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  1. 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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  • Energetic trade‐offs between brain size and offspring production: Marsupials confirm a general mammalian pattern.Karin Isler - 2011 - Bioessays 33 (3):173-179.
    Recently, Weisbecker and Goswami presented the first comprehensive comparative analysis of brain size, metabolic rate, and development periods in marsupial mammals. In this paper, a strictly energetic perspective is applied to identify general mammalian correlates of brain size evolution. In both marsupials and placentals, the duration or intensity of maternal investment is a key correlate of relative brain size, but here I show that allomaternal energy subsidies may also play a role. In marsupials, an energetic constraint on brain size in (...)
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  • Developmental structure in brain evolution.Barbara L. Finlay, Richard B. Darlington & Nicholas Nicastro - 2001 - Behavioral and Brain Sciences 24 (2):263-278.
    How does evolution grow bigger brains? It has been widely assumed that growth of individual structures and functional systems in response to niche-specific cognitive challenges is the most plausible mechanism for brain expansion in mammals. Comparison of multiple regressions on allometric data for 131 mammalian species, however, suggests that for 9 of 11 brain structures taxonomic and body size factors are less important than covariance of these major structures with each other. Which structure grows biggest is largely predicted by a (...)
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  • False-belief understanding in infants.Renée Baillargeon, Rose M. Scott & Zijing He - 2010 - Trends in Cognitive Sciences 14 (3):110-118.
  • Machiavellian Intelligence: Social Expertise and the Evolution of Intellect in Monkeys, Apes, and Humans.Richard W. Byrne & Andrew Whiten (eds.) - 1988 - Oxford University Press.
    This book presents an alternative to conventional ideas about the evolution of the human intellect.
  • Social intelligence, human intelligence and niche construction.Kim Sterelny - 2007 - In Nathan Emery, Nicola Clayton & Chris Frith (eds.), Social Intelligence: From Brain to Culture. Oxford University Press.
  • Machiavellian Intelligence : Social Expertise and the Evolution of Intellect in Monkeys, Apes, and Humans.Richard W. Byrne & Andrew Whiten - 1988 - Revue Philosophique de la France Et de l'Etranger 179 (4):627-628.
  • Culture in great apes: using intricate complexity in feeding skills to trace the evolutionary origin of human technical prowess.Richard W. Byrne - 2007 - In Nathan Emery, Nicola Clayton & Chris Frith (eds.), Social Intelligence: From Brain to Culture. Oxford University Press.
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  • Cognitive adaptations of social bonding in birds.Nathan J. Emery, Amanda M. Seed, Auguste M. P. Von Bayern & Clayton & S. Nicola - 2007 - In Nathan Emery, Nicola Clayton & Chris Frith (eds.), Social Intelligence: From Brain to Culture. Oxford University Press.
     
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  • The adaptive value of soicality in mammalian agroups.Joan B. Silk - 2007 - In Nathan Emery, Nicola Clayton & Chris Frith (eds.), Social Intelligence: From Brain to Culture. Oxford University Press.
     
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