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  1. Working memory capacity for continuous events: The root of temporal compression in episodic memory?Nathan Leroy, Steve Majerus & Arnaud D'Argembeau - 2024 - Cognition 247 (C):105789.
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  • Perception of Happening: How the Brain Deals with the No‐History Problem.Peter A. White - 2021 - Cognitive Science 45 (12):e13068.
    In physics, the temporal dimension has units of infinitesimally brief duration. Given this, how is it possible to perceive things, such as motion, music, and vibrotactile stimulation, that involve extension across many units of time? To address this problem, it is proposed that there is what is termed an “information construct of happening” (ICOH), a simultaneous representation of recent, temporally differentiated perceptual information on the millisecond time scale. The main features of the ICOH are (i) time marking, semantic labeling of (...)
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  • Culture influences how people divide continuous sensory experience into events.Khena M. Swallow & Qi Wang - 2020 - Cognition 205 (C):104450.
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  • Event Representations and Predictive Processing: The Role of the Midline Default Network Core.David Stawarczyk, Matthew A. Bezdek & Jeffrey M. Zacks - 2021 - Topics in Cognitive Science 13 (1):164-186.
    Stawarczyk, Bezdek, and Zacks offer neuroscience evidence for a midline default network core, which appears to coordinate internal, top‐down mentation with externally‐triggered, bottom‐up attention in a push‐pull relationship. The network may enable the flexible pursuance of thoughts tuned into or detached from the current environment.
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  • Structuring Memory Through Inference‐Based Event Segmentation.Yeon Soon Shin & Sarah DuBrow - 2021 - Topics in Cognitive Science 13 (1):106-127.
    Shin and DuBrow propose that a key principle driving event segmentation relates to causal analyses: specifically, that experiences that are attributed as having the same underlying cause are grouped together into an event. This offers an alternative to accounts of segmentation based on prediction error.
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  • Speaking for seeing: Sentence structure guides visual event apprehension.Sebastian Sauppe & Monique Flecken - 2021 - Cognition 206 (C):104516.
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  • From Event Representation to Linguistic Meaning.Ercenur Ünal, Yue Ji & Anna Papafragou - 2021 - Topics in Cognitive Science 13 (1):224-242.
    A fundamental aspect of human cognition is the ability to parse our constantly unfolding experience into meaningful representations of dynamic events and to communicate about these events with others. How do we communicate about events we have experienced? Influential theories of language production assume that the formulation and articulation of a linguistic message is preceded by preverbal apprehension that captures core aspects of the event. Yet the nature of these preverbal event representations and the way they are mapped onto language (...)
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  • The state of the onion: Grammatical aspect modulates object representation during event comprehension.Julia Misersky, Ksenija Slivac, Peter Hagoort & Monique Flecken - 2021 - Cognition 214 (C):104744.
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  • Do doorways really matter: Investigating memory benefits of event segmentation in a virtual learning environment.Matthew R. Logie & David I. Donaldson - 2021 - Cognition 209:104578.
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  • Distinctive features of experiential time: Duration, speed and event density.Marianna Lamprou-Kokolaki, Yvan Nédélec, Simon Lhuillier & Virginie van Wassenhove - 2024 - Consciousness and Cognition 118 (C):103635.
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  • Bayesian Surprise Predicts Human Event Segmentation in Story Listening.Manoj Kumar, Ariel Goldstein, Sebastian Michelmann, Jeffrey M. Zacks, Uri Hasson & Kenneth A. Norman - 2023 - Cognitive Science 47 (10):e13343.
    Event segmentation theory posits that people segment continuous experience into discrete events and that event boundaries occur when there are large transient increases in prediction error. Here, we set out to test this theory in the context of story listening, by using a deep learning language model (GPT‐2) to compute the predicted probability distribution of the next word, at each point in the story. For three stories, we used the probability distributions generated by GPT‐2 to compute the time series of (...)
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  • Prominent Inhibitory Projections Guide Sensorimotor Computation: An Invertebrate Perspective.Samantha Hughes & Tansu Celikel - 2019 - Bioessays 41 (10):1900088.
    From single‐cell organisms to complex neural networks, all evolved to provide control solutions to generate context‐ and goal‐specific actions. Neural circuits performing sensorimotor computation to drive navigation employ inhibitory control as a gating mechanism as they hierarchically transform (multi)sensory information into motor actions. Here, the focus is on this literature to critically discuss the proposition that prominent inhibitory projections form sensorimotor circuits. After reviewing the neural circuits of navigation across various invertebrate species, it is argued that with increased neural circuit (...)
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  • Grounding the neurobiology of language in first principles: The necessity of non-language-centric explanations for language comprehension.Uri Hasson, Giovanna Egidi, Marco Marelli & Roel M. Willems - 2018 - Cognition 180 (C):135-157.
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  • Neural Markers of Event Boundaries.David K. Bilkey & Charlotte Jensen - 2021 - Topics in Cognitive Science 13 (1):128-141.
    Topics in Cognitive Science, Volume 13, Issue 1, Page 128-141, January 2021.
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  • How Does the Mind Render Streaming Experience as Events?Dare A. Baldwin & Jessica E. Kosie - 2021 - Topics in Cognitive Science 13 (1):79-105.
    Events—the experiences we think we are having and recall having had—are constructed; they are not what actually occurs. What occurs is ongoing dynamic, multidimensional, sensory flow, which is somehow transformed via psychological processes into structured, describable, memorable units of experience. But what is the nature of the redescription processes that fluently render dynamic sensory streams as event representations? How do such processes cope with the ubiquitous novelty and variability that characterize sensory experience? How are event‐rendering skills acquired and how do (...)
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