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  1. Pitches that Wire Together Fire Together: Scale Degree Associations Across Time Predict Melodic Expectations.Niels J. Verosky & Emily Morgan - 2021 - Cognitive Science 45 (10):e13037.
    The ongoing generation of expectations is fundamental to listeners’ experience of music, but research into types of statistical information that listeners extract from musical melodies has tended to emphasize transition probabilities and n‐grams, with limited consideration given to other types of statistical learning that may be relevant. Temporal associations between scale degrees represent a different type of information present in musical melodies that can be learned from musical corpora using expectation networks, a computationally simple method based on activation and decay. (...)
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  • Musical instrument familiarity affects statistical learning of tone sequences.Stephen C. Van Hedger, Ingrid S. Johnsrude & Laura J. Batterink - 2022 - Cognition 218 (C):104949.
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  • Infant music perception: Domain-general or domain-specific mechanisms?Sandra E. Trehub & Erin E. Hannon - 2006 - Cognition 100 (1):73-99.
  • The relative importance of local and global structures in music perception.Barbara Tillmann & Emmanuel Bigand - 2004 - Journal of Aesthetics and Art Criticism 62 (2):211–222.
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  • 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 research, showing that music cognition (...)
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  • 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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  • Musical structure modulates semantic priming in vocal music.Bénédicte Poulin-Charronnat, Emmanuel Bigand, François Madurell & Ronald Peereman - 2005 - Cognition 94 (3):B67-B78.
  • Born to Speak and Sing: Musical Predictors of Language Development in Pre-schoolers.Nina Politimou, Simone Dalla Bella, Nicolas Farrugia & Fabia Franco - 2019 - Frontiers in Psychology 10.
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  • Tonal Qualia and the Evolution of Music.Piotr Podlipniak - 2017 - Avant: Trends in Interdisciplinary Studies 8 (1):33-44.
    The communicative phenomena of tonal music and speech observed in all human societies differ qualitatively from other human sound expressions. This difference consists mainly of the fact that both tonal music and speech are generative, i.e., they are composed of a limited number of discrete, perceptual units organized according to some tacit rules. In the case of tonal music, these units are experienced as pitch classes ordered in time. Listening to tonally organized pitch classes leads to the experience of specific (...)
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  • The nature of music from a biological perspective.Isabelle Peretz - 2006 - Cognition 100 (1):1-32.
  • Implicit learning and statistical learning: One phenomenon, two approaches.Pierre Perruchet & Sebastien Pacton - 2006 - Trends in Cognitive Sciences 10 (5):233-238.
  • 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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  • Incremental planning in sequence production.Caroline Palmer & Peter Q. Pfordresher - 2003 - Psychological Review 110 (4):683-712.
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  • Evolution of Tonal Organization in Music Optimizes Neural Mechanisms in Symbolic Encoding of Perceptual Reality. Part-2: Ancient to Seventeenth Century.Aleksey Nikolsky - 2016 - Frontiers in Psychology 7.
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  • What to Expect When the Unexpected Becomes Expected: Harmonic Surprise and Preference Over Time in Popular Music.Scott A. Miles, David S. Rosen, Shaun Barry, David Grunberg & Norberto Grzywacz - 2021 - Frontiers in Human Neuroscience 15.
    Previous work demonstrates that music with more surprising chords tends to be perceived as more enjoyable than music with more conventional harmonic structures. In that work, harmonic surprise was computed based upon a static distribution of chords. This would assume that harmonic surprise is constant over time, and the effect of harmonic surprise on music preference is similarly static. In this study we assess that assumption and establish that the relationship between harmonic surprise and music preference is not constant as (...)
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  • Context Effects on Musical Chord Categorization: Different Forms of Top‐Down Feedback in Speech and Music?Bob McMurray, Joel L. Dennhardt & Andrew Struck-Marcell - 2008 - Cognitive Science 32 (5):893-920.
    A critical issue in perception is the manner in which top‐down expectancies guide lower level perceptual processes. In speech, a common paradigm is to construct continua ranging between two phonetic endpoints and to determine how higher level lexical context influences the perceived boundary. We applied this approach to music, presenting participants with major/minor triad continua after brief musical contexts. Two experiments yielded results that differed from classic results in speech perception. In speech, context generally expands the category of the expected (...)
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  • The acquisition process of musical tonal schema: implications from connectionist modeling.Rie Matsunaga, Pitoyo Hartono & Jun-Ichi Abe - 2015 - Frontiers in Psychology 6.
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  • Sensorimotor Grounding of Musical Embodiment and the Role of Prediction: A Review.Pieter-Jan Maes - 2016 - Frontiers in Psychology 7.
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  • The nature of the memory buffer in implicit learning: Learning Chinese tonal symmetries.Feifei Li, Shan Jiang, Xiuyan Guo, Zhiliang Yang & Zoltan Dienes - 2013 - Consciousness and Cognition 22 (3):920-930.
    Previous research has established that people can implicitly learn chunks, which do not require a memory buffer to process. The present study explores the implicit learning of nonlocal dependencies generated by higher than finite-state grammars, specifically, Chinese tonal retrogrades and inversions , which do require buffers . People were asked to listen to and memorize artificial poetry instantiating one of the two grammars; after this training phase, people were informed of the existence of rules and asked to classify new poems, (...)
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  • Toward a Neural Basis of Music Perception – A Review and Updated Model.Stefan Koelsch - 2011 - Frontier in Psychology 2.
  • A Dynamical Model of Pitch Memory Provides an Improved Basis for Implied Harmony Estimation.Kim Ji Chul - 2017 - Frontiers in Psychology 8.
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  • Learning Harmony: The Role of Serial Statistics.Erin McMullen Jonaitis & Jenny R. Saffran - 2009 - Cognitive Science 33 (5):951-968.
    How do listeners learn about the statistical regularities underlying musical harmony? In traditional Western music, certain chords predict the occurrence of other chords: Given a particular chord, not all chords are equally likely to follow. In Experiments 1 and 2, we investigated whether adults make use of statistical information when learning new musical structures. Listeners were exposed to a novel musical system containing phrases generated using an artificial grammar. This new system contained statistical structure quite different from Western tonal music. (...)
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  • Predictive uncertainty in auditory sequence processing.Niels Chr Hansen & Marcus T. Pearce - 2014 - Frontiers in Psychology 5.
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  • Pitch Syntax Violations Are Linked to Greater Skin Conductance Changes, Relative to Timbral Violations – The Predictive Role of the Reward System in Perspective of Cortico–subcortical Loops.Edward J. Gorzelańczyk, Piotr Podlipniak, Piotr Walecki, Maciej Karpiński & Emilia Tarnowska - 2017 - Frontiers in Psychology 8.
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  • Studying Musical and Linguistic Prediction in Comparable Ways: The Melodic Cloze Probability Method.Allison R. Fogel, Jason C. Rosenberg, Frank M. Lehman, Gina R. Kuperberg & Aniruddh D. Patel - 2015 - Frontiers in Psychology 6.
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  • Perception of Western Musical Modes: A Chinese Study.Lele Fang, Junchen Shang & Nan Chen - 2017 - Frontiers in Psychology 8.
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  • The Relationship Between Artificial and Second Language Learning.Marc Ettlinger, Kara Morgan-Short, Mandy Faretta-Stutenberg & Patrick C. M. Wong - 2016 - Cognitive Science 40 (4):822-847.
    Artificial language learning experiments have become an important tool in exploring principles of language and language learning. A persistent question in all of this work, however, is whether ALL engages the linguistic system and whether ALL studies are ecologically valid assessments of natural language ability. In the present study, we considered these questions by examining the relationship between performance in an ALL task and second language learning ability. Participants enrolled in a Spanish language class were evaluated using a number of (...)
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  • The tonal function of a task-irrelevant chord modulates speed of visual processing.N. Escoffier & B. Tillmann - 2008 - Cognition 107 (3):1070-1083.
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  • A Recurrent Connectionist Model of Melody Perception: An Exploration Using TRACX2.Daniel Defays, Robert M. French & Barbara Tillmann - 2023 - Cognitive Science 47 (4):e13283.
    Are similar, or even identical, mechanisms used in the computational modeling of speech segmentation, serial image processing, and music processing? We address this question by exploring how TRACX2, a recognition‐based, recursive connectionist autoencoder model of chunking and sequence segmentation, which has successfully simulated speech and serial‐image processing, might be applied to elementary melody perception. The model, a three‐layer autoencoder that recognizes “chunks” of short sequences of intervals that have been frequently encountered on input, is trained on the tone intervals of (...)
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  • Differentiation of classical music requires little learning but rhythm.Simone Dalla Bella & Isabelle Peretz - 2005 - Cognition 96 (2):B65-B78.
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  • The effect of harmonic context on phoneme monitoring in vocal music.E. Bigand, B. Tillmann, B. Poulin, D. A. D'Adamo & F. Madurell - 2001 - Cognition 81 (1):B11-B20.
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  • Multidimensional scaling of emotional responses to music: The effect of musical expertise and of the duration of the excerpts.E. Bigand, S. Vieillard, F. Madurell, J. Marozeau & A. Dacquet - 2005 - Cognition and Emotion 19 (8):1113-1139.
  • Varieties of musical experience.Jamshed J. Bharucha, Meagan Curtis & Kaivon Paroo - 2006 - Cognition 100 (1):131-172.
  • Information‐Theoretic Properties of Auditory Sequences Dynamically Influence Expectation and Memory.Kat Agres, Samer Abdallah & Marcus Pearce - 2018 - Cognitive Science 42 (1):43-76.
    A basic function of cognition is to detect regularities in sensory input to facilitate the prediction and recognition of future events. It has been proposed that these implicit expectations arise from an internal predictive coding model, based on knowledge acquired through processes such as statistical learning, but it is unclear how different types of statistical information affect listeners’ memory for auditory stimuli. We used a combination of behavioral and computational methods to investigate memory for non-linguistic auditory sequences. Participants repeatedly heard (...)
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  • Twin Memory.Syed Ismyl Mahmood Rizvi - 2016 - International Journal of Mind, Brain and Cognition 7 (1-2):147-163.
    In this article, I examine a new concept of “Twin Memory’ which has emerged in memory classification research of conscious and unconscious memory representations. It is to analyse the presence of twin memory among the various memory systems, and also to provide a platform for the twin memory “anatomy” in the field of cognitive science, neuropsychology and neuroscience.
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