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  1. The American Society for Aesthetics.[author unknown] - 1942 - New Scholasticism 16 (3):296-296.
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  • It's time for attentional control: Temporal expectation in the attentional blink.Fangshu Yao & Bin Zhou - 2023 - Consciousness and Cognition 107 (C):103461.
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  • Play along: effects of music and social interaction on word learning.Laura Verga, Emmanuel Bigand & Sonja A. Kotz - 2015 - Frontiers in Psychology 6.
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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.
  • Cognitive-Motor Dual Task Interference Effects on Declarative Memory: A Theory-Based Review.Phillip D. Tomporowski & Ahmed S. Qazi - 2020 - Frontiers in Psychology 11:524997.
    Bouts of exercise performed either prior to or immediately following study periods enhance encoding and learning. Empirical evidence supporting the benefits of interventions that simultaneously pair physical activity with material to be learned is not conclusive, however. A narrative, theory-based review of dual-task experiments evaluated studies in terms of arousal theories, attention theories, cognitive-energetic theories, and entrainment theories. The pattern of the results of these studies suggests that cognitive-motor interference can either impair or enhance memory of semantic information and the (...)
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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 of tonality: A self-organizing approach.Barbara Tillmann, Jamshed J. Bharucha & Emmanuel Bigand - 2000 - Psychological Review 107 (4):885-913.
  • Recognition Memory is Improved by a Structured Temporal Framework During Encoding.Sathesan Thavabalasingam, Edward B. O’Neil, Zheng Zeng & Andy C. H. Lee - 2015 - Frontiers in Psychology 6.
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  • Detecting Temporal Change in Dynamic Sounds: On the Role of Stimulus Duration, Speed, and Emotion.Annett Schirmer, Nicolas Escoffier, Xiaoqin Cheng, Yenju Feng & Trevor B. Penney - 2015 - Frontiers in Psychology 6.
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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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  • Music and Its Inductive Power: A Psychobiological and Evolutionary Approach to Musical Emotions.Mark Reybrouck & Tuomas Eerola - 2017 - Frontiers in Psychology 8.
    The aim of this contribution is to broaden the concept of musical meaning from an abstract and emotionally neutral cognitive representation to an emotion-integrating description that is related to the evolutionary approach to music. Starting from the dispositional machinery for dealing with music as a temporal and sounding phenomenon, musical emotions are considered as adaptive responses to be aroused in human beings as the product of neural structures that are specialized for their processing. A theoretical and empirical background is provided (...)
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  • Probing the cognitive representation of musical time: Structural constraints on the perception of timing perturbations.Bruno H. Repp - 1992 - Cognition 44 (3):241-281.
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  • On the perceptual organization of speech.Robert E. Remez, Philip E. Rubin, Stefanie M. Berns & Jennifer S. Pardo - 1994 - Psychological Review 101 (1):129-156.
  • Musical structure modulates semantic priming in vocal music.Bénédicte Poulin-Charronnat, Emmanuel Bigand, François Madurell & Ronald Peereman - 2005 - Cognition 94 (3):B67-B78.
  • Hearing what the body feels: Auditory encoding of rhythmic movement.Jessica Phillips-Silver & Laurel J. Trainor - 2007 - Cognition 105 (3):533-546.
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  • Attention to the passage of time.Ian Phillips - 2012 - Philosophical Perspectives 26 (1):277-308.
  • 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 music an ideal object for studying the (...)
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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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  • Retroactive adjustment of perceived time.Minal Patel & Maria Chait - 2011 - Cognition 119 (1):125-130.
    Accurately timing acoustic events in dynamic scenes is fundamental to scene analysis. To detect events in busy scenes, listeners must often identify a change in the pattern of ongoing fluctuation, resulting in many ubiquitous events being detected later than when they occurred. This raises the question of how delayed detection time affects the manner in which such events are perceived relative to other events in the environment. To model these situations, we use sequences of tone-pips with a time-frequency pattern that (...)
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  • The impact of cognitive load on operatic singers' timing performance.Muzaffer Çorlu, Pieter-Jan Maes, Chris Muller, Katty Kochman & Marc Leman - 2015 - Frontiers in Psychology 6.
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  • Neural Entrainment to Auditory Imagery of Rhythms.Haruki Okawa, Kaori Suefusa & Toshihisa Tanaka - 2017 - Frontiers in Human Neuroscience 11.
  • Listeners are sensitive to the speech breathing time series: Evidence from a gap detection task.Alexis Deighton MacIntyre & Sophie K. Scott - 2022 - Cognition 225 (C):105171.
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  • Musical Scales in Tone Sequences Improve Temporal Accuracy.Min S. Li & Massimiliano Di Luca - 2018 - Frontiers in Psychology 9.
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  • Reduced Memory Representations for Music.Edward W. Large, Caroline Palmėr & Jordan B. Pollack - 1995 - Cognitive Science 19 (1):53-96.
    We address the problem of musical variation (identification of different musical sequences as variations) and its implications for mental representations of music. According to reductionist theories, listeners judge the structural importance of musical events while forming mental representations. These judgments may result from the production of reduced memory representations that retain only the musical gist. In a study of improvised music performance, pianists produced variations on melodies. Analyses of the musical events retained across variations provided support for the reductionist account (...)
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  • Multiple Looks of Auditory Empty Durations Both Improve and Impair Temporal Sensitivity.Tsuyoshi Kuroda, Daiki Yoshioka, Tomoya Ueda & Makoto Miyazaki - 2018 - Frontiers in Human Neuroscience 12.
  • Musical grouping as prosodic implementation.Jonah Katz - 2023 - Linguistics and Philosophy 46 (4):959-988.
    This paper reviews evidence concerning the nature of grouping in music and language and their interactions with other linguistic and musical systems. I present brief typological surveys of the relationship between constituency and acoustic parameters in language and music, drawing from a wide variety of languages and musical genres. The two domains both involve correspondence between auditory discontinuities and group boundaries, reflecting the Gestalt principles of proximity and similarity, as well as a nested, hierarchical organization of constituents. Typically, computational-level theories (...)
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  • Probabilistic modelling of microtiming perception.Thomas Kaplan, Lorenzo Jamone & Marcus Pearce - 2023 - Cognition 239 (C):105532.
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  • Auditory attention to frequency and time: an analogy to visual local–global stimuli.Timothy Justus & Alexandra List - 2005 - Cognition 98 (1):31-51.
    Two priming experiments demonstrated exogenous attentional persistence to the fundamental auditory dimensions of frequency (Experiment 1) and time (Experiment 2). In a divided-attention task, participants responded to an independent dimension, the identification of three-tone sequence patterns, for both prime and probe stimuli. The stimuli were specifically designed to parallel the local–global hierarchical letter stimuli of [Navon D. (1977). Forest before trees: The precedence of global features in visual perception. Cognitive Psychology, 9, 353–383] and the task was designed to parallel subsequent (...)
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  • Further Correspondences and Similarities of Shamanism and Cognitive Science: Mental Representation, Implicit Processing, and Cognitive Structures.Timothy L. Hubbard - 2003 - Anthropology of Consciousness 14 (1):40-74.
    Properties of mental representation are related to findings in cognitive science and ideas in shamanism. A selective review of research in cognitive science suggests visual images and spatial memory preserve important functional information regarding physical principles and the behavior of objects in the natural world, and notions of second‐order isomorphism and the perceptual cycle developed to account for such findings are related to shamanic experience. Possible roles of implicit processes in shamanic cognition, and the idea that shamanic experience may involve (...)
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  • Consequences of predictable temporal structure in multi-task situations.Daniela Gresch, Sage E. P. Boettcher, Anna C. Nobre & Freek van Ede - 2022 - Cognition 225 (C):105156.
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  • Temporal cognition and the phenomenology of time: A multiplicative function for apparent duration.Joseph Glicksohn - 2001 - Consciousness and Cognition 10 (1):1-25.
    The literature on time perception is discussed. This is done with reference both to the ''cognitive-timer'' model for time estimation and to the subjective experience of apparent duration. Three assumptions underlying the model are scrutinized. I stress the strong interplay among attention, arousal, and time perception, which is at the base of the cognitive-timer model. It is suggested that a multiplicative function of two key components (the number of subjective time units and their size) should predict apparent duration. Implications for (...)
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  • Rhythmic synchrony and mediated interaction: towards a framework of rhythm in embodied interaction. [REVIEW]Satinder P. Gill - 2012 - AI and Society 27 (1):111-127.
    Our everyday interactions increasingly involve both embodied face-to-face communication and various forms of mediated and distributed communication such as email, skype, and facebook. In daily face-to-face communications, we are connected in rhythm and synchrony at multiple levels ranging from the moment-by-moment continuity of timed syllables to emergent body and vocal rhythms of pragmatic sense-making. Our human capacity to synchronize with each other may be essential for our survival as social beings. Moving our bodies and voices together in time embodies a (...)
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  • Neural correlates of intentional switching from ternary to binary meter in a musical hemiola pattern.Takako Fujioka, Brian C. Fidali & Bernhard Ross - 2014 - Frontiers in Psychology 5.
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  • Probing the Underlying Principles of Perceived Immanent Accents Using a Modeling Approach.Anders Friberg, Erica Bisesi, Anna Rita Addessi & Mario Baroni - 2019 - Frontiers in Psychology 10.
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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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  • Music, emotion, and time perception: the influence of subjective emotional valence and arousal?Sylvie Droit-Volet, Danilo Ramos, José L. O. Bueno & Emmanuel Bigand - 2013 - Frontiers in Psychology 4.
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  • The development of rhythmic attending in auditory sequences: attunement, referent period, focal attending.Carolyn Drake, Mari Riess Jones & Clarisse Baruch - 2000 - Cognition 77 (3):251-288.
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  • The development of rhythmic attending in auditory sequences: theory and research.Carolyn Drake, Mari Riess Jones & Clarisse Baruch - 2000 - Cognition 77 (3):251-288.
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  • Motor Reproduction of Time Interval Depends on Internal Temporal Cues in the Brain: Sensorimotor Imagery in Rhythm.Tatsuya Daikoku, Yuji Takahashi, Nagayoshi Tarumoto & Hideki Yasuda - 2018 - Frontiers in Psychology 9.
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  • Beat-induced fluctuations in auditory cortical beta-band activity: using EEG to measure age-related changes.Laura K. Cirelli, Dan Bosnyak, Fiona C. Manning, Christina Spinelli, Cã©Line Marie, Takako Fujioka, Ayda Ghahremani & Laurel J. Trainor - 2014 - Frontiers in Psychology 5.
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  • Unpredicted Pitch Modulates Beta Oscillatory Power during Rhythmic Entrainment to a Tone Sequence.Andrew Chang, Dan J. Bosnyak & Laurel J. Trainor - 2016 - Frontiers in Psychology 7.
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  • Look at the Beat, Feel the Meter: Top–Down Effects of Meter Induction on Auditory and Visual Modalities.Alexandre Celma-Miralles, Robert F. de Menezes & Juan M. Toro - 2016 - Frontiers in Human Neuroscience 10.
  • Got rhythm… for better and for worse. Cross-modal effects of auditory rhythm on visual word recognition.Renaud Brochard, Maxime Tassin & Daniel Zagar - 2013 - Cognition 127 (2):214-219.
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  • A Computational Model of Immanent Accent Salience in Tonal Music.Erica Bisesi, Anders Friberg & Richard Parncutt - 2019 - Frontiers in Psychology 10.
  • 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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  • Varieties of musical experience.Jamshed J. Bharucha, Meagan Curtis & Kaivon Paroo - 2006 - Cognition 100 (1):131-172.
  • Implicit and explicit representations of time.John A. Michon - 1990 - In Richard A. Block (ed.), Cognitive Models of Psychological Time. Lawrence Erlbaum. pp. 37--58.
  • Escala multidimensional aplicada aos estudos de apreciação musical1.Raquel Cocenas da Silva, José Lino Oliveira Bueno, Emmanuel Bigand & Paul Molin - 2009 - Paideia (Misc) 19 (43):153-158.
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