Results for 'Affective computing'

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  1.  32
    The Affective Computing Approach to Affect Measurement.Sidney D’Mello, Arvid Kappas & Jonathan Gratch - 2018 - Emotion Review 10 (2):174-183.
    Affective computing adopts a computational approach to study affect. We highlight the AC approach towards automated affect measures that jointly model machine-readable physiological/behavioral signals with affect estimates as reported by humans or experimentally elicited. We describe the conceptual and computational foundations of the approach followed by two case studies: one on discrimination between genuine and faked expressions of pain in the lab, and the second on measuring nonbasic affect in the wild. We discuss applications of the measures, analyze (...)
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  2.  80
    A Blueprint for Affective Computing: A Sourcebook and Manual.Klaus R. Scherer, Tanja Bänziger & Etienne Roesch (eds.) - 2010 - Oxford University Press.
    'Affective computing' is a branch of computing concerned with the theory and construction of machines which can detect, respond to, and simulate human emotional states. This book presents an interdisciplinary exploration of this rapidly expanding field, aimed at those in psychology, computational neuroscience, computer science, and AI. A Blueprint for Affective Computing: A sourcebook and manual is the very first attempt to ground affective computing within the disciplines of psychology, affective neuroscience, and (...)
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  3. On Affective Computing (Rosalind W. Picard).E. Nissan - 1999 - Pragmatics and Cognition 7:226-238.
  4.  21
    Emotional Machines: Perspectives from Affective Computing and Emotional Human-Machine Interaction.Catrin Misselhorn, Tom Poljanšek, Tobias Störzinger & Maike Klein (eds.) - 2023 - Springer Fachmedien Wiesbaden.
    Can machines simulate, express or even have emotions? Is it a good to build such machines? How do humans react emotionally to them and how should such devices be treated from a moral point of view? This volume addresses these and related questions by bringing together perspectives from affective computing and emotional human-machine interaction, combining technological approaches with those from the humanities and social sciences. It thus relates disciplines such as philosophy, computer science, technology, psychology, sociology, design, and (...)
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  5.  26
    Reading Emotion From Mouse Cursor Motions: Affective Computing Approach.Takashi Yamauchi & Kunchen Xiao - 2018 - Cognitive Science 42 (3):771-819.
    Affective computing research has advanced emotion recognition systems using facial expressions, voices, gaits, and physiological signals, yet these methods are often impractical. This study integrates mouse cursor motion analysis into affective computing and investigates the idea that movements of the computer cursor can provide information about emotion of the computer user. We extracted 16–26 trajectory features during a choice-reaching task and examined the link between emotion and cursor motions. Participants were induced for positive or negative emotions (...)
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  6. Gender biases in the training methods of affective computing: Redesign and validation of the Self-Assessment Manikin in measuring emotions via audiovisual clips.Clara Sainz-de-Baranda Andujar, Laura Gutiérrez-Martín, José Ángel Miranda-Calero, Marian Blanco-Ruiz & Celia López-Ongil - 2022 - Frontiers in Psychology 13:955530.
    Audiovisual communication is greatly contributing to the emerging research field of affective computing. The use of audiovisual stimuli within immersive virtual reality environments is providing very intense emotional reactions, which provoke spontaneous physical and physiological changes that can be assimilated into real responses. In order to ensure high-quality recognition, the artificial intelligence system must be trained with adequate data sets, including not only those gathered by smart sensors but also the tags related to the elicited emotion. Currently, there (...)
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  7.  59
    Rosalind W. Picard, affective computing.Carolyn Korsmeyer - 1999 - Minds and Machines 9 (3):443-447.
  8.  17
    Rosalind W. Picard,Affective Computing.Ephraim Nissan - 1999 - Pragmatics and Cognition 7 (1):226-239.
  9. The emotional brain meets affective computing.D. Grandjean, Sander & D. - 2010 - In Klaus R. Scherer, Tanja Bänziger & Etienne Roesch (eds.), A Blueprint for Affective Computing: A Sourcebook and Manual. Oxford University Press.
  10.  13
    A Literature Review of EEG-Based Affective Computing in Marketing.Guanxiong Pei & Taihao Li - 2021 - Frontiers in Psychology 12.
    Affect plays an important role in the consumer decision-making process and there is growing interest in the development of new technologies and computational approaches that can interpret and recognize the affects of consumers, with benefits for marketing described in relation to both academia and industry. From an interdisciplinary perspective, this paper aims to review past studies focused on electroencephalography -based affective computing in marketing, which provides a promising avenue for studying the mechanisms underlying affective states and developing (...)
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  11.  36
    Latent and Emergent Models in Affective Computing.Rafael A. Calvo - 2010 - Emotion Review 2 (3):288-289.
    New research on affective computing aiming to develop computer systems that recognize and respond to affective states can also contribute to the issues raised by Coan. Research on how humans interact with computers, and computer models that automatically recognize affective states from features in our physiology, behaviour, and language, may provide insights on how emotions that are experienced and expressed come to be. For example, there is empirical evidence that affect recognition techniques using several modalities are (...)
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  12.  5
    Reading psychology and news communication strategies for affective computing.Beichun Xu - 2022 - Frontiers in Psychology 13.
    Reading psychology is an important basis for formulating news strategies. The purpose of this paper is to study how to analyze and study the psychological mechanism of reading and news communication strategies based on affective computing. It described the conditional random field. This paper put forward the problem of affective computing, which is based on affective computing technology. Then it expounded the concept of conditional random fields and related algorithms, and designed and analyzed cases (...)
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  13.  5
    Predictive analysis of the psychological state of charismatic leaders on employees' work attitudes based on artificial intelligence affective computing.Yi Liu & Jaehoon Song - 2022 - Frontiers in Psychology 13.
    With the progress of social production, the competition for talents among enterprises is fierce, and the market often lacks capable leaders, which leads to the lack of management of enterprise employees and cannot bring more economic benefits to enterprises. Traditional leaders make subordinate employees work actively and achieve the common goal of the enterprise by exerting their own leadership characteristics and observing their subordinates, but they cannot take care of the psychological state of each employee, resulting in the employee's work (...)
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  14.  3
    Construction of interactive health education model for adolescents based on affective computing.Xieping Chen, Yu Zhang & Qian Xie - 2022 - Frontiers in Psychology 13.
    At present, people mainly focus on health education for adolescents. The health education of adolescents is related to future of adolescents. In youth, their emotions are easily influenced. Therefore, this manuscript constructs an interactive health education model for adolescents through affective computing. Researchers in various countries have done a lot of research on human–computer interaction, and affective computing is one of the research hotspots. This manuscript aims to study the use of affective computing to (...)
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  15.  18
    Editorial: Advances in Virtual Agents and Affective Computing for the Understanding and Remediation of Social Cognitive Disorders.Eric Brunet-Gouet, Ali Oker, Jean-Claude Martin, Ouriel Grynszpan & Philip L. Jackson - 2015 - Frontiers in Human Neuroscience 9.
  16. Psychological response patterning in emotion: implications for affective computing. Kreibig, S., Schaefer, G., Brosch & T. - 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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  17.  35
    A Computer-Aided Affective Content Analysis of Nanotechnology Newspaper Articles.Robert Davis - 2011 - NanoEthics 5 (3):319-334.
    This paper explores the application of an affective content analysis to a selection of nanotechnology news articles gathered from selected newspapers. Thematic content analyses dominate current efforts to mine large text collections of popular science media; the addition of an affective analysis element can yield useful information to supplement future content analysis efforts. Using Whissell’s Dictionary of Affect in Language , the analysis rates news articles gathered over a twenty-two year period for their pleasantness, activeness, and imagery, determining (...)
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  18.  79
    Computational Modelling of Culture and Affect.Ruth Aylett & Ana Paiva - 2012 - Emotion Review 4 (3):253-263.
    This article discusses work on implementing emotional and cultural models into synthetic graphical characters. An architecture, FAtiMA, implemented first in the antibullying application FearNot! and then extended as FAtiMA-PSI in the cultural-sensitivity application ORIENT, is discussed. We discuss the modelling relationships between culture, social interaction, and cognitive appraisal. Integrating a lower level homeostatically based model is also considered as a means of handling some of the limitations of a purely symbolic approach. Evaluation to date is summarised and future directions discussed.
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  19. Feeling and representing: Computational theory and the modularity of affect.Louis C. Charland - 1995 - Synthese 105 (3):273-301.
    In this paper I review some leading developments in the empirical theory of affect. I argue that (1) affect is a distinct perceptual representation governed system, and (2) that there are significant modular factors in affect. The paper concludes with the observation thatfeeler (affective perceptual system) may be a natural kind within cognitive science. The main purpose of the paper is to explore some hitherto unappreciated connections between the theory of affect and the computational theory of mind.
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  20.  44
    Caracolomobile: affect in computer systems. [REVIEW]Tania Fraga - 2013 - AI and Society 28 (2):167-176.
    This essay presents and reflects upon the construction of a few experimental artworks, among them Caracolomobile , that looks for poetic, aesthetic and functional possibilities to bring computer systems to the sensitive universe of human emotions, feelings and expressions. Modern and Contemporary Art have explored such qualities in unfathomable ways and nowadays is turning towards computer systems and their co-related technologies. This universe characterizes and is the focus of these experimental artworks; artworks dealing with entwined subjective and objective qualities, weaving (...)
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  21.  10
    Towards a Standardisation of Computational Models of Affect: OWL and Machine Learning.Gianmarco Tuccini, Luca Baronti, Laura Corti & Roberta Lanfredini - 2020 - Humana Mente 13 (37).
    Computational models of affect (CMAS), in their most common form, cannot take into account the qualitative (phenomenal) dimension of affect itself. Their expressivity can be extended, thus promoting the much sought-after standardization in the most theory-neutral way, using OWL (Web Ontology Language) and machine learning techniques. OWL is an expressive formal language, as well as an established open standard, and can be used to describe the models, possibly including qualitative entities at the fundamental level. The supervised machine learning techniques allow (...)
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  22.  10
    Does morphological complexity affect word segmentation? Evidence from computational modeling.Georgia Loukatou, Sabine Stoll, Damian Blasi & Alejandrina Cristia - 2022 - Cognition 220 (C):104960.
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  23.  24
    Challenge for Affective Brain-Computer Interfaces: Non-stationary Spatio-spectral EEG Oscillations of Emotional Responses.Yi-Wei Shen & Yuan-Pin Lin - 2019 - Frontiers in Human Neuroscience 13.
  24.  54
    Wired Emotions: Ethical Issues of Affective Brain–Computer Interfaces.Steffen Steinert & Orsolya Friedrich - 2020 - Science and Engineering Ethics 26 (1):351-367.
    Ethical issues concerning brain–computer interfaces have already received a considerable amount of attention. However, one particular form of BCI has not received the attention that it deserves: Affective BCIs that allow for the detection and stimulation of affective states. This paper brings the ethical issues of affective BCIs in sharper focus. The paper briefly reviews recent applications of affective BCIs and considers ethical issues that arise from these applications. Ethical issues that affective BCIs share with (...)
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  25. Towards a computational account of context mediated affective stimulus-response translation.Pascal Haazebroek, Saskia Van Dantzig & Bernhard Hommel - 2009 - In N. A. Taatgen & H. van Rijn (eds.), Proceedings of the 31st Annual Conference of the Cognitive Science Society.
     
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  26. Easy's gettin' harder all the time: The computational theory and affective states.Jason Megill & Jon Cogburn - 2005 - Ratio 18 (3):306-316.
    We argue that A. Damasio’s (1994) Somatic Marker hypothesis can explain why humans don’t generally suffer from the frame problem, arguably the greatest obstacle facing the Computational Theory of Mind. This involves showing how humans with damaged emotional centers are best understood as actually suffering from the frame problem. We are then able to show that, paradoxically, these results provide evidence for the Computational Theory of Mind, and in addition call into question the very distinction between easy and hard problems (...)
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  27.  93
    Come on Baby, Light My Fire: Sparking Further Research in Socio-Affective Mechanisms of Music Using Computational Advancements.Ilana Harris & Mats B. Küssner - 2020 - Frontiers in Psychology 11.
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  28.  78
    Affective Artificial Agents as sui generis Affective Artifacts.Marco Facchin & Giacomo Zanotti - forthcoming - Topoi.
    AI-based technologies are increasingly pervasive in a number of contexts. Our affective and emotional life makes no exception. In this article, we analyze one way in which AI-based technologies can affect them. In particular, our investigation will focus on affective artificial agents, namely AI-powered software or robotic agents designed to interact with us in affectively salient ways. We build upon the existing literature on affective artifacts with the aim of providing an original analysis of affective artificial (...)
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  29.  70
    Computer Art, Technology, and the Medium.Christopher Bartel - 2022 - Being and Value in Technology.
    Technological advancements often lead to revolutions in the creation of art; but, what is unclear is whether such advancements always correspond to revolutions regarding the artistic medium. The notion of an artistic medium is central to our thinking about, engagement with, and appreciation of art. Accounts of the interpretation, understanding, and experience of art must at some point grapple with the role of the artistic medium against such endeavors. Moreover, artists do not choose their medium by accident, but presumably do (...)
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  30.  24
    Building Empathic Agents? Comment on “Computational Modelling of Culture and Affect” by Aylett and Paiva.Toyoaki Nishida - 2012 - Emotion Review 4 (3):269-270.
    This comment discusses work by Aylett and Paiva (2012) which describes a synthetic approach to building a virtual world inhabited by synthetic characters where the user can experience subjective culture, that is, the experience of social reality, and learn how to empathetically communicate with people in other cultures. It provides a computational theory for integrating recent findings on emotion and cultural sensitivities into an interactive drama played by interacting characters with varying personalities. The FAtiMA-PSI, the implementation of their theory, has (...)
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  31. 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 function of emotional experience and its relation (...)
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  32.  22
    Computational versus Causal Complexity.Matthias Scheutz - 2001 - Minds and Machines 11 (4):543-566.
    The main claim of this paper is that notions of implementation based on an isomorphic correspondence between physical and computational states are not tenable. Rather, ``implementation'' has to be based on the notion of ``bisimulation'' in order to be able to block unwanted implementation results and incorporate intuitions from computational practice. A formal definition of implementation is suggested, which satisfies theoretical and practical requirements and may also be used to make the functionalist notion of ``physical realization'' precise. The upshot of (...)
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  33.  12
    Affective Voice Interaction and Artificial Intelligence: A Research Study on the Acoustic Features of Gender and the Emotional States of the PAD Model.Kuo-Liang Huang, Sheng-Feng Duan & Xi Lyu - 2021 - Frontiers in Psychology 12.
    New types of artificial intelligence products are gradually transferring to voice interaction modes with the demand for intelligent products expanding from communication to recognizing users' emotions and instantaneous feedback. At present, affective acoustic models are constructed through deep learning and abstracted into a mathematical model, making computers learn from data and equipping them with prediction abilities. Although this method can result in accurate predictions, it has a limitation in that it lacks explanatory capability; there is an urgent need for (...)
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  34.  10
    , "Computers as modelers of climate," in the greatest inventions of the past.William Calvin - manuscript
    Computer simulations may allow us to understand the earth’s fickle climate and how it is affected by detours of the great ocean currents. These detours cause abrupt coolings -- the average global temperature can drop dramatically in just a few years, with droughts that set up El-Niño-like forest fires even in the tropics. While volcanic eruptions and Antarctic ice shelf collapses can also abruptly cool things, what we’re talking about here is a flip-flop: a few centuries later, there’s an equally (...)
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  35.  93
    Computational vs. causal complexity.Matthias Scheutz - 2001 - Minds and Machines 11 (4):543-566.
    The main claim of this paper is that notions of implementation based on an isomorphic correspondence between physical and computational states are not tenable. Rather, ``implementation'' has to be based on the notion of ``bisimulation'' in order to be able to block unwanted implementation results and incorporate intuitions from computational practice. A formal definition of implementation is suggested, which satisfies theoretical and practical requirements and may also be used to make the functionalist notion of ``physical realization'' precise. The upshot of (...)
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  36. Do computer simulations support the Argument from Disagreement?Aron Vallinder & Erik J. Olsson - 2013 - Synthese 190 (8):1437-1454.
    According to the Argument from Disagreement (AD) widespread and persistent disagreement on ethical issues indicates that our moral opinions are not influenced by moral facts, either because there are no such facts or because there are such facts but they fail to influence our moral opinions. In an innovative paper, Gustafsson and Peterson (Synthese, published online 16 October, 2010) study the argument by means of computer simulation of opinion dynamics, relying on the well-known model of Hegselmann and Krause (J Artif (...)
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  37.  37
    A Computational Evaluation of Sentence Processing Deficits in Aphasia.Umesh Patil, Sandra Hanne, Frank Burchert, Ria De Bleser & Shravan Vasishth - 2016 - Cognitive Science 40 (1):5-50.
    Individuals with agrammatic Broca's aphasia experience difficulty when processing reversible non-canonical sentences. Different accounts have been proposed to explain this phenomenon. The Trace Deletion account attributes this deficit to an impairment in syntactic representations, whereas others propose that the underlying structural representations are unimpaired, but sentence comprehension is affected by processing deficits, such as slow lexical activation, reduction in memory resources, slowed processing and/or intermittent deficiency, among others. We test the claims of two processing accounts, slowed processing and intermittent deficiency, (...)
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  38. A Computational Cognitive Model of Syntactic Priming.David Reitter, Frank Keller & Johanna D. Moore - 2011 - Cognitive Science 35 (4):587-637.
    The psycholinguistic literature has identified two syntactic adaptation effects in language production: rapidly decaying short-term priming and long-lasting adaptation. To explain both effects, we present an ACT-R model of syntactic priming based on a wide-coverage, lexicalized syntactic theory that explains priming as facilitation of lexical access. In this model, two well-established ACT-R mechanisms, base-level learning and spreading activation, account for long-term adaptation and short-term priming, respectively. Our model simulates incremental language production and in a series of modeling studies, we show (...)
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  39. Computability and recursion.Robert I. Soare - 1996 - Bulletin of Symbolic Logic 2 (3):284-321.
    We consider the informal concept of "computability" or "effective calculability" and two of the formalisms commonly used to define it, "(Turing) computability" and "(general) recursiveness". We consider their origin, exact technical definition, concepts, history, general English meanings, how they became fixed in their present roles, how they were first and are now used, their impact on nonspecialists, how their use will affect the future content of the subject of computability theory, and its connection to other related areas. After a careful (...)
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  40. Towards a computational theory of mood.Laura Sizer - 2000 - British Journal for the Philosophy of Science 51 (4):743-770.
    Moods have global and profound effects on our thoughts, motivations and behavior. To understand human behavior and cognition fully, we must understand moods. In this paper I critically examine and reject the methodology of conventional ?cognitive theories? of affect. I lay the foundations of a new theory of moods that identifies them with processes of our cognitive functional architecture. Moods differ fundamentally from some of our other affective states and hence require distinct explanatory tools. The computational theory of mood (...)
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  41. The Emotional Mind: the affective roots of culture and cognition.Stephen Asma & Rami Gabriel - 2019 - Harvard University Press.
    Tracing the leading role of emotions in the evolution of the mind, a philosopher and a psychologist pair up to reveal how thought and culture owe less to our faculty for reason than to our capacity to feel. Many accounts of the human mind concentrate on the brain’s computational power. Yet, in evolutionary terms, rational cognition emerged only the day before yesterday. For nearly 200 million years before humans developed a capacity to reason, the emotional centers of the brain were (...)
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  42. The Computational Boundary of a “Self”: Developmental Bioelectricity Drives Multicellularity and Scale-Free Cognition.Michael Levin - 2019 - Frontiers in Psychology 10.
    All epistemic agents physically consist of parts that must somehow comprise an integrated cognitive self. Biological individuals consist of subunits (organs, cells, molecular networks) that are themselves complex and competent in their own context. How do coherent biological Individuals result from the activity of smaller sub-agents? To understand the evolution and function of metazoan bodies and minds, it is essential to conceptually explore the origin of multicellularity and the scaling of the basal cognition of individual cells into a coherent larger (...)
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  43.  73
    The Affective Core of Emotion: Linking Pleasure, Subjective Well-Being, and Optimal Metastability in the Brain.Morten L. Kringelbach & Kent C. Berridge - 2017 - Emotion Review 9 (3):191-199.
    Arguably, emotion is always valenced—either pleasant or unpleasant—and dependent on the pleasure system. This system serves adaptive evolutionary functions; relying on separable wanting, liking, and learning neural mechanisms mediated by mesocorticolimbic networks driving pleasure cycles with appetitive, consummatory, and satiation phases. Liking is generated in a small set of discrete hedonic hotspots and coldspots, while wanting is linked to dopamine and to larger distributed brain networks. Breakdown of the pleasure system can lead to anhedonia and other features of affective (...)
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  44.  94
    Affective dependencies.Anastasia Giannakidou - 1999 - Linguistics and Philosophy 22 (4):367-421.
    Limited distribution phenomena related to negation and negative polarity are usually thought of in terms of affectivity where affective is understood as negative or downward entailing. In this paper I propose an analysis of affective contexts as nonveridical and treat negative polarity as a manifestation of the more general phenomenon of sensitivity to (non)veridicality (which is, I argue, what affective dependencies boil down to). Empirical support for this analysis will be provided by a detailed examination of (...) dependencies in Greek, but the distribution of any will also be shown to follow from (non)veridicality. (shrink)
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  45.  32
    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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  46.  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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  47. Computer-Aided Argument Mapping as a Tool for Teaching Critical Thinking.W. Martin Davies - 2014 - International Journal of Learning and Media 4 (3-4):79-84.
    As individuals we often face complex issues about which we must weigh evidence and come to conclusions. Corporations also have to make decisions on the basis of strong and compelling arguments. Legal practitioners, compelled by arguments for or against a proposition and underpinned by the weight of evidence, are often required to make judgments that affect the lives of others. Medical doctors face similar decisions. Governments make purchasing decisions—for example, for expensive military equipment—or decisions in the areas of public or (...)
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  48.  20
    Incremental computation for structured argumentation over dynamic DeLP knowledge bases.Gianvincenzo Alfano, Sergio Greco, Francesco Parisi, Gerardo I. Simari & Guillermo R. Simari - 2021 - Artificial Intelligence 300 (C):103553.
    Structured argumentation systems, and their implementation, represent an important research subject in the area of Knowledge Representation and Reasoning. Structured argumentation advances over abstract argumentation frameworks by providing the internal construction of the arguments that are usually defined by a set of (strict and defeasible) rules. By considering the structure of arguments, it becomes possible to analyze reasons for and against a conclusion, and the warrant status of such a claim in the context of a knowledge base represents the main (...)
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  49.  11
    Tracking Affective Labour for Agility in the Quantified Workplace.Phoebe V. Moore - 2018 - Body and Society 24 (3):39-67.
    Sensory and tracking technologies are being introduced into workplaces in ways Taylor and the Gilbreths could only have imagined. New work design experiments merge wellness with productivity to measure and modulate the affective and emotional labour of resilience that is necessary to survive the turbulence of the widespread incorporation of agile management systems, in which workers are expected to take symbolic direction from machines. The Quantified Workplace project was carried out by one company that fitted sensory algorithmic devices to (...)
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  50.  68
    Computer-mediated communication and cooperation in social dilemmas: An experimental analysis.Cristina Bicchieri & Azi Lev-On - 2007 - Politics, Philosophy and Economics 6 (2):139-168.
    University of Pennsylvania, USA, el322{at}nyu.edu ' + u + '@' + d + ' '//--> One of the most consistent findings in experimental studies of social dilemmas is the positive influence of face-to-face communication on cooperation. The face-to-face `communication effect' has been recently explained in terms of a `focus theory of norms': successful communication focuses agents on pro-social norms, and induces preferences and expectations conducive to cooperation. 1 Many of the studies that point to a communication effect, however, do not (...)
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