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  1. Roles of Technical Reasoning, Theory of Mind, Creativity, and Fluid Cognition in Cumulative Technological Culture.Emmanuel De Oliveira, Emanuelle Reynaud & François Osiurak - 2019 - Human Nature 30 (3):326-340.
    Cumulative technological culture can be defined as the progressive diversification, complexification, and enhancement of technological traits through generations. An outstanding issue is to specify the cognitive bases of this phenomenon. Based on the literature, we identified four potential cognitive factors: namely, theory-of-mind, technical-reasoning, creativity, and fluid-cognitive skills. The goal of the present study was to test which of these factors—or a combination thereof—best predicted the cumulative performance in two experimental, micro-society conditions differing in the nature of the interaction allowed between (...)
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  • Recursion, Language, and Starlings.Michael C. Corballis - 2007 - Cognitive Science 31 (4):697-704.
    It has been claimed that recursion is one of the properties that distinguishes human language from any other form of animal communication. Contrary to this claim, a recent study purports to demonstrate center‐embedded recursion in starlings. I show that the performance of the birds in this study can be explained by a counting strategy, without any appreciation of center‐embedding. To demonstrate that birds understand center‐embedding of sequences of the form AnBn (such as A1A2B2B1, or A3A4A5B5B4B3) would require not only that (...)
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  • Human Teaching and Cumulative Cultural Evolution.Christine A. Caldwell, Elizabeth Renner & Mark Atkinson - 2018 - Review of Philosophy and Psychology 9 (4):751-770.
    Although evidence of teaching behaviour has been identified in some nonhuman species, human teaching appears to be unique in terms of both the breadth of contexts within which it is observed, and in its responsiveness to needs of the learner. Similarly, cultural evolution is observable in other species, but human cultural evolution appears strikingly distinct. This has led to speculation that the evolutionary origins of these capacities may be causally linked. Here we provide an overview of contrasting perspectives on the (...)
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  • From monkey-like action recognition to human language: An evolutionary framework for neurolinguistics.Michael A. Arbib - 2005 - Behavioral and Brain Sciences 28 (2):105-124.
    The article analyzes the neural and functional grounding of language skills as well as their emergence in hominid evolution, hypothesizing stages leading from abilities known to exist in monkeys and apes and presumed to exist in our hominid ancestors right through to modern spoken and signed languages. The starting point is the observation that both premotor area F5 in monkeys and Broca's area in humans contain a “mirror system” active for both execution and observation of manual actions, and that F5 (...)
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  • Neural reuse: A fundamental organizational principle of the brain.Michael L. Anderson - 2010 - Behavioral and Brain Sciences 33 (4):245.
    An emerging class of theories concerning the functional structure of the brain takes the reuse of neural circuitry for various cognitive purposes to be a central organizational principle. According to these theories, it is quite common for neural circuits established for one purpose to be exapted (exploited, recycled, redeployed) during evolution or normal development, and be put to different uses, often without losing their original functions. Neural reuse theories thus differ from the usual understanding of the role of neural plasticity (...)
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  • Technical cognition, working memory and creativity.Thomas Wynn & Frederick L. Coolidge - 2014 - Pragmatics and Cognition 22 (1):45-63.
    This essay explores the nature and neurological basis of creativity in technical production. After presenting a model of expert technical cognition based in cognitive anthropology and cognitive psychology, the authors propose that craft production has three inherent sources of novelty — procedural drift, serendipitous error and fiddling. However, these are quite limited in their creative potential, which may help explain the virtual absence of innovation over the long millennia of the Palaeolithic. Innovation can be far more rapid and effective via (...)
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  • Archaeology and cognitive evolution.Thomas Wynn - 2002 - Behavioral and Brain Sciences 25 (3):389-402.
    Archaeology can provide two bodies of information relevant to the understanding of the evolution of human cognition – the timing of developments, and the evolutionary context of these developments. The challenge is methodological. Archaeology must document attributes that have direct implications for underlying cognitive mechanisms. One example of such a cognitive archaeology is found in spatial cognition. The archaeological record documents an evolutionary sequence that begins with ape-equivalent spatial abilities 2.5 million years ago and ends with the appearance of modern (...)
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  • Understanding and sharing intentions: The origins of cultural cognition.Michael Tomasello, Malinda Carpenter, Josep Call, Tanya Behne & Henrike Moll - 2005 - Behavioral and Brain Sciences 28 (5):675-691.
    We propose that the crucial difference between human cognition and that of other species is the ability to participate with others in collaborative activities with shared goals and intentions: shared intentionality. Participation in such activities requires not only especially powerful forms of intention reading and cultural learning, but also a unique motivation to share psychological states with others and unique forms of cognitive representation for doing so. The result of participating in these activities is species-unique forms of cultural cognition and (...)
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  • Before Cumulative Culture.Ceri Shipton & Mark Nielsen - 2015 - Human Nature 26 (3):331-345.
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  • A developmental model for the evolution of language and intelligence in early hominids.Sue Taylor Parker & Kathleen Rita Gibson - 1979 - Behavioral and Brain Sciences 2 (3):367-381.
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  • Tool use and affordance: Manipulation-based versus reasoning-based approaches.François Osiurak & Arnaud Badets - 2016 - Psychological Review 123 (5):534-568.
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  • Use of tools and misuse of embodied cognition: Reply to Buxbaum (2017).François Osiurak & Arnaud Badets - 2017 - Psychological Review 124 (3):361-368.
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  • The elephant in the room: What matters cognitively in cumulative technological culture.François Osiurak & Emanuelle Reynaud - 2020 - Behavioral and Brain Sciences 43:e156.
    Cumulative technological culture (CTC) refers to the increase in the efficiency and complexity of tools and techniques in human populations over generations. A fascinating question is to understand the cognitive origins of this phenomenon. Because CTC is definitely a social phenomenon, most accounts have suggested a series of cognitive mechanisms oriented toward the social dimension (e.g., teaching, imitation, theory of mind, and metacognition), thereby minimizing the technical dimension and the potential influence of non-social, cognitive skills. What if we have failed (...)
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  • Grasping the affordances, understanding the reasoning: Toward a dialectical theory of human tool use.François Osiurak, Christophe Jarry & Didier Le Gall - 2010 - Psychological Review 117 (2):517-540.
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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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