Results for 'computational modeling of emotion'

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  1.  9
    Anatomy and computational modeling of networks underlying cognitive-emotional interaction.Yohan J. John, Daniel Bullock, Basilis Zikopoulos & Helen Barbas - 2013 - Frontiers in Human Neuroscience 7.
  2.  47
    Challenges in developing computational models of emotion and consciousness.Eva Hudlicka - 2009 - International Journal of Machine Consciousness 1 (1):131-153.
    There is a long-standing debate regarding the nature of the relationship between emotions and consciousness. Majority of existing computational models of emotions largely avoid the issue, and generally do not explicitly address distinctions between the conscious and the unconscious components of emotions. This paper highlights the importance of developing an adequately differentiated vocabulary describing the mental states of interest, and their features and components, for the development of computational models of the relationships between emotions and consciousness. We discuss (...)
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  3.  13
    Guidelines for Computational Modeling of Friendship.William F. Clocksin - 2023 - Zygon 58 (4):1045-1061.
    Humans participate in an immense variety of relationships with other persons and other entities: human and nonhuman, living and nonliving, tangible and intangible, real and imagined. Participation in relationships is considered a key benchmark of personhood. Some of these relationships, particularly friendships, involve close emotional attachments, and some friendships have been described since antiquity as spiritual in nature. Different types of friendship depend upon factors such as proximity, social formality, physical intimacy, information exchanged, and the costs and benefits of maintaining (...)
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  4.  8
    Computational Process of Sharing Emotion: An Authentic Information Perspective.Shushi Namba, Wataru Sato, Koyo Nakamura & Katsumi Watanabe - 2022 - Frontiers in Psychology 13.
    Although results of many psychology studies have shown that sharing emotion achieves dyadic interaction, no report has explained a study of the transmission of authentic information from emotional expressions that can strengthen perceivers. For this study, we used computational modeling, which is a multinomial processing tree, for formal quantification of the process of sharing emotion that emphasizes the perception of authentic information for expressers’ feeling states from facial expressions. Results indicated that the ability to perceive authentic (...)
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  5. Modeling Listeners' Emotional Response to Music.Tuomas Eerola - 2012 - Topics in Cognitive Science 4 (4):607-624.
    An overview of the computational prediction of emotional responses to music is presented. Communication of emotions by music has received a great deal of attention during the last years and a large number of empirical studies have described the role of individual features (tempo, mode, articulation, timbre) in predicting the emotions suggested or invoked by the music. However, unlike the present work, relatively few studies have attempted to model continua of expressed emotions using a variety of musical features from (...)
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  6. Emotional Experience in the Computational Belief–Desire Theory of Emotion.Rainer Reisenzein - 2009 - Emotion Review 1 (3):214-222.
    Based on the belief that computational modeling (thinking in terms of representation and computations) can help to clarify controversial issues in emotion theory, this article examines emotional experience from the perspective of the Computational Belief–Desire Theory of Emotion (CBDTE), a computational explication of the belief–desire theory of emotion. It is argued that CBDTE provides plausible answers to central explanatory challenges posed by emotional experience, including: the phenomenal quality,intensity and object-directedness of emotional experience, the (...)
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  7.  15
    Emotional Valence Precedes Semantic Maturation of Words: A Longitudinal Computational Study of Early Verbal Emotional Anchoring.José Á Martínez-Huertas, Guillermo Jorge-Botana & Ricardo Olmos - 2021 - Cognitive Science 45 (7):e13026.
    We present a longitudinal computational study on the connection between emotional and amodal word representations from a developmental perspective. In this study, children's and adult word representations were generated using the latent semantic analysis (LSA) vector space model and Word Maturity methodology. Some children's word representations were used to set a mapping function between amodal and emotional word representations with a neural network model using ratings from 9‐year‐old children. The neural network was trained and validated in the child semantic (...)
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  8.  4
    Computational Modeling of the Segmentation of Sentence Stimuli From an Infant Word‐Finding Study.Daniel Swingley & Robin Algayres - 2024 - Cognitive Science 48 (3):e13427.
    Computational models of infant word‐finding typically operate over transcriptions of infant‐directed speech corpora. It is now possible to test models of word segmentation on speech materials, rather than transcriptions of speech. We propose that such modeling efforts be conducted over the speech of the experimental stimuli used in studies measuring infants' capacity for learning from spoken sentences. Correspondence with infant outcomes in such experiments is an appropriate benchmark for models of infants. We demonstrate such an analysis by applying (...)
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  9.  30
    Modeling Emotion Contagion within a Computational Cognitive Architecture.Ron Sun, Joseph Allen & Eric Werbin - 2022 - Journal of Cognition and Culture 22 (1-2):60-89.
    The issue of emotion contagion has been gaining attention. Humans can share emotions, for example, through gestures, through speech, or even through online text via social media. There have been computational models trying to capture emotion contagion. However, these models are limited as they tend to represent agents in a very simplified way. There exist also more complex models of agents and their emotions, but they are not yet addressing emotion contagion. We use a more psychologically (...)
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  10. Computational models of emotion. Marsella, S., Gratch, J., Petta & P. - 2010 - In Klaus R. Scherer, Tanja Bänziger & Etienne Roesch (eds.), A Blueprint for Affective Computing: A Sourcebook and Manual. Oxford University Press.
  11.  8
    The Role of Emotional Content and Perceptual Saliency During the Programming of Saccades Toward Faces.Léa Entzmann, Nathalie Guyader, Louise Kauffmann, Juliette Lenouvel, Clémence Charles, Carole Peyrin, Roman Vuillaume & Martial Mermillod - 2021 - Cognitive Science 45 (10):e13042.
    Previous studies have shown that the human visual system can detect a face and elicit a saccadic eye movement toward it very efficiently compared to other categories of visual stimuli. In the first experiment, we tested the influence of facial expressions on fast face detection using a saccadic choice task. Face‐vehicle pairs were simultaneously presented and participants were asked to saccade toward the target (the face or the vehicle). We observed that saccades toward faces were initiated faster, and more often (...)
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  12.  14
    Towards Computer Simulations of Virtue Ethics.Jeremiah A. Lasquety-Reyes - 2019 - Open Philosophy 2 (1):399-413.
    This article presents two approaches for computer simulations of virtue ethics in the context of agent-based modeling, a simple way and a complex way. The simple way represents virtues as numeric variables that are invoked in specific events or situations. This way can easily be implemented and included in social simulations. On the other hand, the complex way requires a PECS framework: physical, cognitive, emotional, and social components need to be implemented in agents. Virtue is the result of the (...)
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  13.  18
    Computational Modeling of Cognition and Behavior.Simon Farrell & Stephan Lewandowsky - 2017 - Cambridge University Press.
    Computational modeling is now ubiquitous in psychology, and researchers who are not modelers may find it increasingly difficult to follow the theoretical developments in their field. This book presents an integrated framework for the development and application of models in psychology and related disciplines. Researchers and students are given the knowledge and tools to interpret models published in their area, as well as to develop, fit, and test their own models. Both the development of models and key features (...)
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  14.  30
    Computational Models of Emotion Inference in Theory of Mind: A Review and Roadmap.Desmond C. Ong, Jamil Zaki & Noah D. Goodman - 2019 - Topics in Cognitive Science 11 (2):338-357.
    An important, but relatively neglected, aspect of human theory of mind is emotion inference: understanding how and why a person feels a certain why is central to reasoning about their beliefs, desires and plans. The authors review recent work that has begun to unveil the structure and determinants of emotion inference, organizing them within a unified probabilistic framework.
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  15.  23
    Computational modeling of interventions for developmental disorders.Michael S. C. Thomas, Anna Fedor, Rachael Davis, Juan Yang, Hala Alireza, Tony Charman, Jackie Masterson & Wendy Best - 2019 - Psychological Review 126 (5):693-726.
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  16. Dynamic mechanistic explanation: computational modeling of circadian rhythms as an exemplar for cognitive science.William Bechtel & Adele Abrahamsen - 2010 - Studies in History and Philosophy of Science Part A 41 (3):321-333.
    Two widely accepted assumptions within cognitive science are that (1) the goal is to understand the mechanisms responsible for cognitive performances and (2) computational modeling is a major tool for understanding these mechanisms. The particular approaches to computational modeling adopted in cognitive science, moreover, have significantly affected the way in which cognitive mechanisms are understood. Unable to employ some of the more common methods for conducting research on mechanisms, cognitive scientists’ guiding ideas about mechanism have developed (...)
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  17.  28
    Computational modeling of reading in semantic dementia: Comment on Woollams, Lambon Ralph, Plaut, and Patterson (2007).Max Coltheart, Jeremy J. Tree & Steven J. Saunders - 2010 - Psychological Review 117 (1):256-271.
  18. The computational modeling of inferential and referential competence.Fabrizio Calzavarini & Antonio Lieto - 2018 - In Fabrizio Calzavarini & Antonio Lieto (eds.), AISC 2018 Proceedings.
  19.  19
    Computational modeling of analogy: Destined ever to only be metaphor?Ann Speed - 2008 - Behavioral and Brain Sciences 31 (4):397-398.
    The target article by Leech et al. presents a compelling computational theory of analogy-making. However, there is a key difficulty that persists in theoretical treatments of analogy-making, computational and otherwise: namely, the lack of a detailed account of the neurophysiological mechanisms that give rise to analogy behavior. My commentary explores this issue.
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  20. Computer modeling of cognition: Levels of analysis.Michael Rw Dawson - 2002 - In Lynn Nadel (ed.), The Encyclopedia of Cognitive Science. Macmillan.
  21. Commentary on "Towards a Design-Based Analysis of Emotional Episodes".Maria Miceli & Cristiano Castelfranchi - 1996 - Philosophy, Psychiatry, and Psychology 3 (2):129-133.
    In lieu of an abstract, here is a brief excerpt of the content:Commentary on “Towards a Design-Based Analysis of Emotional Episodes”Cristiano Castelfranchi (bio) and Maria Miceli (bio)Keywordsgrief, suffering, attachment, agent architectureThis paper is significant in many respects: its approach (the design-based analysis); its proposed architecture; its description of grief; and its self-control/perturbance theory. We would offer some remarks on each of these aspects.AI: Back to the FutureAfter some years of crisis, AI seems now to have recovered its original challenging attitude (...)
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  22.  40
    Computational Modeling in Philosophy.Simon Scheller, Merdes Christoph & Stephan Hartmann (eds.) - 2022
    Computational modeling should play a central role in philosophy. In this introduction to our topical collection, we propose a small topology of computational modeling in philosophy in general, and show how the various contributions to our topical collection ft into this overall picture. On this basis, we describe some of the ways in which computational models from other disciplines have found their way into philosophy, and how the principles one found here still underlie current trends (...)
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  23.  17
    Modeling Affect Dynamics: State of the Art and Future Challenges.E. L. Hamaker, E. Ceulemans, R. P. P. P. Grasman & F. Tuerlinckx - 2015 - Emotion Review 7 (4):316-322.
    The current article aims to provide an up-to-date synopsis of available techniques to study affect dynamics using intensive longitudinal data. We do so by introducing the following eight dichotomies that help elucidate what kind of data one has, what process aspects are of interest, and what research questions are being considered: single- versus multiple-person data; univariate versus multivariate models; stationary versus nonstationary models; linear versus nonlinear models; discrete time versus continuous time models; discrete versus continuous variables; time versus frequency domain; (...)
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  24.  49
    Issues in computer modeling of cognitive phenomena: An artificial intelligence perspective.Jaime G. Carbonell - 1981 - Behavioral and Brain Sciences 4 (4):536-537.
  25. The component process model: a blueprint for a comprehensive computational model of emotion. Scherer & Kr - 2010 - In Klaus R. Scherer, Tanja Bänziger & Etienne Roesch (eds.), A Blueprint for Affective Computing: A Sourcebook and Manual. Oxford University Press.
     
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  26. Computational modeling vs. computational explanation: Is everything a Turing machine, and does it matter to the philosophy of mind?Gualtiero Piccinini - 2007 - Australasian Journal of Philosophy 85 (1):93 – 115.
    According to pancomputationalism, everything is a computing system. In this paper, I distinguish between different varieties of pancomputationalism. I find that although some varieties are more plausible than others, only the strongest variety is relevant to the philosophy of mind, but only the most trivial varieties are true. As a side effect of this exercise, I offer a clarified distinction between computational modelling and computational explanation.<br><br>.
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  27. Modeling Semantic Emotion Space Using a 3D Hypercube-Projection: An Innovative Analytical Approach for the Psychology of Emotions.Radek Trnka, Alek Lačev, Karel Balcar, Martin Kuška & Peter Tavel - 2016 - Frontiers in Psychology 7.
    The widely accepted two-dimensional circumplex model of emotions posits that most instances of human emotional experience can be understood within the two general dimensions of valence and activation. Currently, this model is facing some criticism, because complex emotions in particular are hard to define within only these two general dimensions. The present theory-driven study introduces an innovative analytical approach working in a way other than the conventional, two-dimensional paradigm. The main goal was to map and project semantic emotion space (...)
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  28.  27
    Computer Modeling in Philosophy of Religion.F. LeRon Shults - 2019 - Open Philosophy 2 (1):108-125.
    How might philosophy of religion be impacted by developments in computational modeling and social simulation? After briefly describing some of the content and context biases that have shaped traditional philosophy of religion, this article provides examples of computational models that illustrate the explanatory power of conceptually clear and empirically validated causal architectures informed by the bio-cultural sciences. It also outlines some of the material implications of these developments for broader metaphysical and metaethical discussions in philosophy. Computer (...) and simulation can contribute to the reformation of the philosophy of religion in at least three ways: by facilitating conceptual clarity about the role of biases in the emergence and maintenance of phenomena commonly deemed “religious,” by supplying tools that enhance our capacity to link philosophical analysis and synthesis to empirical data in the psychological and social sciences, and by providing material insights for metaphysical hypotheses and metaethical proposals that rely solely on immanent resources. (shrink)
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  29.  15
    A Review on Five Recent and Near-Future Developments in Computational Processing of Emotion in the Human Voice.Dagmar M. Schuller & Björn W. Schuller - 2020 - Emotion Review 13 (1):44-50.
    We provide a short review on the recent and near-future developments of computational processing of emotion in the voice, highlighting self-learning of representations moving continuously away from traditional expert-crafted or brute-forced feature representations to end-to-end learning, a movement towards the coupling of analysis and synthesis of emotional voices to foster better mutual understanding, weakly supervised learning at a large scale, transfer learning from related domains such as speech recognition or cross-modal transfer learning, and reinforced learning through interactive applications (...)
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  30. From Computer Metaphor to Computational Modeling: The Evolution of Computationalism.Marcin Miłkowski - 2018 - Minds and Machines 28 (3):515-541.
    In this paper, I argue that computationalism is a progressive research tradition. Its metaphysical assumptions are that nervous systems are computational, and that information processing is necessary for cognition to occur. First, the primary reasons why information processing should explain cognition are reviewed. Then I argue that early formulations of these reasons are outdated. However, by relying on the mechanistic account of physical computation, they can be recast in a compelling way. Next, I contrast two computational models of (...)
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  31.  92
    Computational Modeling in Cognitive Science: A Manifesto for Change.Caspar Addyman & Robert M. French - 2012 - Topics in Cognitive Science 4 (3):332-341.
    Computational modeling has long been one of the traditional pillars of cognitive science. Unfortunately, the computer models of cognition being developed today have not kept up with the enormous changes that have taken place in computer technology and, especially, in human-computer interfaces. For all intents and purposes, modeling is still done today as it was 25, or even 35, years ago. Everyone still programs in his or her own favorite programming language, source code is rarely made available, (...)
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  32.  4
    Sexualized Brains: Scientific Modeling of Emotional Intelligence from a Cultural Perspective. [REVIEW]Yiftach Fehige - 2009 - Isis 100:887-888.
  33. Computational modeling in philosophy: introduction to a topical collection.Simon Scheller, Christoph Merdes & Stephan Hartmann - 2022 - Synthese 200 (2):1-10.
    Computational modeling should play a central role in philosophy. In this introduction to our topical collection, we propose a small topology of computational modeling in philosophy in general, and show how the various contributions to our topical collection fit into this overall picture. On this basis, we describe some of the ways in which computational models from other disciplines have found their way into philosophy, and how the principles one found here still underlie current trends (...)
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  34.  8
    A comparison of distributed machine learning methods for the support of “many labs” collaborations in computational modeling of decision making.Lili Zhang, Himanshu Vashisht, Andrey Totev, Nam Trinh & Tomas Ward - 2022 - Frontiers in Psychology 13.
    Deep learning models are powerful tools for representing the complex learning processes and decision-making strategies used by humans. Such neural network models make fewer assumptions about the underlying mechanisms thus providing experimental flexibility in terms of applicability. However, this comes at the cost of involving a larger number of parameters requiring significantly more data for effective learning. This presents practical challenges given that most cognitive experiments involve relatively small numbers of subjects. Laboratory collaborations are a natural way to increase overall (...)
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  35.  30
    The Modeling of Mind: Computers and Intelligence.Kenneth M. Sayre & Frederick James Crosson (eds.) - 1963 - Notre Dame, IN, USA: University of Notre Dame Press.
  36.  62
    The contribution of cross-cultural study to dynamic systems modeling of emotions.Greg Downey - 2005 - Behavioral and Brain Sciences 28 (2):201-202.
    Lewis neglects cross-cultural data in his dynamic systems model of emotion, probably because appraisal theory disregards behavior and because anthropologists have not engaged discussions of neural plasticity in the brain sciences. Considering cultural variation in emotion-related behavior, such as grieving, indigenous descriptions of emotions, and alternative developmental regimens, such as sport, opens up avenues to test dynamic systems models.
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  37. Computer modeling and the fate of folk psychology.John A. Barker - 2002 - Metaphilosophy 33 (1-2):30-48.
    Although Paul Churchland and Jerry Fodor both subscribe to the so-called theory-theory– the theory that folk psychology (FP) is an empirical theory of behavior – they disagree strongly about FP’s fate. Churchland contends that FP is a fundamentally flawed view analogous to folk biology, and he argues that recent advances in computational neuroscience and connectionist AI point toward development of a scientifically respectable replacement theory that will give rise to a new common-sense psychology. Fodor, however, wagers that FP will (...)
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  38.  11
    The Role of Theories of Embodied Cognition in Research and Modeling of Emotions.Alexandra V. Shiller - 2019 - Russian Journal of Philosophical Sciences 62 (5):124-138.
    The article analyzes the role of theories of embodied cognition for the development of emotion research. The role and position of emotions changed as philosophy developed. In classical and modern European philosophy, the idea of the “primacy of reason” prevailed over emotions and physicality, emotions and affective life were described as low-ranking phenomena regarding cognitive processes or were completely eliminated as an unknown quantity. In postmodern philosophy, attention focuses on physicality and sensuality, which are rated higher than rational principle, (...)
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  39.  9
    The Modeling of Mind: Computers and Intelligence.S. Morris Eames - 1965 - Philosophy and Phenomenological Research 25 (4):598-599.
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  40. Computational Modeling as a Philosophical Methodology.Patrick Grim - 2004 - In Luciano Floridi (ed.), The Blackwell Guide to the Philosophy of Computing and Information. Oxford, UK: Blackwell. pp. 337–349.
    Since the sixties, computational modeling has become increasingly important in both the physical and the social sciences, particularly in physics, theoretical biology, sociology, and economics. Sine the eighties, philosophers too have begun to apply computational modeling to questions in logic, epistemology, philosophy of science, philosophy of mind, philosophy of language, philosophy of biology, ethics, and social and political philosophy. This chapter analyzes a selection of interesting examples in some of those areas.
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  41.  41
    Varieties of Emotional Experience: Differences in Object or Computation?William A. Cunningham & Jay J. Van Bavel - 2009 - Emotion Review 1 (1):56-57.
    Discovering the taxonomies that best describe emotional experience has been surprisingly challenging. Clore and Huntsinger propose that by exploring the objects of emotion, such as standards or actions, we may better understand differences in emotion that emerge for similarly valenced reactions. We are sympathetic to this idea, although we suggest here that greater attention should be given to the computations that accompany affective processing, such as the discrepancy between different hedonic states, rather than the object per se.
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  42. Computer modeling and the fate of folk psychology.John A. Barker - 2002 - In James Moor & Terrell Ward Bynum (eds.), Cyberphilosophy: the intersection of philosophy and computing. Blackwell.
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  43.  63
    Modeling social inference in virtual agents.Wenji Mao & Jonathan Gratch - 2009 - AI and Society 24 (1):5-11.
    Social judgment is a social inference process whereby an agent singles out individuals to blame or credit for multi-agent activities. Such inferences are a key aspect of social intelligence that underlie social planning, social learning, natural language pragmatics and computational models of emotion. With the advance of multi-agent interactive systems and the need of designing socially aware systems and interfaces to interact with people, it is increasingly important to model this human-centric form of social inference. Based on psychological (...)
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  44.  8
    Effects of Emotional Stimulations on the Online Operation of a P300-Based Brain–Computer Interface.Minju Kim, Jongsu Kim, Dojin Heo, Yunjoo Choi, Taejun Lee & Sung-Phil Kim - 2021 - Frontiers in Human Neuroscience 15.
    Using P300-based brain–computer interfaces in daily life should take into account the user’s emotional state because various emotional conditions are likely to influence event-related potentials and consequently the performance of P300-based BCIs. This study aimed at investigating whether external emotional stimuli affect the performance of a P300-based BCI, particularly built for controlling home appliances. We presented a set of emotional auditory stimuli to subjects, which had been selected for each subject based on individual valence scores evaluated a priori, while they (...)
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  45.  22
    The crosslinguistic acquisition of sentence structure: Computational modeling and grammaticality judgments from adult and child speakers of English, Japanese, Hindi, Hebrew and K'iche'.Ben Ambridge, Tomoko Tatsumi, Laura Doherty, Ramya Maitreyee, Colin Bannard, Soumitra Samanta, Stewart McCauley, Inbal Arnon, Shira Zicherman, Dani Bekman, Amir Efrati, Ruth Berman, Bhuvana Narasimhan, Dipti Misra Sharma, Rukmini Bhaya Nair, Kumiko Fukumura, Seth Campbell, Clifton Pye, Pedro Mateo Pedro, Sindy Fabiola Can Pixabaj, Mario Marroquín Pelíz & Margarita Julajuj Mendoza - 2020 - Cognition 202 (C):104310.
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  46.  44
    Computational Exploration of Metaphor Comprehension Processes Using a Semantic Space Model.Akira Utsumi - 2011 - Cognitive Science 35 (2):251-296.
    Recent metaphor research has revealed that metaphor comprehension involves both categorization and comparison processes. This finding has triggered the following central question: Which property determines the choice between these two processes for metaphor comprehension? Three competing views have been proposed to answer this question: the conventionality view (Bowdle & Gentner, 2005), aptness view (Glucksberg & Haught, 2006b), and interpretive diversity view (Utsumi, 2007); these views, respectively, argue that vehicle conventionality, metaphor aptness, and interpretive diversity determine the choice between the categorization (...)
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  47.  33
    Emotion and the computational theory of mind.Craig DeLancey - 1997 - In S. O'Nuillain, Paul McKevitt & E. MacAogain (eds.), Two Sciences of Mind. John Benjamins.
    The case for computationalism about the mind is in doubt when we acknowledge that there are mental phenomena that require, for a proper accounting, that we get below the level of symbol processing. Such phenomena show us that a computational theory of mind cannot be complete. Chief among these phenomena is emotion.
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  48.  44
    Computational models of the emotions: from models of the emotions of the individual to modelling the emerging irrational behaviour of crowds. [REVIEW]Ephraim Nissan - 2009 - AI and Society 24 (4):403-414.
    Computational models of emotions have been thriving and increasingly popular since the 1990s. Such models used to be concerned with the emotions of individual agents when they interact with other agents. Out of the array of models for the emotions, we are going to devote special attention to the approach in Adamatzky’s Dynamics of Crowd-Minds. The reason it stands out, is that it considers the crowd, rather than the individual agent. It fits in computational intelligence. It works by (...)
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  49.  36
    Modeling the role of emotion regulation and critical thinking in immunity in higher education.Meilan Li, Tahereh Heydarnejad, Zeinab Azizi & Zeynab Rezaei Gashti - 2022 - Frontiers in Psychology 13:1005071.
    It is deemed that the effectiveness of teachers is highly entangled with psycho-emotional constructs, such as critical thinking (CT), emotion regulation (ER), and immunity. Despite the potential roles of CR, ER, and immunity, their possible relationships have remained unexplored in the higher education context of Iran. To fill in this lacuna, this study explored the potential role of CT and ER in university teachers' immunity in the Iranian higher education context. For this purpose, a total of 293 English university (...)
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  50.  97
    A Computational Modeling Approach on Three‐Digit Number Processing.Stefan Huber, Korbinian Moeller, Hans-Christoph Nuerk & Klaus Willmes - 2013 - Topics in Cognitive Science 5 (2):317-334.
    Recent findings indicate that the constituting digits of multi-digit numbers are processed, decomposed into units, tens, and so on, rather than integrated into one entity. This is suggested by interfering effects of unit digit processing on two-digit number comparison. In the present study, we extended the computational model for two-digit number magnitude comparison of Moeller, Huber, Nuerk, and Willmes (2011a) to the case of three-digit number comparison (e.g., 371_826). In a second step, we evaluated how hundred-decade and hundred-unit compatibility (...)
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