain, Distributed Mind. pp. 57.
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