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  1. Origins of the Qualitative Aspects of Consciousness: Evolutionary Answers to Chalmers' Hard Problem.Jonathan Y. Tsou - 2012 - In Liz Stillwaggon Swan (ed.), Origins of mind. New York: Springer. pp. 259--269.
    According to David Chalmers, the hard problem of consciousness consists of explaining how and why qualitative experience arises from physical states. Moreover, Chalmers argues that materialist and reductive explanations of mentality are incapable of addressing the hard problem. In this chapter, I suggest that Chalmers’ hard problem can be usefully distinguished into a ‘how question’ and ‘why question,’ and I argue that evolutionary biology has the resources to address the question of why qualitative experience arises from brain states. From this (...)
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  • Carl Hempel.James Fetzer - forthcoming - Stanford Encyclopedia of Philosophy.
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  • (1 other version)Emotional responses to music: The need to consider underlying mechanisms.Patrik N. Juslin & Daniel Västfjäll - 2008 - Behavioral and Brain Sciences 31 (5):559-575.
    Research indicates that people value music primarily because of the emotions it evokes. Yet, the notion of musical emotions remains controversial, and researchers have so far been unable to offer a satisfactory account of such emotions. We argue that the study of musical emotions has suffered from a neglect of underlying mechanisms. Specifically, researchers have studied musical emotions without regard to how they were evoked, or have assumed that the emotions must be based on the mechanism for emotion induction, a (...)
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  • Language as shaped by the brain.Morten H. Christiansen & Nick Chater - 2008 - Behavioral and Brain Sciences 31 (5):489-509.
    It is widely assumed that human learning and the structure of human languages are intimately related. This relationship is frequently suggested to derive from a language-specific biological endowment, which encodes universal, but communicatively arbitrary, principles of language structure (a Universal Grammar or UG). How might such a UG have evolved? We argue that UG could not have arisen either by biological adaptation or non-adaptationist genetic processes, resulting in a logical problem of language evolution. Specifically, as the processes of language change (...)
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  • The epigenesis of meaning in human beings, and possibly in robots.Jordan Zlatev - 2001 - Minds and Machines 11 (2):155-195.
    This article addresses a classical question: Can a machine use language meaningfully and if so, how can this be achieved? The first part of the paper is mainly philosophical. Since meaning implies intentionality on the part of the language user, artificial systems which obviously lack intentionality will be `meaningless'. There is, however, no good reason to assume that intentionality is an exclusively biological property and thus a robot with bodily structures, interaction patterns and development similar to those of human beings (...)
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  • Music evoked emotions are different–more often aesthetic than utilitarian.Klaus Scherer & Marcel Zentner - 2008 - Behavioral and Brain Sciences 31 (5):595-596.
    We disagree with Juslin & Vll's (J&V's) thesis that music-evoked emotions are indistinguishable from other emotions in both their nature and underlying mechanisms and that music just induces some emotions more frequently than others. Empirical evidence suggests that frequency differences reflect the specific nature of music-evoked emotions: aesthetic and reactive rather than utilitarian and proactive. Additional mechanisms and determinants are suggested as predictors of emotions triggered by music.
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  • The evolution of enhanced conceptual complexity and of Broca’s area.P. Thomas Schoenemann - 2018 - Interaction Studies. Social Behaviour and Communication in Biological and Artificial Systemsinteraction Studies / Social Behaviour and Communication in Biological and Artificial Systemsinteraction Studies 19 (1-2):336-351.
    Evolutionary change occurs most often through the modification of pre-existing structures. What were the pre-existing circuits in our primate ancestors that paved the way for human language, and how did they change in the lineages leading to our present condition? Among the neural modifications that were critical for human language, there are two of special interest: The origin and evolution of the remarkably rich conceptual world that humans share to the exclusion of other primates, and the origin of neural circuitry (...)
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  • Brains, genes, and language evolution: A new synthesis.Morten H. Christiansen & Nick Chater - 2008 - Behavioral and Brain Sciences 31 (5):537-558.
    Our target article argued that a genetically specified Universal Grammar (UG), capturing arbitrary properties of languages, is not tenable on evolutionary grounds, and that the close fit between language and language learners arises because language is shaped by the brain, rather than the reverse. Few commentaries defend a genetically specified UG. Some commentators argue that we underestimate the importance of processes of cultural transmission; some propose additional cognitive and brain mechanisms that may constrain language and perhaps differentiate humans from nonhuman (...)
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  • A report on the workshop on complexity in linguistics.T. Gong & C. Coupé - unknown - Behavioral and Brain Sciences 31:489-509.
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  • (1 other version)Coevolution of lexicon and syntax from a simulation perspective.Tao Gong, James W. Minett, Jinyun Ke, John H. Holland & William S.-Y. Wang - 2005 - Complexity 10 (6):50-62.
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