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  1. 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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  • Prediction‐Based Learning and Processing of Event Knowledge.Ken McRae, Kevin S. Brown & Jeffrey L. Elman - 2021 - Topics in Cognitive Science 13 (1):206-223.
    McRae, Brown and Elman argue against the view that events are structured as frequently‐occurring sequences of world stimuli. They underline the importance of temporal structure defining event types and advance a more complex temporal structure, which allows for some variance in the component elements.
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  • The role of perspective in event segmentation.Khena M. Swallow, Jovan T. Kemp & Ayse Candan Simsek - 2018 - Cognition 177 (C):249-262.
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  • Experiences of Duration and Cognitive Penetrability.Carrie Figdor - 2020 - In Dimitria Gatzia & Berit Brogaard (eds.), The Epistemology of Non-visual Perception. Oxford, U.K.: Oxford University Press. pp. 188-212.
    This paper considers the cognitive penetrability of our experiences of the durations of everyday events. I defend an account of subjective duration based in contemporary psychological and neurobiological research. I show its philosophical adequacy by demonstrating its utility in explain-ing the phenomenology of duration experiences. I then consider whether cognitive penetrability is a problem for these experiences. I argue that, to the contrary, the problem presupposes a relationship between perception and belief that duration perceptions and beliefs do not exhibit. In-stead, (...)
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  • Predictive Processing and the Phenomenology of Time Consciousness: A Hierarchical Extension of Rick Grush’s Trajectory Estimation Model.Wanja Wiese - 2017 - Philosophy and Predictive Processing.
    This chapter explores to what extent some core ideas of predictive processing can be applied to the phenomenology of time consciousness. The focus is on the experienced continuity of consciously perceived, temporally extended phenomena (such as enduring processes and successions of events). The main claim is that the hierarchy of representations posited by hierarchical predictive processing models can contribute to a deepened understanding of the continuity of consciousness. Computationally, such models show that sequences of events can be represented as states (...)
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  • The role of spatial boundaries in shaping long-term event representations.Aidan J. Horner, James A. Bisby, Aijing Wang, Katrina Bogus & Neil Burgess - 2016 - Cognition 154 (C):151-164.
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  • An Empirical and Computational Investigation of Perceiving and Remembering Event Temporal Relations.Shulan Lu, Derek Harter & Arthur C. Graesser - 2009 - Cognitive Science 33 (3):345-373.
    Events have beginnings, ends, and often overlap in time. A major question is how perceivers come to parse a stream of multimodal information into meaningful units and how different event boundaries may vary event processing. This work investigates the roles of these three types of event boundaries in constructing event temporal relations. Predictions were made based on how people would err according to the beginning state, end state, and overlap heuristic hypotheses. Participants viewed animated events that include all the logical (...)
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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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  • 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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  • Acquiring Contextualized Concepts: A Connectionist Approach.Saskia van Dantzig, Antonino Raffone & Bernhard Hommel - 2011 - Cognitive Science 35 (6):1162-1189.
    Conceptual knowledge is acquired through recurrent experiences, by extracting statistical regularities at different levels of granularity. At a fine level, patterns of feature co-occurrence are categorized into objects. At a coarser level, patterns of concept co-occurrence are categorized into contexts. We present and test CONCAT, a connectionist model that simultaneously learns to categorize objects and contexts. The model contains two hierarchically organized CALM modules (Murre, Phaf, & Wolters, 1992). The first module, the Object Module, forms object representations based on co-occurrences (...)
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  • Tea With Milk? A Hierarchical Generative Framework of Sequential Event Comprehension.Gina R. Kuperberg - 2021 - Topics in Cognitive Science 13 (1):256-298.
    Inspired by, and in close relation with, the contributions of this special issue, Kuperberg elegantly links event comprehension, production, and learning. She proposes an overarching hierarchical generative framework of processing events enabling us to make sense of the world around us and to interact with it in a competent manner.
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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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  • Using network science to provide insights into the structure of event knowledge.Kevin S. Brown, Kara E. Hannah, Nickolas Christidis, Mikayla Hall-Bruce, Ryan A. Stevenson, Jeffrey L. Elman & Ken McRae - 2024 - Cognition 251 (C):105845.
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  • Visual Heuristics for Verb Production: Testing a Deep‐Learning Model With Experiments in Japanese.Franklin Chang, Tomoko Tatsumi, Yuna Hiranuma & Colin Bannard - 2023 - Cognitive Science 47 (8):e13324.
    Tense/aspect morphology on verbs is often thought to depend on event features like telicity, but it is not known how speakers identify these features in visual scenes. To examine this question, we asked Japanese speakers to describe computer‐generated animations of simple actions with variation in visual features related to telicity. Experiments with adults and children found that they could use goal information in the animations to select appropriate past and progressive verb forms. They also produced a large number of different (...)
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  • Flexible shaping: How learning in small steps helps.Kai A. Krueger & Peter Dayan - 2009 - Cognition 110 (3):380-394.
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  • Incrementality and Prediction in Human Sentence Processing.Gerry T. M. Altmann & Jelena Mirković - 2009 - Cognitive Science 33 (4):583-609.
    We identify a number of principles with respect to prediction that, we argue, underpin adult language comprehension: (a) comprehension consists in realizing a mapping between the unfolding sentence and the event representation corresponding to the real‐world event being described; (b) the realization of this mapping manifests as the ability to predict both how the language will unfold, and how the real‐world event would unfold if it were being experienced directly; (c) concurrent linguistic and nonlinguistic inputs, and the prior internal states (...)
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  • The influence of context boundaries on memory for the sequential order of events.Sarah DuBrow & Lila Davachi - 2013 - Journal of Experimental Psychology: General 142 (4):1277.
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  • Prediction Error During Functional and Non-Functional Action Sequences: A Computational Exploration of Ritual and Ritualized Event Processing.Kristoffer L. Nielbo & Jesper Sørensen - 2013 - Journal of Cognition and Culture 13 (3-4):347-365.
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  • Emotional state dynamics impacts temporal memory.Jingyi Wang & Regina C. Lapate - forthcoming - Cognition and Emotion.
    Emotional fluctuations are ubiquitous in everyday life, but precisely how they sculpt the temporal organisation of memories remains unclear. Here, we designed a novel task – the Emotion Boundary Task – wherein participants viewed sequences of negative and neutral images surrounded by a colour border. We manipulated perceptual context (border colour), emotional-picture valence, as well as the direction of emotional-valence shifts (i.e., shifts from neutral-to-negative and negative-to-neutral events) to create events with a shared perceptual and/or emotional context. We measured memory (...)
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  • Eye Movements Reveal the Influence of Event Structure on Reading Behavior.Benjamin Swets & Christopher A. Kurby - 2016 - Cognitive Science 40 (2):466-480.
    When we read narrative texts such as novels and newspaper articles, we segment information presented in such texts into discrete events, with distinct boundaries between those events. But do our eyes reflect this event structure while reading? This study examines whether eye movements during the reading of discourse reveal how readers respond online to event structure. Participants read narrative passages as we monitored their eye movements. Several measures revealed that event structure predicted eye movements. In two experiments, we found that (...)
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  • Developing PFC Representations Using Reinforcement Learning.Jeremy R. Reynolds & Randall C. O’Reilly - 2009 - Cognition 113 (3):281-292.
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  • Emergent Goal‐Anticipatory Gaze in Infants via Event‐Predictive Learning and Inference.Christian Gumbsch, Maurits Adam, Birgit Elsner & Martin V. Butz - 2021 - Cognitive Science 45 (8).
    Cognitive Science, Volume 45, Issue 8, August 2021.
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  • Hierarchical models of behavior and prefrontal function.Matthew M. Botvinick - 2008 - Trends in Cognitive Sciences 12 (5):201.
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  • The role of relational triggers in event perception.Lewis J. Baker & Daniel T. Levin - 2015 - Cognition 136 (C):14-29.
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