Results for '*Robotics'

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  1. Chapter Nine Kantian Robotics: Building a Robot to Understand Kant's Transcendental Turn Lawrence M. Hinman.Kantian Robotics - 2007 - In Soraj Hongladarom (ed.), Computing and Philosophy in Asia. Cambridge Scholars Press. pp. 135.
     
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  2.  36
    Service robotics: an emergent technology field at the interface between industry and services.Ingrid Ott - 2012 - Poiesis and Praxis 9 (3-4):219-229.
    The paper at hand analyzes the economic implications of service robots as expected important future technology. The considerations are embedded into global trends, focusing on the interdependencies between services and industry not only in the context of the provision of services but already starting at the level of the innovation process. It is argued that due to the various interdependencies combined with heterogenous application fields, the resulting implications need to be contextualized. Concerning the net labor market effects, it is reasonable (...)
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    Social Robotics, Education, and Religion in the Islamic World: An Iranian Perspective.Minoo Alemi, Alireza Taheri, Azadeh Shariati & Ali Meghdari - 2020 - Science and Engineering Ethics 26 (5):2709-2734.
    The social impact of robotics applied to domains such as education, religion, nursing, and therapy across the world depends on the level of technology as well as the culture in which it is used. By studying how robots are used in Iran, a technologically-savvy country with a long history and a rich culture, we explore their possible impact on interrelated areas of religious and ethical features in education in an Islamic society. To accomplish this task, a preliminary exploratory study was (...)
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  4.  66
    Robotics, philosophy and the problems of autonomy.Willem F. G. Haselager - 2005 - Pragmatics and Cognition 13 (3):515-532.
    Robotics can be seen as a cognitive technology, assisting us in understanding various aspects of autonomy. In this paper I will investigate a difference between the interpretations of autonomy that exist within robotics and philosophy. Based on a brief review of some historical developments I suggest that within robotics a technical interpretation of autonomy arose, related to the independent performance of tasks. This interpretation is far removed from philosophical analyses of autonomy focusing on the capacity to choose goals for oneself. (...)
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  5.  81
    Robotics, philosophy and the problems of autonomy.Willem F. G. Haselager - 2005 - Pragmatics and Cognition 13 (3):515-532.
    Robotics can be seen as a cognitive technology, assisting us in understanding various aspects of autonomy. In this paper I will investigate a difference between the interpretations of autonomy that exist within robotics and philosophy. Based on a brief review of some historical developments I suggest that within robotics a technical interpretation of autonomy arose, related to the independent performance of tasks. This interpretation is far removed from philosophical analyses of autonomy focusing on the capacity to choose goals for oneself. (...)
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  6.  29
    Robotics Has a Race Problem.Robert Sparrow - 2020 - Science, Technology, and Human Values 45 (3):538-560.
    If people are inclined to attribute race to humanoid robots, as recent research suggests, then designers of social robots confront a difficult choice. Most existing social robots have white surfaces and are therefore, I suggest, likely to be perceived as White, exposing their designers to accusations of racism. However, manufacturing robots that would be perceived as Black, Brown, or Asian risks representing people of these races as slaves, especially given the historical associations between robots and slaves at the very origins (...)
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  7.  6
    Robotics, AI and the Future of Law.Marcelo Corrales Compagnucci, Mark Fenwick & Nikolaus Forgó (eds.) - 2018 - Singapore: Imprint: Springer.
    Artificial intelligence and related technologies are changing both the law and the legal profession. In particular, technological advances in fields ranging from machine learning to more advanced robots, including sensors, virtual realities, algorithms, bots, drones, self-driving cars, and more sophisticated "human-like" robots are creating new and previously unimagined challenges for regulators. These advances also give rise to new opportunities for legal professionals to make efficiency gains in the delivery of legal services. With the exponential growth of such technologies, radical disruption (...)
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  8. Measuring progress in robotics: Benchmarking and the ‘measure-target confusion’.Vincent C. Müller - 2019 - In Fabio Bonsignorio, John Hallam, Elena Messina & Angel P. Del Pobil (eds.), Metrics of sensory motor coordination and integration in robots and animals. Springer. pp. 169-179.
    While it is often said that robotics should aspire to reproducible and measurable results that allow benchmarking, I argue that a focus on benchmarking can be a hindrance for progress in robotics. The reason is what I call the ‘measure-target confusion’, the confusion between a measure of progress and the target of progress. Progress on a benchmark (the measure) is not identical to scientific or technological progress (the target). In the past, several academic disciplines have been led into pursuing only (...)
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  9. Robotics - Fast and Curious : A CNN for Ethical Deep Learning Musical Generation.Richard Savery & Gil Weinberg - 2022 - In Martin Clancy (ed.), Artificial intelligence and music ecosystem. New York: Routledge.
     
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  10. Towards a Vygotskyan Cognitive Robotics: The Role of Language as a Cognitive Tool.Marco Mirolli - 2011 - New Ideas in Psychology 29:298-311.
    Cognitive Robotics can be defined as the study of cognitive phenomena by their modeling in physical artifacts such as robots. This is a very lively and fascinating field which has already given fundamental contributions to our understanding of natural cognition. Nonetheless, robotics has to date addressed mainly very basic, low­level cognitive phenomena like sensory­motor coordination, perception, and navigation, and it is not clear how the current approach might scale up to explain high­level human cognition. In this paper we argue that (...)
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  11. Institutional Robotics.Porfirio Silva & Pedro U. Lima - 2007 - In F. Almeida e Costa et al (ed.), Advances in Artificial Life. ECAL 2007. Springer Verlag.
    Pioneer approaches to Artificial Intelligence have traditionally neglected, in a chronological sequence, the agent body, the world where the agent is situated, and the other agents. With the advent of Collective Robotics approaches, important progresses were made toward embodying and situating the agents, together with the introduction of collective intelligence. However, the currently used models of social environments are still rather poor, jeopardizing the attempts of developing truly intelligent robot teams. In this paper, we propose a roadmap for a new (...)
     
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  12.  48
    Service robotics: do you know your new companion? Framing an interdisciplinary technology assessment.Indra Spiecker Genannt Döhmann, Ingrid Ott, Mathias Gutmann, Martin Fischer, Thomas Dreier, Rüdiger Dillmann & Michael Decker - 2011 - Poiesis and Praxis 8 (1):25-44.
    Service-Robotic—mainly defined as “non-industrial robotics”—is identified as the next economical success story to be expected after robots have been ubiquitously implemented into industrial production lines. Under the heading of service-robotic, we found a widespread area of applications reaching from robotics in agriculture and in the public transportation system to service robots applied in private homes. We propose for our interdisciplinary perspective of technology assessment to take the human user/worker as common focus. In some cases, the user/worker is the effective subject (...)
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  13.  32
    A critique of robotics in health care.Arne Maibaum, Andreas Bischof, Jannis Hergesell & Benjamin Lipp - 2022 - AI and Society 37 (2):467-477.
    When the social relevance of robotic applications is addressed today, the use of assistive technology in care settings is almost always the first example. So-called care robots are presented as a solution to the nursing crisis, despite doubts about their technological readiness and the lack of concrete usage scenarios in everyday nursing practice. We inquire into this interconnection of social robotics and care. We show how both are made available for each other in three arenas: innovation policy, care organization, and (...)
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  14. Social Robotics as Moral Education? Fighting Discrimination Through the Design of Social Robots.Fabio Fossa - 2022 - In Pekka Mäkelä, Raul Hakli & Joanna Seibt (eds.), Social Robots in Social Institutions. Proceedings of Robophilosophy’22. Amsterdam: IOS Press. pp. 184-193.
    Recent research in the field of social robotics has shed light on the considerable role played by biases in the design of social robots. Cues that trigger widespread biased expectations are implemented in the design of social robots to increase their familiarity and boost interaction quality. Ethical discussion has focused on the question concerning the permissibility of leveraging social biases to meet the design goals of social robotics. As a result, integrating ethically problematic social biases in the design of robots-such (...)
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  15. Robotics and Development of Intellectual Abilities in Children.Miguel Alvarez - 2006 - International Review of Information Ethics 6:84-90.
    It is necessary to transform the educative experiences into the classrooms so that they favor the development of intellectual abilities of children and teenagers. We must take advantage of the new opportunities that offer information technologies to organize learning environments which they favor those experiences. We considered that to arm and to program robots, of the type of LEGO Mind Storms or the so called "crickets", developed by M. Resnik from MIT, like means so that they children them and young (...)
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  16.  8
    Robotics-Driven Activities: Can They Improve Middle School Science Learning?Mike Robinson - 2005 - Bulletin of Science, Technology and Society 25 (1):73-84.
    This study used case studies from three science teachers to compare three groups of students studying Grade 8 physics using Robolab instead of traditional lab materials. The three teachers represented an English as a second language class, a regular class with many English language learner students, and a Mathematics, Engineering, Science Achievement class of afterschool volunteer students. The teachers responded to nine questions regarding issues such as how robotics addresses the middle school physics standards, promotes inquiry learning and science literacy (...)
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  17. Mental robotics.Domenico Parisi - 2007 - In Antonio Chella & Riccardo Manzotti (eds.), Artificial Consciousness. Imprint Academic. pp. 191-211.
     
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  18. Mind the gap: responsible robotics and the problem of responsibility.David J. Gunkel - 2020 - Ethics and Information Technology 22 (4):307-320.
    The task of this essay is to respond to the question concerning robots and responsibility—to answer for the way that we understand, debate, and decide who or what is able to answer for decisions and actions undertaken by increasingly interactive, autonomous, and sociable mechanisms. The analysis proceeds through three steps or movements. It begins by critically examining the instrumental theory of technology, which determines the way one typically deals with and responds to the question of responsibility when it involves technology. (...)
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  19.  35
    Social Robotics and the Good Life: The Normative Side of Forming Emotional Bonds with Robots.Janina Loh & Wulf Loh (eds.) - 2022 - Transcript Verlag.
    Robots as social companions in close proximity to humans have a strong potential of becoming more and more prevalent in the coming years, especially in the realms of elder day care, child rearing, and education. As human beings, we have the fascinating ability to emotionally bond with various counterparts, not exclusively with other human beings, but also with animals, plants, and sometimes even objects. Therefore, we need to answer the fundamental ethical questions that concern human-robot-interactions per se, and we need (...)
  20.  25
    Cultural robotics: The culture of robotics and robotics in culture.H. Samani, E. Saadatian, N. Pang, D. Polydorou, O. N. N. Fernando, R. Nakatsu & J. T. K. V. Koh - unknown
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  21.  27
    Urban robotics and responsible urban innovation.Michael Nagenborg - 2020 - Ethics and Information Technology 22 (4):345-355.
    Robots are leaving factories and entering urban spaces. In this paper, I will explore how we can integrate robots of various types into the urban landscape. I will distinguish between two perspectives: the responsible design and use of urban robots and robots as part of responsible urban innovations. The first viewpoint considers issues arising from the use of a robot in an urban environment. To develop a substantive understanding of Responsible Urban Robotics, we need to focus on normative implications of (...)
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  22.  60
    Ethics of healthcare robotics.Bernd Carsten Stahl & Mark Coeckelbergh - 2016 - Robotics And Autonomous Systems 86:152-161.
    How can we best identify, understand, and deal with ethical and societal issues raised by healthcare robotics? This paper argues that next to ethical analysis, classic technology assessment, and philosophical speculation we need forms of reflection, dialogue, and experiment that come, quite literally, much closer to innovation practices and contexts of use. The authors discuss a number of ways how to achieve that. Informed by their experience with “embedded” ethics in technical projects and with various tools and methods of responsible (...)
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  23. New Approaches to Robotics.Rodney A. Brooks - unknown
    In order to build autonomous robots that can carry out useful work in unstructured environments new approaches have been developed to building intelligent systems. The relationship to traditional academic robotics and traditional artificial intelligence is examined. In the new approaches a tight coupling of sensing to action produces architectures for intelligence that are networks of simple computational elements which are quite broad, but not very deep. Recent work within this approach has demonstrated the use of representations, expectations, plans, goals, and (...)
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  24.  22
    Redefining culture in cultural robotics.Mark L. Ornelas, Gary B. Smith & Masoumeh Mansouri - 2023 - AI and Society 38 (2):777-788.
    Cultural influences are pervasive throughout human behaviour, and as human–robot interactions become more common, roboticists are increasingly focusing attention on how to build robots that are culturally competent and culturally sustainable. The current treatment of culture in robotics, however, is largely limited to the definition of culture as national culture. This is problematic for three reasons: it ignores subcultures, it loses specificity and hides the nuances in cultures, and it excludes refugees and stateless persons. We propose to shift the focus (...)
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  25.  37
    Robotics, biological grounding and the Fregean tradition.Marti Hooijmans & Fred Keijzer - 2007 - Pragmatics and Cognition 15 (3):515-546.
    Dynamic, embodied and situated cognition set up organism-environment interaction — agency for short — as the core of cognitive systems. Robotics became an important way to study this behavioral kernel of cognition. In this paper, we discuss the implications of what we call the biological grounding problem for robotic studies: Natural and artificial agents are hugely different and it will be necessary to articulate what must be replicated by artificial agents such as robots. Interestingly, once this issue is explicitly raised, (...)
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  26. PaABB® Robotics Training Centre in Trnava.Peter Ducháček - 2000 - IRB: Ethics & Human Research 2400:M2000.
     
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  27. New horizons on robotics: ethics challenges.António Moniz - 2019 - In Maria Céu do Patrão Neves (ed.), Ethics, Science and Society: Challenges for BioPolitics. pp. 57-67.
    In this chapter, the focus is on robotics development and its ethical implications, especially on some particular applications or interaction principles. In recent years, such developments have happened very quickly, based on the advances achieved in the last few decades in industrial robotics. The technological developments in manufacturing, with the implementation of Industry 4.0 strategies in most industrialized countries, and the dissemination of production strategies into services and health sectors, enabled robotics to develop in a variety of new directions. Policy (...)
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  28.  26
    Robotics and Well-Being.Maria Isabel Aldinhas Ferreira, João Silva Sequeira, Gurvinder Singh Virk, Mohammad Osman Tokhi & Endre E. Kadar (eds.) - 2019 - Springer Verlag.
    This book highlights some of the most pressing safety, ethical, legal and societal issues related to the diverse contexts in which robotic technologies apply. Focusing on the essential concept of well-being, it addresses topics that are fundamental not only for research, but also for industry and end-users, discussing the challenges in a wide variety of applications, including domestic robots, autonomous manufacturing, personal care robots and drones.
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  29.  22
    Robotics and Well-Being.Maria Isabel Aldinhas Ferreira, Ana S. Aníbal, P. Beardsley, Selmer Bringsjord, Paulo S. Carvalho, Raja Chatila, Vladimir Estivill-Castro, Nicola Fabiano, Sarah R. Fletcher, Rodolphe Gelin, Rikhiya Ghosh, Naveen Sundar Govindarajulu, John C. Havens, Teegan L. Johnson, Endre E. Kadar, Jon Larreina, Pedro U. Lima, Stuti Thapa Magar, Bertram F. Malle, André Martins, Michael P. Musielewicz, A. Mylaeus, Matthew Peveler, Matthias Scheutz, João Silva Sequeira, R. Siegwart, B. Tranter & A. Vempati (eds.) - 2019 - Springer Verlag.
    This book highlights some of the most pressing safety, ethical, legal and societal issues related to the diverse contexts in which robotic technologies apply. Focusing on the essential concept of well-being, it addresses topics that are fundamental not only for research, but also for industry and end-users, discussing the challenges in a wide variety of applications, including domestic robots, autonomous manufacturing, personal care robots and drones.
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  30.  91
    Hegelian phenomenology and robotics.Donald S. Borrett, David Shih, Michael Tomko, Sarah Borrett & Hon C. Kwan - 2011 - International Journal of Machine Consciousness 3 (01):219-235.
    A formalism is developed that treats a robot as a subject that can interpret its own experience rather than an object that is interpreted within our experience. A regulative definition of a meaningful experience in robots is proposed in which the present sensible experience is considered meaningful to the agent, as the subject of the experience, if it can be related to the agent's temporal horizons. This definition is validated by demonstrating that such an experience in evolutionary autonomous agents is (...)
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  31. Toward Abiozoomorphism in Social Robotics? Discussion of a New Category between Mechanical Entities and Living Beings.Jaana Parviainen & Tuuli Turja - 2021 - Journal of Posthuman Studies 5 (2):150–168.
    Social robotics designed to enhance anthropomorphism and zoomorphism seeks to evoke feelings of empathy and other positive emotions in humans. While it is difficult to treat these machines as mere artefacts, the simulated lifelike qualities of robots easily lead to misunderstandings that the machines could be intentional. In this post-anthropocentrically positioned article, we look for a solution to the dilemma by developing a novel concept, “abiozoomorphism.” Drawing on Donna Haraway’s conceptualization of companion species, we address critical aspects of why robots (...)
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  32.  51
    The Problem of Meaning in AI and Robotics: Still with Us after All These Years.Tom Froese & Shigeru Taguchi - 2019 - Philosophies 4 (2):14.
    In this essay we critically evaluate the progress that has been made in solving the problem of meaning in artificial intelligence (AI) and robotics. We remain skeptical about solutions based on deep neural networks and cognitive robotics, which in our opinion do not fundamentally address the problem. We agree with the enactive approach to cognitive science that things appear as intrinsically meaningful for living beings because of their precarious existence as adaptive autopoietic individuals. But this approach inherits the problem of (...)
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  33. Towards cognitive robotics: Robotics, biology and developmental psychology.Mark Lee, Ulrich Nehmzow & Marcos Rodrigues - 2012 - In David McFarland, Keith Stenning & Maggie McGonigle (eds.), The Complex Mind. Palgrave-Macmillan. pp. 103.
    This chapter summarises the autors' work in embodied robotics, emphasising the need for scientific tools to measure chaos and sensitivity to intial conditions, the role of novelty and development, and the relevance of human behaviour in natural environments.
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  34.  14
    Epigenetic robotics: Modelling cognitive development in robotic systems.Giorgio Metta & Luc Berthouze - 2006 - Interaction Studies 7 (2):129-134.
  35.  22
    Developing socially inspired robotics through the application of human analogy: capabilities and social practice.Neil McBride - 2020 - AI and Society 35 (4):857-868.
    Socially inspired robotics involves drawing on the observation and study of human social interactions to apply them to the design of sociable robots. As there is increasing expectation that robots may participate in social care and provide some relief for the increasing shortage of human care workers, social interaction with robots becomes of increasing importance. This paper demonstrates the potential of socially inspired robotics through the exploration of a case study of the interaction of a partially sighted social worker with (...)
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  36. Cognitive robotics, enactive perception, and learning in the real world.A. Morse & Tom Ziemke - unknown
     
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  37.  34
    Legal aspects of service robotics.Thomas Dreier & Indra Spiecker Genannt Döhmann - 2012 - Poiesis and Praxis 9 (3-4):201-217.
    The emergent use of service robots in more and more areas of social life raises a number of legal issues which have to be addressed in order to apply and adapt the existing legal framework to this new technology. The article provides an overview of law as a means to regulate and govern technology and discusses fundamental issues of the relationship between law and technology. It then goes on to address a number of relevant problems in the field of service (...)
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  38. Situated robotics.Maja J. Matarić - 2002 - In Lynn Nadel (ed.), The Encyclopedia of Cognitive Science. Macmillan.
  39. Towards a cognitive robotics.Andy Clark & Rick Grush - 1999 - Adaptive Behavior 7 (1):5-16.
    There is a definite challenge in the air regarding the pivotal notion of internal representation. This challenge is explicit in, e.g., van Gelder, 1995; Beer, 1995; Thelen & Smith, 1994; Wheeler, 1994; and elsewhere. We think it is a challenge that can be met and that (importantly) can be met by arguing from within a general framework that accepts many of the basic premises of the work (in new robotics and in dynamical systems theory) that motivates such scepticism in the (...)
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  40.  58
    Relationalism through Social Robotics.Raya A. Jones - 2013 - Journal for the Theory of Social Behaviour 43 (4):405-424.
    Social robotics is a rapidly developing industry-oriented area of research, intent on making robots in social roles commonplace in the near future. This has led to rising interest in the dynamics as well as ethics of human-robot relationships, described here as a nascent relational turn. A contrast is drawn with the 1990s’ paradigm shift associated with relational-self themes in social psychology. Constructions of the human-robot relationship reproduce the “I-You-Me” dominant model of theorising about the self with biases that (as in (...)
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  41.  10
    Evolutionary robotics: The biology, intelligence, and technology of self‐organizing machines.Jeffrey L. Krichmar - 2001 - Complexity 6 (3):51-53.
  42. Ethics in robotics research: CERNA recommendations.Alexei Grinbaum & Raja Chatila - 2017 - IEEE Robotics and Automation Magazine (99):1-8.
    This article summarizes the recommendations concerning robotics as issued by the Commission for the Ethics of Research in Information Sciences and Technologies (CERNA), the French advisory commission for the ethics of information and communication technology (ICT) research. Robotics has numerous applications in which its role can be overwhelming and may lead to unexpected consequences. In this rapidly evolving technological environment, CERNA does not set novel ethical standards but seeks to make ethical deliberation inseparable from scientific activity. Additionally, it provides tools (...)
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  43. From Robotics and Cypernetic Vehicles to Autonomous Systems: the organism lost and found.C. Emmeche - 2001 - Communication and Cognition: An Interdisciplinary Quarterly Journal:159-187.
     
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  44.  2
    Epigenetic robotics.Giorgio Metta & Luc Berthouze - 2006 - Interaction Studies. Social Behaviour and Communication in Biological and Artificial Systemsinteraction Studies / Social Behaviour and Communication in Biological and Artificial Systemsinteraction Studies 7 (2):129-134.
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  45.  42
    Anthropomorphism in social robotics: empirical results on human–robot interaction in hybrid production workplaces.Anja Richert, Sarah Müller, Stefan Schröder & Sabina Jeschke - 2018 - AI and Society 33 (3):413-424.
    New forms of artificial intelligence on the one hand and the ubiquitous networking of “everything with everything” on the other hand characterize the fourth industrial revolution. This results in a changed understanding of human–machine interaction, in new models for production, in which man and machine together with virtual agents form hybrid teams. The empirical study “Socializing with robots” aims to gain insight especially into conditions of development and processes of hybrid human–machine teams. In the experiment, human–robot actions and interactions were (...)
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  46.  36
    Mindshaping and Robotics.Víctor Fernández Castro - 2017 - In Raul Hakli & Johanna Seibt (eds.), Sociality and Normativity for Robots. Studies in the Philosophy of Sociality. Cham: Springer. pp. 115-135.
    Social robotics attempts to build robots able to interact with humans and other robots. Philosophical and scientific research in social cognition can provide social robotics research with models of social cognition to implement those models in mechanic agents. The aim of this paper is twofold: firstly, I present and defend a framework in social cognition known as mindshaping. According to it, human beings are biologically predisposed to learn and teach cultural and rational norms and complex cultural patterns of behavior that (...)
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  47. Developmental robotics.Pierre-Yves Oudeyer - 2011 - In Norbert M. Seel (ed.), Encyclopedia of the Sciences of Learning. Springer Verlag.
  48. From responsible robotics towards a human rights regime oriented to the challenges of robotics and artificial intelligence.Hin-Yan Liu & Karolina Zawieska - 2020 - Ethics and Information Technology 22 (4):321-333.
    As the aim of the responsible robotics initiative is to ensure that responsible practices are inculcated within each stage of design, development and use, this impetus is undergirded by the alignment of ethical and legal considerations towards socially beneficial ends. While every effort should be expended to ensure that issues of responsibility are addressed at each stage of technological progression, irresponsibility is inherent within the nature of robotics technologies from a theoretical perspective that threatens to thwart the endeavour. This is (...)
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  49.  33
    Disengagement with ethics in robotics as a tacit form of dehumanisation.Karolina Zawieska - 2020 - AI and Society 35 (4):869-883.
    Over the past two decades, ethical challenges related to robotics technologies have gained increasing interest among different research and non-academic communities, in particular through the field of roboethics. While the reasons to address roboethics are clear, why not to engage with ethics needs to be better understood. This paper focuses on a limited or lacking engagement with ethics that takes place within some parts of the robotics community and its implications for the conceptualisation of the human being. The underlying assumption (...)
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  50. Ethics and Robotics.Raphael Capurro & Michael Nagenborg (eds.) - 2009 - Akademische Verlagsgesellschaft.
    P. M. Asaro: What should We Want from a Robot Ethic? G. Tamburrini: Robot Ethics: A View from the Philosophy of Science B. Becker: Social Robots - Emotional Agents: Some Remarks on Naturalizing Man-machine Interaction E. Datteri, G. Tamburrini: Ethical Reflections on Health Care Robotics P. Lin, G. Bekey, K. Abney: Robots in War: Issues of Risk and Ethics J. Altmann: Preventive Arms Control for Uninhabited Military Vehicles J. Weber: Robotic warfare, Human Rights & The Rhetorics of Ethical Machines T. (...)
     
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