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  1. Implicit Learning and Acquisition of Music.Martin Rohrmeier & Patrick Rebuschat - 2012 - Topics in Cognitive Science 4 (4):525-553.
    Implicit learning is a core process for the acquisition of a complex, rule‐based environment from mere interaction, such as motor action, skill acquisition, or language. A body of evidence suggests that implicit knowledge governs music acquisition and perception in nonmusicians and musicians, and that both expert and nonexpert participants acquire complex melodic, harmonic, and other features from mere exposure. While current findings and computational modeling largely support the learning of chunks, some results indicate learning of more complex structures. Despite the (...)
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  • Sweet Anticipation: Music and the Psychology of Expectation.William Benjamin - 2007 - Journal of Aesthetics and Art Criticism 65 (3):333-335.
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  • Musicality: Instinct or Acquired Skill?Gary F. Marcus - 2012 - Topics in Cognitive Science 4 (4):498-512.
    Is the human tendency toward musicality better thought of as the product of a specific, evolved instinct or an acquired skill? Developmental and evolutionary arguments are considered, along with issues of domain‐specificity. The article also considers the question of why humans might be consistently and intensely drawn to music if musicality is not in fact the product of a specifically evolved instinct.
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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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  • Fundamental issues in the evolutionary psychology of music: Assessing innateness and domain-specificity.Timothy Justus & Jeffrey Hutsler - 2005 - Music Perception 23 (1):1–27.
    Evolutionary psychology often does not sufficiently document the innate constraint and domain specificity required for strong adaptationist argument. We develop these criteria within the domain of music. First, we advocate combining computational, developmental, cross-cultural, and neuroscience research to address the ways in which a domain is innately constrained. Candidate constraints in music include the importance of the octave and other simple pitch ratios, the categorization of the octave into tones, the importance of melodic contour, tonal hierarchies, and principles of grouping (...)
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  • Cognitive science and the cultural nature of music.Ian Cross - 2012 - Topics in Cognitive Science 4 (4):668-677.
    The vast majority of experimental studies of music to date have explored music in terms of the processes involved in the perception and cognition of complex sonic patterns that can elicit emotion. This paper argues that this conception of music is at odds both with recent Western musical scholarship and with ethnomusicological models, and that it presents a partial and culture‐specific representation of what may be a generic human capacity. It argues that the cognitive sciences must actively engage with the (...)
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  • Learning and Liking of Melody and Harmony: Further Studies in Artificial Grammar Learning.Psyche Loui - 2012 - Topics in Cognitive Science 4 (4):554-567.
    Much of what we know and love about music is based on implicitly acquired mental representations of musical pitches and the relationships between them. While previous studies have shown that these mental representations of music can be acquired rapidly and can influence preference, it is still unclear which aspects of music influence learning and preference formation. This article reports two experiments that use an artificial musical system to examine two questions: (1) which aspects of music matter most for learning, and (...)
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  • Cognition and the evolution of music: Pitfalls and prospects.Henkjan Honing & Annemie Ploeger - 2012 - Topics in Cognitive Science 4 (4):513-524.
    What was the role of music in the evolutionary history of human beings? We address this question from the point of view that musicality can be defined as a cognitive trait. Although it has been argued that we will never know how cognitive traits evolved (Lewontin, 1998), we argue that we may know the evolution of music by investigating the fundamental cognitive mechanisms of musicality, for example, relative pitch, tonal encoding of pitch, and beat induction. In addition, we show that (...)
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  • Tracing the dynamic changes in perceived tonal organization in a spatial representation of musical keys.Carol L. Krumhansl & Edward J. Kessler - 1982 - Psychological Review 89 (4):334-368.
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  • Auditory expectation: The information dynamics of music perception and cognition.Marcus T. Pearce & Geraint A. Wiggins - 2012 - Topics in Cognitive Science 4 (4):625-652.
    Following in a psychological and musicological tradition beginning with Leonard Meyer, and continuing through David Huron, we present a functional, cognitive account of the phenomenon of expectation in music, grounded in computational, probabilistic modeling. We summarize a range of evidence for this approach, from psychology, neuroscience, musicology, linguistics, and creativity studies, and argue that simulating expectation is an important part of understanding a broad range of human faculties, in music and beyond.
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  • Are consonant intervals music to their ears? Spontaneous acoustic preferences in a nonhuman primate.J. Mcdermott & M. Hauser - 2004 - Cognition 94 (2):B11-B21.
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