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  1. The biological basis of speech: What to infer from talking to the animals.J. D. Trout - 2001 - Psychological Review 108 (3):523-549.
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  • Foundational Tuning: How Infants' Attention to Speech Predicts Language Development.Athena Vouloumanos & Suzanne Curtin - 2014 - Cognitive Science 38 (8):1675-1686.
    Orienting biases for speech may provide a foundation for language development. Although human infants show a bias for listening to speech from birth, the relation of a speech bias to later language development has not been established. Here, we examine whether infants' attention to speech directly predicts expressive vocabulary. Infants listened to speech or non-speech in a preferential listening procedure. Results show that infants' attention to speech at 12 months significantly predicted expressive vocabulary at 18 months, while indices of general (...)
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  • The function of phenomenal states: Supramodular interaction theory.Ezequiel Morsella - 2005 - Psychological Review 112 (4):1000-1021.
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  • Realität und Wirklichkeit. Zur Ontologie geteilter Welten.Tom Poljansek - 2022 - Transcript Verlag.
    Dass wir alle in einer gemeinsamen Wirklichkeit leben, setzen wir meist unhinterfragt voraus. Sehen Andere die Welt dann doch einmal anders, mag es uns scheinen, als sähen sie diese einfach nicht so, wie sie wirklich ist. Schwerer fällt uns anzuerkennen, dass andere zuweilen in ganz anderen Wirklichkeiten unterwegs sind als wir selbst. - Tom Poljansek zeigt, wie sich die Vorstellung einer Pluralität menschlicher Wirklichkeiten mit der Annahme einer wahrnehmungsunabhängigen Realität vereinbaren lässt, ohne sich in einen Relativismus der vielen Wirklichkeiten zu (...)
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  • Audio–visual speech perception is special.Jyrki Tuomainen, Tobias S. Andersen, Kaisa Tiippana & Mikko Sams - 2005 - Cognition 96 (1):B13-B22.
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  • Linear correlates in the speech signal: The orderly output constraint.Harvey M. Sussman, David Fruchter, Jon Hilbert & Joseph Sirosh - 1998 - Behavioral and Brain Sciences 21 (2):241-259.
    Neuroethological investigations of mammalian and avian auditory systems have documented species-specific specializations for processing complex acoustic signals that could, if viewed in abstract terms, have an intriguing and striking relevance for human speech sound categorization and representation. Each species forms biologically relevant categories based on combinatorial analysis of information-bearing parameters within the complex input signal. This target article uses known neural models from the mustached bat and barn owl to develop, by analogy, a conceptualization of human processing of consonant plus (...)
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  • Orofacial somatosensory inputs modulate word segmentation in lexical decision.Rintaro Ogane, Jean-Luc Schwartz & Takayuki Ito - 2020 - Cognition 197 (C):104163.
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  • Ineffability of qualia: A straightforward naturalistic explanation.Zoltán Jakab - 2000 - Consciousness and Cognition 9 (3):329-351.
    In this paper I offer an explanation of the ineffability (linguistic inexpressibility) of sensory experiences. My explanation is put in terms of computational functionalism and standard externalist theories of representational content. As I will argue, many or most sensory experiences are representational states without constituent structure. This property determines both the representational function these states can serve and the information that can be extracted from them when they are processed. Sensory experiences can indicate the presence of certain external states of (...)
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  • (1 other version)What Are You Waiting For? Real‐Time Integration of Cues for Fricatives Suggests Encapsulated Auditory Memory.Marcus E. Galle, Jamie Klein-Packard, Kayleen Schreiber & Bob McMurray - 2019 - Cognitive Science 43 (1):e12700.
    Speech unfolds over time, and the cues for even a single phoneme are rarely available simultaneously. Consequently, to recognize a single phoneme, listeners must integrate material over several hundred milliseconds. Prior work contrasts two accounts: (a) a memory buffer account in which listeners accumulate auditory information in memory and only access higher level representations (i.e., lexical representations) when sufficient information has arrived; and (b) an immediate integration scheme in which lexical representations can be partially activated on the basis of early (...)
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  • (1 other version)What Are You Waiting For? Real‐Time Integration of Cues for Fricatives Suggests Encapsulated Auditory Memory.Marcus E. Galle, Jamie Klein-Packard, Kayleen Schreiber & Bob McMurray - 2019 - Cognitive Science 43 (1):e12700.
    Speech unfolds over time, and the cues for even a single phoneme are rarely available simultaneously. Consequently, to recognize a single phoneme, listeners must integrate material over several hundred milliseconds. Prior work contrasts two accounts: (a) a memory buffer account in which listeners accumulate auditory information in memory and only access higher level representations (i.e., lexical representations) when sufficient information has arrived; and (b) an immediate integration scheme in which lexical representations can be partially activated on the basis of early (...)
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