Results for 'augmented intelligence'

971 found
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  1.  22
    Cognitive Science of Augmented Intelligence.Marina Dubova, Mirta Galesic & Robert L. Goldstone - 2022 - Cognitive Science 46 (12):e13229.
    Cognitive science has been traditionally organized around the individual as the basic unit of cognition. Despite developments in areas such as communication, human–machine interaction, group behavior, and community organization, the individual-centric approach heavily dominates both cognitive research and its application. A promising direction for cognitive science is the study of augmented intelligence, or the way social and technological systems interact with and extend individual cognition. The cognitive science of augmented intelligence holds promise in helping society tackle (...)
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  2.  1
    Meaningful Human-Machine Interaction: Some Suggestions From the Perspective of Augmented Intelligence.Martina Properzi - 2022 - Studia Universitatis Babeş-Bolyai Philosophia:101-112.
    In this article I will address the issue of the meaning of human-machine interaction as it is configured today in the light of substantial results achieved in the design and the manufacture of Artificial Intelligence (AI) systems. My starting point is a refined solution for meaningful AI recently suggested by Froese and Taguchi from the perspective of so-called augmented intelligence. Interpreted as a kind of human-machine interaction, augmented intelligence distinguishes itself by the fact that it (...)
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  3. Augmented Intelligence - The New AI - Unleashing Human Capabilities in Knowledge Work.James M. Corrigan - 2012 - 2012 34Th International Conference on Software Engineering (Icse 2012).
    In this paper I describe a novel application of contemplative techniques to software engineering with the goal of augmenting the intellectual capabilities of knowledge workers within the field in four areas: flexibility, attention, creativity, and trust. The augmentation of software engineers’ intellectual capabilities is proposed as a third complement to the traditional focus of methodologies on the process and environmental factors of the software development endeavor. I argue that these capabilities have been shown to be open to improvement through the (...)
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  4.  48
    Artificial intelligence, human intelligence and hybrid intelligence based on mutual augmentation.Gemma Newlands, Christoph Lutz & Mohammad Hossein Jarrahi - 2022 - Big Data and Society 9 (2).
    There is little consensus on what artificial intelligence (AI) systems may or may not embrace. Although this may point to multiplicity of interpretations and backgrounds, a lack of conceptual clarity could thwart the development of common ground around the concept among researchers, practitioners and users of AI and pave the way for misinterpretation and abuse of the concept. This article argues that one of the effective ways to delineate the concept of AI is to compare and contrast it with (...)
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  5.  86
    Augmented Reality, Artificial Intelligence, and the Re‐Enchantment of the World.Mohammad Yaqub Chaudhary - 2019 - Zygon 54 (2):454-478.
    There has recently been a surge of development in augmented reality (AR) technologies that has led to an ecosystem of hardware and software for AR, including tools for artists and designers to accelerate the design of AR content and experiences without requiring complex programming. AR is viewed as a key “disruptive technology” and future display technologies (such as digital eyewear) will provide seamless continuity between reality and the digitally augmented. This article will argue that the technologization of human (...)
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  6.  69
    The Authenticity of Machine-Augmented Human Intelligence: Therapy, Enhancement, and the Extended Mind.Allen Coin & Veljko Dubljević - 2020 - Neuroethics 14 (2):283-290.
    Ethical analyses of biomedical human enhancement often consider the issue of authenticity — to what degree can the accomplishments of those utilizing biomedical enhancements be considered authentic or worthy of praise? As research into Brain-Computer Interface technology progresses, it may soon be feasible to create a BCI device that enhances or augments natural human intelligence through some invasive or noninvasive biomedical means. In this article we will review currently existing BCI technologies and to what extent these can be said (...)
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  7.  38
    Augmenting perception: How artificial intelligence transforms sensory substitution.Louis Longin & Ophelia Deroy - 2022 - Consciousness and Cognition 99 (C):103280.
  8. The relevance of Peircean semiotic to computational intelligence augmentation.Joseph Ransdell - manuscript
    This is a copy of the Proceedings version of a paper presented at the Workshop on Computational Intelligence and Semiotics, organized by João Queiroz and Ricardo Gudwin, held at Itaú Cultural, São Paulo, Brazil, on 8-9 October, 2002. (This version contains material not actually delivered at the conference.) Queiroz and Gudwin will be releasing the Proceedings volume on a..
     
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  9.  20
    Mapping Communicative Activity: A CHAT Approach to Design of Pseudo- Intelligent Mediators for Augmentative and Alternative Communication.Julie Hengst, Maeve McCartin, Hillary Valentino, Suma Devanga & Martha Sherrill - 2016 - Outlines. Critical Practice Studies 17 (1):05-38.
    The development of AAC technologies is of critical importance to the many people who are unable to speak intelligibly due to a communication disorder, and to their many everyday interlocutors. Advances in digital technologies have revolutionized AAC, leading to devices that can “speak for” such individuals as aptly as it is illustrated in the case of the world famous physicist, Stephen Hawking. However, given their dependence on prefabricated language, current AAC devices are very limited in their ability to mediate everyday (...)
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  10.  37
    Understanding and augmenting human morality: An introduction to the ACTWith model of conscience.Jeffrey White - 2010 - In W. Carnielli L. Magnani (ed.), Model-Based Reasoning in Science and Technology. pp. 607--621.
    Recent developments, both in the cognitive sciences and in world events, bring special emphasis to the study of morality. The cognitive sciences, spanning neurology, psychology, and computational intelligence, offer substantial ad- vances in understanding the origins and purposes of morality. Meanwhile, world events urge the timely synthesis of these insights with traditional ac- counts that can be easily assimilated and practically employed to augment moral judgment, both to solve current problems and to direct future action. The object of the (...)
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  11.  64
    Augmented humanity.Juergen Moritz - 2017 - Technoetic Arts 15 (3):341-352.
    Augmented Reality (AR) is commonly defined as a digital layer of information viewed on top of the physical world through a smartphone, tablet or eyewear. Increasingly, this understanding of AR is shifting to a dynamic framework of ‘smart things’, including wearable technology, sensors and artificial intelligence (AI), with the ability to intercede in key moments and to deliver contextual and meaningful experiences. The things that come into context are the logical next steps in an evolutionary development towards computers (...)
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  12. AI as IA: The use and abuse of artificial intelligence (AI) for human enhancement through intellectual augmentation (IA).Alexandre Erler & Vincent C. Müller - 2023 - In Fabrice Jotterand & Marcello Ienca (eds.), The Routledge Handbook of the Ethics of Human Enhancement. Routledge. pp. 187-199.
    This paper offers an overview of the prospects and ethics of using AI to achieve human enhancement, and more broadly what we call intellectual augmentation (IA). After explaining the central notions of human enhancement, IA, and AI, we discuss the state of the art in terms of the main technologies for IA, with or without brain-computer interfaces. Given this picture, we discuss potential ethical problems, namely inadequate performance, safety, coercion and manipulation, privacy, cognitive liberty, authenticity, and fairness in more detail. (...)
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  13.  79
    Algorithmic augmentation of democracy: considering whether technology can enhance the concepts of democracy and the rule of law through four hypotheticals.Paul Burgess - 2022 - AI and Society 37 (1):97-112.
    The potential use, relevance, and application of AI and other technologies in the democratic process may be obvious to some. However, technological innovation and, even, its consideration may face an intuitive push-back in the form of algorithm aversion (Dietvorst et al. J Exp Psychol 144(1):114–126, 2015). In this paper, I confront this intuition and suggest that a more ‘extreme’ form of technological change in the democratic process does not necessarily result in a worse outcome in terms of the fundamental concepts (...)
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  14.  38
    Augmented learning, smart glasses and knowing how.Wulf Loh & Catrin Misselhorn - 2020 - AI and Society 35 (2):297-308.
    While recent studies suggest that augmented learning employing smart glasses increases overall learning performance, in this paper we are more interested in the question which repercussions ALSG will have on the type of knowledge that is acquired. Drawing from the theoretical discussion within epistemology about the differences between Knowledge-How and Knowledge-That, we will argue that ALSG furthers understanding as a series of epistemic and non-epistemic Knowing-Hows. Focusing on academic knowledge acquisition, especially with respect to early curriculum experiments in various (...)
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  15.  37
    Tool-Augmented Human Creativity.Kjell Jørgen Hole - 2024 - Minds and Machines 34 (2):1-14.
    Creativity is the hallmark of human intelligence. Roli et al. (Frontiers in Ecology and Evolution 9:806283, 2022) state that algorithms cannot achieve human creativity. This paper analyzes cooperation between humans and intelligent algorithmic tools to compensate for algorithms’ limited creativity. The intelligent tools have functionality from the neocortex, the brain’s center for learning, reasoning, planning, and language. The analysis provides four key insights about human-tool cooperation to solve challenging problems. First, no neocortex-based tool without feelings can achieve human creativity. (...)
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  16.  2
    Augmenting research consent: should large language models (LLMs) be used for informed consent to clinical research?Jemima W. Allen, Owen Schaefer, Sebastian Porsdam Mann, Brian D. Earp & Dominic Wilkinson - forthcoming - Research Ethics.
    The integration of artificial intelligence (AI), particularly large language models (LLMs) like OpenAI’s ChatGPT, into clinical research could significantly enhance the informed consent process. This paper critically examines the ethical implications of employing LLMs to facilitate consent in clinical research. LLMs could offer considerable benefits, such as improving participant understanding and engagement, broadening participants’ access to the relevant information for informed consent and increasing the efficiency of consent procedures. However, these theoretical advantages are accompanied by ethical risks, including the (...)
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  17. Can Intelligence Explode?Marcus Hutter - 2012 - Journal of Consciousness Studies 19 (1-2):143-166.
    The technological singularity refers to a hypothetical scenario in which technological advances virtually explode. The most popular scenario is the creation of super-intelligent algorithms that recursively create ever higher intelligences. It took many decades for these ideas to spread from science fiction to popular science magazines and finally to attract the attention of serious philosophers. David Chalmers' (JCS 2010) article is the first comprehensive philosophical analysis of the singularity in a respected philosophy journal. The motivation of my article is to (...)
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  18.  15
    Augmenting tractable fragments of abstract argumentation.Wolfgang Dvořák, Sebastian Ordyniak & Stefan Szeider - 2012 - Artificial Intelligence 186 (C):157-173.
  19.  4
    Artificial Intelligence for Clinical Decision-Making: Gross Negligence Manslaughter and Corporate Manslaughter.Helen Smith - 2024 - The New Bioethics 30 (3):228-242.
    This paper discusses the risk of gross negligence manslaughter (GNM) and corporate manslaughter charges (CM) when clinicians use an artificially intelligent system’s (AIS’s) outputs in their practice. I identify the elements of these offenses within the context of the law of England and Wales and explore how they could be applied in a potential scenario where a patient's death has followed AIS use by a clinician. The risk of a conviction due to making an AIS-augmented workplace mistake highlights the (...)
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  20.  23
    Graph contrastive learning networks with augmentation for legal judgment prediction.Yao Dong, Xinran Li, Jin Shi, Yongfeng Dong & Chen Chen - forthcoming - Artificial Intelligence and Law:1-24.
    Legal Judgment Prediction (LJP) is a typical application of Artificial Intelligence in the intelligent judiciary. Current research primarily focuses on automatically predicting law articles, charges, and terms of penalty based on the fact description of cases. However, existing methods for LJP have limitations, such as neglecting document structure and ignoring case similarities. We propose a novel framework called Graph Contrastive Learning with Augmentation (GCLA) for legal judgment prediction to address these issues. GCLA constructs trainable document-level graphs for fact description, (...)
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  21.  17
    Augmented transition networks as psychological models of sentence comprehension.Ronald M. Kaplan - 1972 - Artificial Intelligence 3 (C):77-100.
  22. The Problem Of Moral Agency In Artificial Intelligence.Riya Manna & Rajakishore Nath - 2021 - 2021 IEEE Conference on Norbert Wiener in the 21st Century (21CW).
    Humans have invented intelligent machinery to enhance their rational decision-making procedure, which is why it has been named ‘augmented intelligence’. The usage of artificial intelligence (AI) technology is increasing enormously with every passing year, and it is becoming a part of our daily life. We are using this technology not only as a tool to enhance our rationality but also heightening them as the autonomous ethical agent for our future society. Norbert Wiener envisaged ‘Cybernetics’ with a view (...)
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  23.  66
    Artificial Intelligence and Medical Humanities.Kirsten Ostherr - 2022 - Journal of Medical Humanities 43 (2):211-232.
    The use of artificial intelligence in healthcare has led to debates about the role of human clinicians in the increasingly technological contexts of medicine. Some researchers have argued that AI will augment the capacities of physicians and increase their availability to provide empathy and other uniquely human forms of care to their patients. The human vulnerabilities experienced in the healthcare context raise the stakes of new technologies such as AI, and the human dimensions of AI in healthcare have particular (...)
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  24.  30
    Artificial intelligence as cognitive enhancement? From Decision Support Systems (DSSs) to Reflection machines.Zaida Espinosa Zárate - 2023 - Veritas: Revista de Filosofía y Teología 55:93-115.
    Resumen: El presente trabajo analiza si los Sistemas de apoyo a la decisión (DSSs) y otros asistentes para su uso, como las Reflection machines o los Personal Assistants that Learn (PAL), contribuyen de hecho a una mejora cognitiva, como habitualmente se tiende a asumir. Es decir, se examina si su potencial para expandir e impulsar la acción de las facultades cognoscitivas se ve efectivamente actualizado y, en consecuencia, si sirven para reafirmar el sentido capacitante de la IA y la extensión (...)
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  25.  57
    Touching intelligence.David Morris - 2002 - Journal of the Philosophy of Sport 29 (149-162):149-162.
    Touch requires that one move in concert with one's tactile object. This provokes the question how joint movement of this sort yields perception of tactile qualities of the object vs. tactile qualities of an object-augmented body. Phenomenological analysis together with results of dynamic systems theory (in psychology) suggest that the difference stems from 'resonant' vs. 'reverberant' modalities of body-object movement. The further suggestion is that tactile movement is itself a form of discriminative intelligence, and that the peculiar intimacy (...)
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  26.  22
    Exploring Computational Thinking Skills Training Through Augmented Reality and AIoT Learning.Yu-Shan Lin, Shih-Yeh Chen, Chia-Wei Tsai & Ying-Hsun Lai - 2021 - Frontiers in Psychology 12.
    Given the widespread acceptance of computational thinking in educational systems around the world, primary and higher education has begun thinking about how to cultivate students' CT competences. The artificial intelligence of things combines artificial intelligence and the Internet of things and involves integrating sensing technologies at the lowest level with relevant algorithms in order to solve real-world problems. Thus, it has now become a popular technological application for CT training. In this study, a novel AIoT learning with (...) Reality technology was proposed and explored the effect of CT skills. The students used AR applications to understand AIoT applications in practice, attempted the placement of different AR sensors in actual scenarios, and further generalized and designed algorithms. Based on the results of the experimental course, we explored the influence of prior knowledge and usage intention on students' CT competence training. The results show that proposed AIoT learning can increase students' learning intention and that they had a positive impact on problem solving and comprehension with AR technology, as well as application planning and design. (shrink)
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  27. understanding and augmenting human morality: the actwith model of conscience.Jeffrey White - 2009 - In L. Magnani (ed.), computational intelligence.
    Abstract. Recent developments, both in the cognitive sciences and in world events, bring special emphasis to the study of morality. The cognitive sci- ences, spanning neurology, psychology, and computational intelligence, offer substantial advances in understanding the origins and purposes of morality. Meanwhile, world events urge the timely synthesis of these insights with tra- ditional accounts that can be easily assimilated and practically employed to augment moral judgment, both to solve current problems and to direct future action. The object of (...)
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  28.  33
    Non-augmented reality: why we shouldn’t look through technology.Kyle van Oosterum - 2024 - AI and Society 39 (5):2599-2600.
  29.  66
    The Future of Work: Augmentation or Stunting?Markus Furendal & Karim Jebari - 2023 - Philosophy and Technology (2):1-22.
    The last decade has seen significant improvements in Artificial Intelligence (AI) technologies, including robotics, machine vision, speech recognition and text generation. Increasing automation will undoubtedly affect the future of work, and discussions on how the development of AI in the workplace will impact labor markets often include two scenarios: (1) labor replacement and (2) labor enabling. The former involves replacing workers with machines, while the latter assumes that human-machine cooperation can significantly improve worker productivity. In this context, it is (...)
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  30.  25
    Scientific Observation Is Socio-Materially Augmented Perception: Toward a Participatory Realism.Tom Froese - 2022 - Philosophies 7 (2):37.
    There is an overlooked similarity between three classic accounts of the conditions of object experience from three distinct disciplines. Sociology: the “inversion” that accompanies discovery in the natural sciences, as local causes of effects are reattributed to an observed object. Psychology: the “externalization” that accompanies mastery of a visual–tactile sensory substitution interface, as tactile sensations of the proximal interface are transformed into vision-like experience of a distal object. Biology: the “projection” that brings forth an animal’s Umwelt, as impressions on its (...)
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  31.  97
    Teasing out Artificial Intelligence in Medicine: An Ethical Critique of Artificial Intelligence and Machine Learning in Medicine.Mark Henderson Arnold - 2021 - Journal of Bioethical Inquiry 18 (1):121-139.
    The rapid adoption and implementation of artificial intelligence in medicine creates an ontologically distinct situation from prior care models. There are both potential advantages and disadvantages with such technology in advancing the interests of patients, with resultant ontological and epistemic concerns for physicians and patients relating to the instatiation of AI as a dependent, semi- or fully-autonomous agent in the encounter. The concept of libertarian paternalism potentially exercised by AI (and those who control it) has created challenges to conventional (...)
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  32.  21
    Reducing Cognitive Load and Improving Warfighter Problem Solving With Intelligent Virtual Assistants.Celso M. de Melo, Kangsoo Kim, Nahal Norouzi, Gerd Bruder & Gregory Welch - 2020 - Frontiers in Psychology 11:554706.
    Recent times have seen increasing interest in conversational assistants (e.g., Amazon Alexa) designed to help users in their daily tasks. In military settings, it is critical to design assistants that are, simultaneously, helpful and able to minimize the user’s cognitive load. Here we show that embodiment plays a key role in achieving that goal. We present an experiment where participants engaged in the desert survival task in augmented reality. Participants were paired with a voice assistant, an embodied assistant, or (...)
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  33.  39
    Embodied Intelligence: Smooth Coping in the Learning Intelligent Decision Agent Cognitive Architecture.Christian Kronsted, Sean Kugele, Zachariah A. Neemeh, Kevin J. Ryan & Stan Franklin - 2022 - Frontiers in Psychology 13.
    Much of our everyday, embodied action comes in the form of smooth coping. Smooth coping is skillful action that has become habituated and ingrained, generally placing less stress on cognitive load than considered and deliberative thought and action. When performed with skill and expertise, walking, driving, skiing, musical performances, and short-order cooking are all examples of the phenomenon. Smooth coping is characterized by its rapidity and relative lack of reflection, both being hallmarks of automatization. Deliberative and reflective actions provide the (...)
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  34.  4
    L'homme augmenté: futurs de nos cerveaux.Raphaël Gaillard - 2024 - Paris: Bernard Grasset.
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  35.  30
    Bridging divides: Empathy-augmenting technologies and cultural soul-searching.Manh-Tung Ho & Manh-Toan Ho - forthcoming - AI and Society:1-3.
  36.  80
    Using artificial intelligence to prevent crime: implications for due process and criminal justice.Kelly Blount - forthcoming - AI and Society:1-10.
    Traditional notions of crime control often position the police against an individual, known or not yet known, who is responsible for the commission of a crime. However, with increasingly sophisticated technology, policing increasingly prioritizes the prevention of crime, making it necessary to ascertain who, or what class of persons, may be the next likely criminal before a crime can be committed, termed predictive policing. This causes a shift from individualized suspicion toward predictive profiling that may sway the expectations of a (...)
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  37.  47
    The goddess and her icon: body and mind in the era of artificial intelligence.George Zarkadakis - 2024 - AI and Society 39 (1):87-89.
    As the pagan classical world was subsumed into Christianity sexually hyperactive gods and goddesses transmuted into saints, their former statues that glorified the perfection of their bodies smashed into pieces and reimagined as austere two-dimensional icons to be worshipped by the new faithful. That dualistic and polemic narrative, where the soul’s purpose was to annihilate the body, survives today in the distinction between software and hardware, algorithms and robots, the former as the “ghosts” that animate the empty vessels, the “machines”. (...)
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  38.  20
    Public perceptions of artificial intelligence in healthcare: ethical concerns and opportunities for patient-centered care.Kaila Witkowski, Ratna Okhai & Stephen R. Neely - 2024 - BMC Medical Ethics 25 (1):1-11.
    Background In an effort to improve the quality of medical care, the philosophy of patient-centered care has become integrated into almost every aspect of the medical community. Despite its widespread acceptance, among patients and practitioners, there are concerns that rapid advancements in artificial intelligence may threaten elements of patient-centered care, such as personal relationships with care providers and patient-driven choices. This study explores the extent to which patients are confident in and comfortable with the use of these technologies when (...)
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  39.  6
    The Influence of Different Learning Strategies on Pupils’ Learning Motivation: Is Augmented Reality Multimedia Learning Consistent With Traditional Text Learning?Xiaojun Zhao, Miaozhuang Liu & Yaqing Liu - 2022 - Frontiers in Psychology 13.
    How to reduce pupils’ burden and improve learning efficiency? Research shows that non-intelligence factors and learning strategies are the key factors in the effective learning process, and external intervention can play a greater role in these two aspects. The purpose of this study is to explore the effects of different learning strategies on learning motivation under the presentation of augmented reality multimedia or traditional text learning. Sixty third-grade pupils in Hebei Province were selected, and 2 × 3 between-subjects (...)
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  40.  11
    Intelligent Information Filters and Enhanced Reality.Alexander “Sasha” Chislenko - 2013 - In Max More & Natasha Vita-More (eds.), The Transhumanist Reader: Classical and Contemporary Essays on the Science, Technology, and Philosophy of the Human Future. Chichester, West Sussex, UK: Wiley-Blackwell. pp. 138–145.
    I started to think seriously about the ideas of augmented perception and personalized views of reality after reading a number of Internet messages containing proposals to introduce language standards for online communications. Frequently, people suggest restricting certain forms of expression or polishing the language of the posts to make them less offensive and more generally understandable.
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  41.  78
    Rethinking machines: artificial intelligence beyond the philosophy of mind.Daniel Estrada - unknown
    Recent philosophy of mind has increasingly focused on the role of technology in shaping, influencing, and extending our mental faculties. Technology extends the mind in two basic ways: through the creative design of artifacts and the purposive use of instruments. If the meaningful activity of technological artifacts were exhaustively described in these mind-dependent terms, then a philosophy of technology would depend entirely on our theory of mind. In this dissertation, I argue that a mind-dependent approach to technology is mistaken. Instead, (...)
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  42.  14
    Listening without ears: Artificial intelligence in audio mastering.Thomas Birtchnell - 2018 - Big Data and Society 5 (2).
    Since the inception of recorded music there has been a need for standards and reliability across sound formats and listening environments. The role of the audio mastering engineer is prestigious and akin to a craft expert combining scientific knowledge, musical learning, manual precision and skill, and an awareness of cultural fashions and creative labour. With the advent of algorithms, big data and machine learning, loosely termed artificial intelligence in this creative sector, there is now the possibility of automating human (...)
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  43. What Can Artificial Intelligence Do for Scientific Realism?Petr Spelda & Vit Stritecky - 2020 - Axiomathes 31 (1):85-104.
    The paper proposes a synthesis between human scientists and artificial representation learning models as a way of augmenting epistemic warrants of realist theories against various anti-realist attempts. Towards this end, the paper fleshes out unconceived alternatives not as a critique of scientific realism but rather a reinforcement, as it rejects the retrospective interpretations of scientific progress, which brought about the problem of alternatives in the first place. By utilising adversarial machine learning, the synthesis explores possibility spaces of available evidence for (...)
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  44. Present and foreseeable future of artificial intelligence.Luciano Floridi - 2015 - In Fiammetta Sabba (ed.), Noetica versus informatica: Le nuove strutture della comunicazione scientifica Atti del convegno internazionale (Roma 19-20 novembre 2013). pp. 131–136.
    We increasingly rely on AI-related applications (smart technologies) to perform tasks that would be simply impossible by un-aided or un-augmented human intelligence. This is possible because the world is becoming an infosphere increasingly well adapted to AI’s limited capacities. Being able to imagine what adaptive demands this process will place on humanity may help to devise technological solutions that can lower their anthropological costs.
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  45. Transcendence: Measuring Intelligence.Marten Kaas - 2023 - Journal of Science Fiction and Philosophy 6.
    Among the many common criticisms of the Turing test, a valid criticism concerns its scope. Intelligence is a complex and multi-dimensional phenomenon that will require testing using as many different formats as possible. The Turing test continues to be valuable as a source of evidence to support the inductive inference that a machine possesses a certain kind of intelligence and when interpreted as providing a behavioural test for a certain kind of intelligence. This paper raises the novel (...)
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  46.  16
    Search-engine-augmented dialogue response generation with cheaply supervised query production.Ante Wang, Linfeng Song, Qi Liu, Haitao Mi, Longyue Wang, Zhaopeng Tu, Jinsong Su & Dong Yu - 2023 - Artificial Intelligence 319 (C):103874.
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  47.  9
    COHUMAIN: Building the Socio‐Cognitive Architecture of Collective Human–Machine Intelligence.Cleotilde Gonzalez, Henny Admoni, Scott Brown & Anita Williams Woolley - forthcoming - Topics in Cognitive Science.
    In recent years, we have experienced rapid development of advanced technology, machine learning, and artificial intelligence (AI), intended to interact with and augment the abilities of humans in practically every area of life. With the rapid growth of new capabilities, such as those enabled by generative AI (e.g., ChatGPT), AI is increasingly at the center of human communication and collaboration, resulting in a growing recognition of the need to understand how humans and AI can integrate their inputs in collaborative (...)
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  48.  11
    Learning pseudo-tags to augment sparse tagging in hybrid music recommender systems.Ben Horsburgh, Susan Craw & Stewart Massie - 2015 - Artificial Intelligence 219 (C):25-39.
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  49.  9
    Le troisième 'ge de l’intelligence augmentée, dite artificielle.Yann Moulier-Boutang - 2020 - Multitudes 78 (1):86-96.
    Le constat que faisait Herbert Simon, Prix Nobel d’économie 1978, comme quoi l’IA est très éloignée de l’intelligence humaine naviguant dans un monde incertain, reste plus juste que jamais en 2020. D’abord, l’IA manque de rigueur méthodologique sur la constitution et le traitement des données. Pire : après avoir privilégié le modèle de l’intelligence symbolique, qui a trouvé ses limites, elle prend désormais pour modèle l’intelligence intuitive de l’enfant de moins de 6 ans, qui plus est de (...)
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    Work-Related Flow: The Development of a Theoretical Framework Based on the High Involvement HRM Practices With Mediating Role of Affective Commitment and Moderating Effect of Emotional Intelligence.Xiaochen Wang & Shaheryar - 2020 - Frontiers in Psychology 11:564444.
    The long-term success of organizations is mainly attributable to employees’ psychological health. Organizations focusing on promoting and managing the flow (an optimal experience and optimal functioning state) may enhance employees’ well-being and performance to an optimum level. Surprisingly, the literature representing the role of HRM practices for their effect on work-related flow (i.e., intrinsic motivation, absorption, and work enjoyment) is very sparse. Accordingly, by drawing primarily on the job demands-resources model and HRM specific attribution theory, this paper develops a theoretical (...)
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