Results for 'music cognition'

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  1.  5
    Mapping dreams in a computational space: A phrase-level model for analyzing Fight/Flight and other typical situations in dream reports.Maja Gutman Music, Pavan Holur & Kelly Bulkeley - 2022 - Consciousness and Cognition 106 (C):103428.
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  2.  95
    Extended music cognition.Luke Kersten - 2017 - Philosophical Psychology 30 (8):1078-1103.
    Discussions of extended cognition have increasingly engaged with the empirical and methodological practices of cognitive science and psychology. One topic that has received increased attention from those interested in the extended mind is music cognition. A number of authors have argued that music not only shapes emotional and cognitive processes, but also that it extends those processes beyond the bodily envelope. The aim of this paper is to evaluate the case for extended music cognition. (...)
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  3.  7
    The Routledge companion to music cognition.Richard Ashley & Renee Timmers (eds.) - 2017 - New York, NY: Routledge.
    This Companion addresses fundamental questions about the nature of music from a psychological perspective. Music cognition is presented as the field that investigates the psychological, physiological, and physical processes that allow music to take place, seeking to explain how and why music has such powerful and mysterious effects on us. This volume provides a comprehensive overview of research in music cognition, balancing accessibility with depth and sophistication. A diverse range of global scholars-music (...)
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  4.  56
    Music Cognition and the Cognitive Sciences.Marcus Pearce & Martin Rohrmeier - 2012 - Topics in Cognitive Science 4 (4):468-484.
    Why should music be of interest to cognitive scientists, and what role does it play in human cognition? We review three factors that make music an important topic for cognitive scientific research. First, music is a universal human trait fulfilling crucial roles in everyday life. Second, music has an important part to play in ontogenetic development and human evolution. Third, appreciating and producing music simultaneously engage many complex perceptual, cognitive, and emotional processes, rendering (...) an ideal object for studying the mind. We propose an integrated status for music cognition in the Cognitive Sciences and conclude by reviewing challenges and big questions in the field and the way in which these reflect recent developments. (shrink)
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  5.  63
    Enactive Music Cognition: Background and Research Themes.J. R. Matyja & A. Schiavio - 2013 - Constructivist Foundations 8 (3):351-357.
    Context: The past few years have presented us with a growing amount of theoretical research (yet that is often based on neuroscientific developments) in the field of enactive music cognition. Problem: Current cognitivist and embodied approaches to music cognition suffer, in our opinion, from a too firm commitment to the explanatory role of mental representations in musical experience. This particular problem can be solved by adopting an enactive approach to music cognition. Method: We present (...)
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  6. Music cognition: a developmental perspective.Stephanie M. Stalinski & E. Glenn Schellenberg - 2012 - Topics in Cognitive Science 4 (4):485-497.
    Although music is universal, there is a great deal of cultural variability in music structures. Nevertheless, some aspects of music processing generalize across cultures, whereas others rely heavily on the listening environment. Here, we discuss the development of musical knowledge, focusing on four themes: (a) capabilities that are present early in development; (b) culture-general and culture-specific aspects of pitch and rhythm processing; (c) age-related changes in pitch perception; and (d) developmental changes in how listeners perceive emotion in (...)
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  7. Music Cognition as a Window to the World.Mark Reybrouck - 2011 - Semiotics:55-62.
    Worldviews are windows to the world. They can be static in referring to visual connotations as suggested by their name, but they can hold a dynamic and genetic view as well. As such, they imply a fundamental cognitive orientation, involving selection, interpretation and interaction with the world. What matters, in this view, is a kind of sense-making or semiotization of the world. -/- The semiotization of the “sonic world”, accordingly, can be approached from different epistemological positions: is music reducible (...)
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  8.  18
    Music cognition and aesthetic attitudes.Harold E. Fiske - 1993 - Lewiston, N.Y.: E. Mellen Press.
    This study develops a theory about the interaction between music cognition and affective response. The theory demonstrates how musical thinking, knowledge, and decision-making result in qualitative musical behaviour. It reports new findings about the cognitive representation of musical structures, imagery as an auditory-phenomenological descriptor of music, aesthetic response as an outcome of specific cognitive decisions, and the value of music in cross-cultural human development. Each of the seven essays identifies a problem in music psychology that (...)
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  9.  50
    Embodied Music Cognition: Trouble Ahead, Trouble Behind.Jakub R. Matyja - 2016 - Frontiers in Psychology 7.
    The aim of this thesis is to argue in favour of the embodied music cognition paradigm, as opposed to traditional theories of musical mind. The thesis consists of three chapters. The goal of the first chapter is to examine computational music cognition, focusing on the main problem of this approach. In the second chapter, I will present and discuss Marc Leman’s EMC, that may serve as a response to the problems of the computational view of the (...)
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  10. Music cognition.Caroline Palmer & Melissa K. Jungers - 2003 - In L. Nadel (ed.), Encyclopedia of Cognitive Science. Nature Publishing Group.
     
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  11.  11
    Miscommunication of science: music cognition research in the popular press.Samuel A. Mehr - 2015 - Frontiers in Psychology 6.
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  12.  8
    Reaction Time Data in Music Cognition: Comparison of Pilot Data From Lab, Crowdsourced, and Convenience Web Samples.James Armitage & Tuomas Eerola - 2020 - Frontiers in Psychology 10.
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  13.  25
    Cross-cultural music cognition: cognitive methodology applied to North Sami yoiks.C. Krumhansl - 2000 - Cognition 76 (1):13-58.
  14.  11
    Computer models of (music) cognition.Geraint A. Wiggins - 2011 - In Patrick Rebuschat, Martin Rohrmeier, John A. Hawkins & Ian Cross (eds.), Language and Music as Cognitive Systems. Oxford University Press. pp. 169--188.
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  15. A biosemiotic and ecological approach to music cognition: Event perception between auditory listening and cognitive economy.Mark Reybrouck - 2005 - Axiomathes 15 (2):229-266.
    This paper addresses the question whether we can conceive of music cognition in ecosemiotic terms. It claims that music knowledge must be generated as a tool for adaptation to the sonic world and calls forth a shift from a structural description of music as an artifact to a process-like approach to dealing with music. As listeners, we are observers who construct and organize our knowledge and bring with us our observational tools. What matters is not (...)
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  16.  12
    Musical sense-making. Music cognition between perceptual experience and cognitive economy.Mark Reybrouck - forthcoming - Estetyka I Krytyka.
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  17. Disorders of musical cognition.Lauren Stewart, Katharina von Kriegstein, Simone Dalla Bella, Jason D. Warren & Griffiths & D. Timothy - 2008 - In Susan Hallam, Ian Cross & Michael Thaut (eds.), Oxford Handbook of Music Psychology. Oxford University Press.
     
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  18.  3
    Toward Studying Music Cognition with Information Retrieval Techniques: Lessons Learned from the OpenMIIR Initiative.Sebastian Stober - 2017 - Frontiers in Psychology 8.
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  19. A Biosemiotic and Ecological Approach to Music Cognition: Event Perception Between Auditory Listening and Cognitive Economy. [REVIEW]Mark Reybrouck - 2005 - Axiomathes. An International Journal in Ontology and Cognitive Systems. 15 (2):229-266.
    This paper addresses the question whether we can conceive of music cognition in ecosemiotic terms. It claims that music knowledge must be generated as a tool for adaptation to the sonic world and calls forth a shift from a structural description of music as an artifact to a process-like approach to dealing with music. As listeners, we are observers who construct and organize our knowledge and bring with us our observational tools. What matters is not (...)
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  20.  60
    Understanding Music: The Nature and Limits of Musical Cognition.Hans Heinrich Eggebrecht - 2010 - Ashgate.
    Understanding Music summarizes Eggebrecht's thoughts on the relationship between music and cognition.
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  21.  12
    Music Makes the World Go Round: The Impact of Musical Training on Non-musical Cognitive Functions—A Review.Sarah Benz, Roberta Sellaro, Bernhard Hommel & Lorenza S. Colzato - 2015 - Frontiers in Psychology 6.
  22.  49
    A gray matter of taste: Sound perception, music cognition, and Baumgarten's aesthetics.Alessia Pannese - 2012 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 43 (3):594-601.
    Music is an ancient and ubiquitous form of human expression. One important component for which music is sought after is its aesthetic value, whose appreciation has typically been associated with largely learned, culturally determined factors, such as education, exposure, and social pressure. However, neuroscientific evidence shows that the aesthetic response to music is often associated with automatic, physically- and biologically-grounded events, such as shivers, chills, increased heart rate, and motor synchronization, suggesting the existence of an underlying biological (...)
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  23. The splintered paradigm, a semiotic critique of recent approaches to music cognition.R. Hatten - 1990 - Semiotica 81 (1-2):145-178.
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  24.  7
    Music and embodied cognition: listening, moving, feeling, and thinking.Arnie Cox - 2016 - Indianapolis: Indiana University Press.
    Mimetic comprehension -- Mimetic comprehension of music -- Metaphor and related means of reasoning -- Pitch height -- Temporal motion and musical motion -- Perspectives on musical motion -- Music and the external senses -- Musical affect -- Applications -- Review and implications.
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  25.  26
    Hans Heinrich Eggebrecht, Understanding Music: The Nature and Limits of Musical Cognition, trans. Richard Evans.Harold Fiske - 2012 - Philosophy of Music Education Review 20 (1):87.
  26.  13
    Editorial: Bridging Music Informatics With Music Cognition.Naresh N. Vempala & Frank A. Russo - 2018 - Frontiers in Psychology 9.
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  27.  2
    Music, mind and machine: Studies in computer music, music cognition and artificial intelligence.Stephen W. Smoliar - 1995 - Artificial Intelligence 79 (2):361-371.
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  28. Music and Cognitive Extension.Luke Kersten - 2014 - Empirical Musicology Review 9 (3-4):193-202.
    Extended cognition holds that cognitive processes sometimes leak into the world (Dawson, 2013). A recent trend among proponents of extended cognition has been to put pressure on phenomena thought to be safe havens for internalists (Sneddon, 2011; Wilson, 2010; Wilson & Lenart, 2014). This paper attempts to continue this trend by arguing that music perception is an extended phenomenon. It is claimed that because music perception involves the detection of musical invariants within an “acoustic array”, the (...)
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  29. Music and the Evolution of Embodied Cognition.Stephen Asma - forthcoming - In M. Clasen J. Carroll (ed.), Evolutionary Perspectives on Imaginative Culture. pp. pp 163-181.
    Music is a universal human activity. Its evolution and its value as a cognitive resource are starting to come into focus. This chapter endeavors to give readers a clearer sense of the adaptive aspects of music, as well as the underlying cognitive and neural structures. Special attention is given to the important emotional dimensions of music, and an evolutionary argument is made for thinking of music as a prelinguistic embodied form of cognition—a form that is (...)
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  30.  21
    Musical friends and foes: The social cognition of affiliation and control in improvised interactions.Jean-Julien Aucouturier & Clément Canonne - 2017 - Cognition 161:94-108.
    A recently emerging view in music cognition holds that music is not only social and participatory in its production, but also in its perception, i.e. that music is in fact perceived as the sonic trace of social rela- tions between a group of real or virtual agents. While this view appears compatible with a number of intriguing music cognitive phenomena, such as the links between beat entrainment and prosocial behaviour or between strong musical emotions and (...)
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  31. 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 (...)
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  32. Music and Language Perception: Expectations, Structural Integration, and Cognitive Sequencing.Barbara Tillmann - 2012 - Topics in Cognitive Science 4 (4):568-584.
    Music can be described as sequences of events that are structured in pitch and time. Studying music processing provides insight into how complex event sequences are learned, perceived, and represented by the brain. Given the temporal nature of sound, expectations, structural integration, and cognitive sequencing are central in music perception (i.e., which sounds are most likely to come next and at what moment should they occur?). This paper focuses on similarities in music and language cognition (...)
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  33.  38
    Music perception and cognition.Timothy Justus & Jamshed Bharucha - 2002 - In S. Yantis & H. Pashler (eds.), Stevens’ Handbook of Experimental Psychology, Volume 1: Sensation and Perception (Third Edition). New York: Wiley. pp. 453–492.
    This chapter reviews the field of music perception and cognition, which is the area of cognitive psychology devoted to determining the mental mechanisms underlying our appreciation of music. The chapter begins with the study of pitch, including the constructive nature of pitch perception and the cognitive structures reflecting its simultaneous and sequential organization in Western tonal‐harmonic music. This is followed by reviews of temporal organization in music, and of musical performance and ability. Next, literature concerning (...)
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  34. Music and the brain: music and cognitive abilities.Reyna L. Gordon & Cyrille L. Magne - 2017 - In Richard Ashley & Renee Timmers (eds.), The Routledge companion to music cognition. New York, NY: Routledge.
     
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  35.  64
    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 (...)
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  36. Music, Emotions and the Influence of the Cognitive Sciences.Tom Cochrane - 2010 - Philosophy Compass 5 (11):978-988.
    This article reviews some of the ways in which philosophical problems concerning music can be informed by approaches from the cognitive sciences (principally psychology and neuroscience). Focusing on the issues of musical expressiveness and the arousal of emotions by music, the key philosophical problems and their alternative solutions are outlined. There is room for optimism that while current experimental data does not always unambiguously satisfy philosophical scrutiny, it can potentially support one theory over another, and in some cases (...)
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  37. Music, language, and cognition: and other essays in the aesthetics of music.Peter Kivy - 2007 - New York: Oxford University Press.
    I. History. Mainwaring's Handel : its relation to British aesthetics -- Herbert Spencer and a musical dispute -- II. Opera and film. Handel's operas : the form of feeling and the problem of appreciation -- Anti-semitism in Meistersinger? -- Speech, song, and the transparency of medium : on operatic metaphysics -- III. Performance. On the historically informed performance -- Ars perfecta : toward perfection in musical performance? -- IV. Interpretation. Another go at the meaning of music : Koopman, Davies, (...)
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  38. The Cognitive Neuroscience of Music.Isabelle Peretz & Robert J. Zatorre (eds.) - 2003 - Oxford University Press UK.
    Music offers a unique opportunity to better understand the organization of the human brain. Like language, music exists in all human societies. Like language, music is a complex, rule-governed activity that seems specific to humans, and associated with a specific brain architecture. Yet unlike most other high-level functions of the human brain - and unlike language - music is a skill at which only a minority of people become proficient. The study of music as a (...)
     
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  39.  12
    Cognitive, Motor and Social Factors of Music Instrument Training Programs for Older Adults’ Improved Wellbeing.Jennifer MacRitchie, Matthew Breaden, Andrew J. Milne & Sarah McIntyre - 2020 - Frontiers in Psychology 10.
    Given emerging evidence that learning to play a musical instrument may lead to a number of cognitive benefits for older adults, it is important to clarify how these training programs can be delivered optimally and meaningfully. The effective acquisition of musical and domain-general skills by later-life learners may be influenced by social, cultural and individual factors within the learning environment. The current study examines the effects of a 10-week piano training program on healthy older adult novices’ cognitive and motor skills, (...)
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  40. Music, Philosophy, and Cognitive Science.Diana Raffman - unknown
    Philosophers of music (and also music theorists) have recognized for a long time that research in the sciences, especially psychology, might have import for their own work. (Langer 1941 and Meyer 1956 are good examples.) However, while scientists had been interested in music as a subject of research (e.g., Helmholtz 1912, Seashore 1938), the discipline known as psychology of music, or more broadly cognitive science of music, came into its own only around 1980 with the (...)
     
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  41.  7
    Music and neuro-cognitive deficits in depression.Prathima A. Raghavendra, Shantala Hegde, Mariamma Philip & Muralidharan Kesavan - 2022 - Frontiers in Psychology 13.
    BackgroundCognitive deficits are one of the core features of major depressive disorder that play crucial role in functional recovery. Studies have explored cognitive deficits in MDD, however, given inconsistent results, especially in mild-moderate MDD. Recently, studies have explored music as cognitive ability in various clinical conditions. In MDD, large focus has been on evaluating emotion deficits and just a handful on music cognition. With growing evidence on use of music based intervention to target cognitive deficits, it (...)
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  42.  35
    Exploring Cognitive Relations Between Prediction in Language and Music.Aniruddh D. Patel & Emily Morgan - 2017 - Cognitive Science 41 (S2):303-320.
    The online processing of both music and language involves making predictions about upcoming material, but the relationship between prediction in these two domains is not well understood. Electrophysiological methods for studying individual differences in prediction in language processing have opened the door to new questions. Specifically, we ask whether individuals with musical training predict upcoming linguistic material more strongly and/or more accurately than non-musicians. We propose two reasons why prediction in these two domains might be linked: Musicians may have (...)
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  43.  6
    Cognitive Foundations of Musical Pitch.Carol L. Krumhansl - 2001 - Oxford University Press USA.
    This book addresses the central problem of music cognition: how listeners' responses move beyond mere registration of auditory events to include the organization, interpretation, and remembrance of these events in terms of their function in a musical context of pitch and rhythm. Equally important, the work offers an analysis of the relationship between the psychological organization of music and its internal structure. Combining over a decade of original research on music cognition with an overview of (...)
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  44. Me, Music, and I: Embodied and Enactive Cognition meets Music. Review of “Music and Consciousness”.J. Matyja - 2012 - Constructivist Foundations 8 (1):129-131.
    Upshot: The fact that both “consciousness” and “music” are quite elusive terms makes the attempt to explain the nature (or even the existence of) “musical consciousness” a compelling quest. The papers in this book tackle these problems in an engaging way, ranging from sociology of music to drug altered music cognition. Some also apply enactive and ecological approaches to music cognition, which makes the book an interesting read for constructivists.
     
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  45.  96
    Music Perception and Cognition: A Review of Recent Cross‐Cultural Research. [REVIEW]Catherine J. Stevens - 2012 - Topics in Cognitive Science 4 (4):653-667.
    Experimental investigations of cross-cultural music perception and cognition reported during the past decade are described. As globalization and Western music homogenize the world musical environment, it is imperative that diverse music and musical contexts are documented. Processes of music perception include grouping and segmentation, statistical learning and sensitivity to tonal and temporal hierarchies, and the development of tonal and temporal expectations. The interplay of auditory, visual, and motor modalities is discussed in light of synchronization and (...)
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  46.  25
    Incommensurability, Music and Continuum: A Cognitive Approach.Luigi Borzacchini - 2007 - Archive for History of Exact Sciences 61 (3):273-302.
    The discovery of incommensurability by the Pythagoreans is usually ascribed to geometric or arithmetic questions, but already Tannery stressed the hypothesis that it had a music-theoretical origin. In this paper, I try to show that such hypothesis is correct, and, in addition, I try to understand why it was almost completely ignored so far.
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  47.  12
    Musical Activity During Life Is Associated With Multi-Domain Cognitive and Brain Benefits in Older Adults.Adriana Böttcher, Alexis Zarucha, Theresa Köbe, Malo Gaubert, Angela Höppner, Slawek Altenstein, Claudia Bartels, Katharina Buerger, Peter Dechent, Laura Dobisch, Michael Ewers, Klaus Fliessbach, Silka Dawn Freiesleben, Ingo Frommann, John Dylan Haynes, Daniel Janowitz, Ingo Kilimann, Luca Kleineidam, Christoph Laske, Franziska Maier, Coraline Metzger, Matthias H. J. Munk, Robert Perneczky, Oliver Peters, Josef Priller, Boris-Stephan Rauchmann, Nina Roy, Klaus Scheffler, Anja Schneider, Annika Spottke, Stefan J. Teipel, Jens Wiltfang, Steffen Wolfsgruber, Renat Yakupov, Emrah Düzel, Frank Jessen, Sandra Röske, Michael Wagner, Gerd Kempermann & Miranka Wirth - 2022 - Frontiers in Psychology 13.
    Regular musical activity as a complex multimodal lifestyle activity is proposed to be protective against age-related cognitive decline and Alzheimer’s disease. This cross-sectional study investigated the association and interplay between musical instrument playing during life, multi-domain cognitive abilities and brain morphology in older adults from the DZNE-Longitudinal Cognitive Impairment and Dementia Study study. Participants reporting having played a musical instrument across three life periods were compared to controls without a history of musical instrument playing, well-matched for reserve proxies of education, (...)
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  48.  30
    Cognitive representation of “musical fractals”: Processing hierarchy and recursion in the auditory domain.Mauricio Dias Martins, Bruno Gingras, Estela Puig-Waldmueller & W. Tecumseh Fitch - 2017 - Cognition 161 (C):31-45.
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  49.  3
    Music and neuroscience research for mental health, cognition, and development: Ways forward.Maria Agapaki, Elizabeth A. Pinkerton & Efthymios Papatzikis - 2022 - Frontiers in Psychology 13.
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  50. Music and cognitive evolution.Ian Cross - 2009 - In Robin Dunbar & Louise Barrett (eds.), Oxford Handbook of Evolutionary Psychology. Oxford University Press.
     
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