Results for 'external human–machine interfaces'

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  1. External Human–Machine Interfaces for Autonomous Vehicle-to-Pedestrian Communication: A Review of Empirical Work. [REVIEW]Alexandros Rouchitsas & Håkan Alm - 2019 - Frontiers in Psychology 10.
    Interaction between drivers and pedestrians is often facilitated by informal communicative cues, like hand gestures, facial expressions, and eye contact. In the near future, however, when semi- and fully autonomous vehicles are introduced into the traffic system, drivers will gradually assume the role of mere passengers, who are casually engaged in non-driving-related activities and, therefore, unavailable to participate in traffic interaction. In this novel traffic environment, advanced communication interfaces will need to be developed that inform pedestrians of the current (...)
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  2.  16
    Corrigendum: External Human–Machine Interfaces for Autonomous Vehicle-to-Pedestrian Communication: A Review of Empirical Work. [REVIEW]Alexandros Rouchitsas & Håkan Alm - 2020 - Frontiers in Psychology 11.
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  3.  12
    Toward a Holistic Communication Approach to an Automated Vehicle's Communication With Pedestrians: Combining Vehicle Kinematics With External Human-Machine Interfaces for Differently Sized Automated Vehicles.Merle Lau, Meike Jipp & Michael Oehl - 2022 - Frontiers in Psychology 13.
    Future automated vehicles of different sizes will share the same space with other road users, e. g., pedestrians. For a safe interaction, successful communication needs to be ensured, in particular, with vulnerable road users, such as pedestrians. Two possible communication means exist for AVs: vehicle kinematics for implicit communication and external human-machine interfaces for explicit communication. However, the exact interplay is not sufficiently studied yet for pedestrians' interactions with AVs. Additionally, very few other studies focused on the interplay (...)
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  4.  9
    Decision-Making in the Human-Machine Interface.J. Benjamin Falandays, Samuel Spevack, Philip Pärnamets & Michael Spivey - 2021 - Frontiers in Psychology 12.
    If our choices make us who we are, then what does that mean when these choices are made in the human-machine interface? Developing a clear understanding of how human decision making is influenced by automated systems in the environment is critical because, as human-machine interfaces and assistive robotics become even more ubiquitous in everyday life, many daily decisions will be an emergent result of the interactions between the human and the machine – not stemming solely from the human. For (...)
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  5. Brain Machine Interface and Human Enhancement – An Ethical Review.Karim Jebari - 2013 - Neuroethics 6 (3):617-625.
    Brain machine interface (BMI) technology makes direct communication between the brain and a machine possible by means of electrodes. This paper reviews the existing and emerging technologies in this field and offers a systematic inquiry into the relevant ethical problems that are likely to emerge in the following decades.
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  6.  49
    Embodiment of a virtual prosthesis through training using an EMG-based human-machine interface: Case series.Karina Aparecida Rodrigues, João Vitor da Silva Moreira, Daniel José Lins Leal Pinheiro, Rodrigo Lantyer Marques Dantas, Thaís Cardoso Santos, João Luiz Vieira Nepomuceno, Maria Angélica Ratier Jajah Nogueira, Esper Abrão Cavalheiro & Jean Faber - 2022 - Frontiers in Human Neuroscience 16:870103.
    Therapeutic strategies capable of inducing and enhancing prosthesis embodiment are a key point for better adaptation to and acceptance of prosthetic limbs. In this study, we developed a training protocol using an EMG-based human-machine interface that was applied in the preprosthetic rehabilitation phase of people with amputation. This is a case series with the objective of evaluating the induction and enhancement of the embodiment of a virtual prosthesis. Six men and a woman with unilateral transfemoral traumatic amputation without previous use (...)
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  7.  15
    Brain-machine interface: New challenge for humanity.Nemanja Nikolic, Ljubisa Bojic & Lana Tucakovic - 2022 - Filozofija I Društvo 33 (2):283-296.
    The aim of this paper is to clarify specific aspects of the impact of the brain-machine interface on our understanding of subjectivity. The brain-machine interface is presented as a phase of cyborgization of humans. Some projects in the field of brain-machine interface are aimed at enabling consensual telepathy - communication without symbolic mediation. Consensual telepathy refers to one of potential ways of transmission of information within singularity. Therefore, consensual telepathy is an important aspect of singularity. Singularity or human-machine symbiosis shows (...)
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  8.  22
    Assessment of Drivers’ Perceptions of Connected Vehicle–Human Machine Interface for Driving Under Adverse Weather Conditions: Preliminary Findings From Wyoming.Mohamed M. Ahmed, Guangchuan Yang & Sherif Gaweesh - 2020 - Frontiers in Psychology 11.
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  9.  33
    Brain–Machine Interfaces and the Integral Person.Christopher M. Reilly - 2020 - The National Catholic Bioethics Quarterly 20 (1):47-58.
    Physically enhancing brain–machine interfaces communicate elec­tronically with the patient’s mind in both directions. They present significant opportunities to improve a patient’s health and to restore his or her physical function, but they also present problems for the patient’s sense of agency and self. This is exacerbated by notions of extension and enhancement that are not grounded in an authentic human anthropology that describes the inherently dignified person as an integral union of body and soul.
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  10.  87
    Brain-Machine Interfaces and Personal Responsibility for Action - Maybe Not As Complicated After All.Søren Holm & Teck Chuan Voo - 2011 - Studies in Ethics, Law, and Technology 4 (3).
    This comment responds to Kevin Warwick’s article on predictability and responsibility with respect to brain-machine interfaces in action. It compares conventional responsibility for device use with the potential consequences of phenomenological human-machine integration which obscures the causal chain of an act. It explores two senses of “responsibility”: 1) when it is attributed to a person, suggesting the morally important way in which the person is a causal agent, and 2) when a person is accountable and, on the basis of (...)
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  11.  13
    Brain-Machine Interfaces to Assist the Blind.Maurice Ptito, Maxime Bleau, Ismaël Djerourou, Samuel Paré, Fabien C. Schneider & Daniel-Robert Chebat - 2021 - Frontiers in Human Neuroscience 15:638887.
    The loss or absence of vision is probably one of the most incapacitating events that can befall a human being. The importance of vision for humans is also reflected in brain anatomy as approximately one third of the human brain is devoted to vision. It is therefore unsurprising that throughout history many attempts have been undertaken to develop devices aiming at substituting for a missing visual capacity. In this review, we present two concepts that have been prevalent over the last (...)
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  12.  11
    Brain-Machine Interfaces in the Completely Locked-In and Stroke.Birbaumer Niels - 2015 - Frontiers in Human Neuroscience 9.
  13.  21
    Brain Machine Interface for forces and motion based on musculo-skeletal model.Koike Yasuharu, Kambara Hiroyuki & Yoshimura Natsue - 2015 - Frontiers in Human Neuroscience 9.
  14.  26
    Thoughts Unlocked by Technology—a Survey in Germany About Brain-Computer Interfaces.J. R. Schmid, O. Friedrich, S. Kessner & R. J. Jox - 2021 - NanoEthics 15 (3):303-313.
    A brain-computer interface is a rapidly evolving neurotechnology connecting the human brain with a computer. In its classic form, brain activity is recorded and used to control external devices like protheses or wheelchairs. Thus, BCI users act with the power of their thoughts. While the initial development has focused on medical uses of BCIs, non-medical applications have recently been gaining more attention, for example in automobiles, airplanes, and the entertainment context. However, the attitudes of the general public towards BCIs (...)
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  15.  20
    Effect of External Force on Agency in Physical Human-Machine Interaction.Satoshi Endo, Jakob Fröhner, Selma Musić, Sandra Hirche & Philipp Beckerle - 2020 - Frontiers in Human Neuroscience 14.
  16.  23
    Computers as Interactive Machines: Can We Build an Explanatory Abstraction?Alice Martin, Mathieu Magnaudet & Stéphane Conversy - 2023 - Minds and Machines 33 (1):83-112.
    In this paper, we address the question of what current computers are from the point of view of human-computer interaction. In the early days of computing, the Turing machine (TM) has been the cornerstone of the understanding of computers. The TM defines what can be computed and how computation can be carried out. However, in the last decades, computers have evolved and increasingly become interactive systems, reacting in real-time to external events in an ongoing loop. We argue that the (...)
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  17.  10
    How far should we allow machines to further externalize human internal expression?Chenjun Wang & Naren Chitty - forthcoming - AI and Society:1-3.
  18.  28
    Improving Human‐Machine Cooperative Classification Via Cognitive Theories of Similarity.Brett D. Roads & Michael C. Mozer - 2017 - Cognitive Science 41 (5):1394-1411.
    Acquiring perceptual expertise is slow and effortful. However, untrained novices can accurately make difficult classification decisions by reformulating the task as similarity judgment. Given a query image and a set of reference images, individuals are asked to select the best matching reference. When references are suitably chosen, the procedure yields an implicit classification of the query image. To optimize reference selection, we develop and evaluate a predictive model of similarity-based choice. The model builds on existing psychological literature and accommodates stochastic, (...)
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  19.  26
    An Intelligent Man-Machine Interface—Multi-Robot Control Adapted for Task Engagement Based on Single-Trial Detectability of P300.Elsa A. Kirchner, Su K. Kim, Marc Tabie, Hendrik Wöhrle, Michael Maurus & Frank Kirchner - 2016 - Frontiers in Human Neuroscience 10.
  20.  12
    Crossing the street in front of an autonomous vehicle: An investigation of eye contact between drivengers and vulnerable road users.Aïsha Sahaï, Elodie Labeye, Loïc Caroux & Céline Lemercier - 2022 - Frontiers in Psychology 13.
    Communication between road users is a major key to coordinate movement and increase roadway safety. The aim of this work was to grasp how pedestrians, cyclists, and kick scooter users sought to visually communicate with drivengers when they would face autonomous vehicles. In each experiment, participants were asked to imagine themselves in described situations of encounters between a specific type of vulnerable road user and a human driver in an approaching car. The human driver state and the communicative means of (...)
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  21.  20
    Clinical Brain-Machine-Interfaces: Ethical Legal and Social Implications.Clausen Jens - 2015 - Frontiers in Human Neuroscience 9.
  22.  23
    Home-based hybrid brain-machine interface (BMI) training for neurorehabilitation of stroke.Soekadar Surjo, Witkowski Matthias, Cohen Leonhard & Birbaumer Niels - 2015 - Frontiers in Human Neuroscience 9.
  23.  25
    A Survey on Deep Learning-Based Short/Zero-Calibration Approaches for EEG-Based Brain–Computer Interfaces.Wonjun Ko, Eunjin Jeon, Seungwoo Jeong, Jaeun Phyo & Heung-Il Suk - 2021 - Frontiers in Human Neuroscience 15:643386.
    Brain–computer interfaces (BCIs) utilizing machine learning techniques are an emerging technology that enables a communication pathway between a user and an external system, such as a computer. Owing to its practicality, electroencephalography (EEG) is one of the most widely used measurements for BCI. However, EEG has complex patterns and EEG-based BCIs mostly involve a cost/time-consuming calibration phase; thus, acquiring sufficient EEG data is rarely possible. Recently, deep learning (DL) has had a theoretical/practical impact on BCI research because of (...)
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  24.  21
    Pedestrians’ Understanding of a Fully Autonomous Vehicle’s Intent to Stop: A Learning Effect Over Time.Michal Hochman, Yisrael Parmet & Tal Oron-Gilad - 2020 - Frontiers in Psychology 11.
    This study explored pedestrians’ understanding of Fully Autonomous Vehicles intention to stop and what influences pedestrians’ decision to cross the road over time, i.e., learnability. Twenty participants saw fixed simulated urban road crossing scenes with a single FAV on the road as if they were pedestrians intending to cross. Scenes differed from one another in the FAV’s, distance from the crossing place, its physical size, and external Human-Machine Interfaces message by background color, message type, and presentation modality. Eye-tracking (...)
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  25.  9
    Man at the centre of technology. A philosophical investigation of anthropological knowledge in man-machine-interfaces.Kevin Liggieri - 2023 - Aoristo - International Journal of Phenomenology, Hermeneutics and Metaphysics 3 (2):82-98.
    The paper aims to examine the construction, circulation, and transformation of knowledge about man (anthropological knowledge) in human-technology interaction in the 20th century. The analysis focuses on the prerequisites of the industrial working world and its implicit knowledge about human beings. However, the basis and starting point of technical adaptation is usually ignored: The concepts of “man” and the anthropological knowledge gained experimentally from a anthropocentric designed interface. Based on the concept of an intuitive interface design this problem will be (...)
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  26.  25
    Brain state-dependent robotic reaching movement with a multi-joint arm exoskeleton: combining brain-machine interfacing and robotic rehabilitation.Daniel Brauchle, Mathias Vukelić, Robert Bauer & Alireza Gharabaghi - 2015 - Frontiers in Human Neuroscience 9.
  27.  13
    The Aesthetics of Human-Machine Interaction: Generative Textuality in Hello Games’s No Man’s Sky.Justin Carpenter - 2023 - Journal of Aesthetics and Phenomenology 9 (2):173-190.
    Generative art theory involves any artistic practice where an artist uses external systems (rules, algorithms, organic processes) to complete an artwork. Commonly utilized in video game design, gen...
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  28.  37
    A Wireless Multichannel Neural Recording system for Implantable Brain-Machine Interfaces.Ando Hiroshi, Takizawa Kenichi, Yoshida Takeshi, Matsushita Kojiro, Hirata Masayuki & Suzuki Takafumi - 2015 - Frontiers in Human Neuroscience 9.
  29. Unseen and unaware: Implications of recent research on failures of visual awareness for human-computer interface design.D. Alexander Varakin, Daniel T. Levin & Roger Fidler - 2004 - Human-Computer Interaction 19 (4):389-422.
     
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  30.  22
    Clinical applications of bidirectional brain-machine interfaces.Fetz Eberhard - 2015 - Frontiers in Human Neuroscience 9.
  31.  18
    On the Merge of Brain-Machine Interfaces: The Real Story of "The Terminal Man".Mima Tatsuya - 2015 - Frontiers in Human Neuroscience 9.
  32.  64
    Helpless machines and true loving care givers: a feminist critique of recent trends in human‐robot interaction.Jutta Weber - 2005 - Journal of Information, Communication and Ethics in Society 3 (4):209-218.
    In recent developments in Artificial Intelligence and especially in robotics we can observe a tendency towards building intelligent artefacts that are meant to be social, to have ‘human social’ characteristics like emotions, the ability to conduct dialogue, to learn, to develop personality, character traits, and social competencies. Care, entertainment, pet and educational robots are conceptualised as friendly, understanding partners and credible assistants which communicate ‘naturally’ with users, show emotions and support them in everyday life. Social robots are often designed to (...)
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  33.  9
    Comparing machine learning approaches for motor-activity-related brain computer interfaces.Lei Wang & Hasan Ayaz - 2018 - Frontiers in Human Neuroscience 12.
  34. “We Can Rebuild Him!”: The essentialisation of the human/cyborg interface in the twenty-first century, or whatever happened to The Six Million Dollar Man? [REVIEW]Simon Bacon - 2013 - AI and Society 28 (3):267-276.
    This paper aims to show how recent cinematic representations reveal a far more pessimistic and essentialised vision of Human/Cyborg hybridity in comparison with the more enunciative and optimistic ones seen at the end of the twentieth century. Donna Haraway’s still influential 1985 essay “A Cyborg Manifesto” saw the combination of the organic and the technological as offering new and exciting ways beyond the normalised culturally constructed categories of gender and identity formation. However, more recently critics see her later writings as (...)
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  35.  27
    Democracy and Agonism in the Anthropocene: The Challenges of Knowledge, Time and Boundary.Amanda Machin - 2019 - Environmental Values 28 (3):347-365.
    The diagnosis of a new geological epoch, The 'Anthropocene', has implications far beyond geological science. If human activity has disrupted the planet, then this diagnosis potentially disrupts socio-political conventions. This article assesses the implications the Anthropocene has for democratic politics, by delineating three challenges: challenges of knowledge, time and boundary. In contrast to the claim that democratic institutions are unable to adequately respond to these challenges, I suggest that they might be strengthened through an engagement with them. Following an 'agonistic' (...)
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  36. Ghost in the Machine: A Philosophical Analysis of the Relationship Between Brain-Computer Interface Applications and their Users.Richard Heersmink - 2009 - Dissertation, University of Twente.
    This Master’s thesis explores the relationship between Brain-Computer Interfaces (BCIs) and their human users from a functional, epistemological and phenomenological perspective. The analysis has four steps. I start out with a technical description of BCI systems in which I conceptually analyze different types of BCI applications. This results in the development of a taxonomy of applications which is the point of departure for further philosophical analysis. Thereafter, I explore the functional relationship between BCI applications and their users. That is (...)
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  37.  10
    How tick list sustainability distracts from actual sustainable action: the UN 2030 Agenda for Sustainable Development.David Machin & Yueyue Liu - 2024 - Critical Discourse Studies 21 (2):164-181.
    The United Nations ‘Transforming our world: the 2030 Agenda for Sustainable Development’ lays out 17 Sustainable Development Goals to address a range of global issues related to the future of the planet and human well-being. Critics, however, argue that the Agenda, a complex product of multi-stakeholder governance, in its drive to accommodate many competing voices, is overloaded with weakly defined, overlapping and contradictory issues, concepts and buzzwords. These serve to gloss over actual concrete global problems and forces, concealing an underlying (...)
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  38. The nonhuman condition: Radical democracy through new materialist lenses.Hans Asenbaum, Amanda Machin, Jean-Paul Gagnon, Diana Leong, Melissa Orlie & James Louis Smith - 2023 - Contemporary Political Theory (Online first):584-615.
    Radical democratic thinking is becoming intrigued by the material situatedness of its political agents and by the role of nonhuman participants in political interaction. At stake here is the displacement of narrow anthropocentrism that currently guides democratic theory and practice, and its repositioning into what we call ‘the nonhuman condition’. This Critical Exchange explores the nonhuman condition. It asks: What are the implications of decentering the human subject via a new materialist reading of radical democracy? Does this reading dilute political (...)
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  39.  29
    A Man vs. Machine Shootout Duel: Do we have Control over our Intention-Predictive Brain Signals? In a Real-time Duelling Game Subjects try to execute Self-initiated Movements before being predicted and interrupted by an EEG-based Brain-Computer Interface.Schultze-Kraft Matthias, Birman Daniel, Rusconi Marco, Daehne Sven, Blankertz Benjamin & Haynes John-Dylan - 2015 - Frontiers in Human Neuroscience 9.
  40. Language as a cognitive technology.Marcelo Dascal - 2002 - International Journal of Cognition and Technology 1 (1):35-61.
    _Ever since Descartes singled out the ability to use natural language appropriately in any given circumstance as the proof_ _that humans – unlike animals and machines – have minds, an idea that Turing transformed into his well-known test to_ _determine whether machines have intelligence, the close connection between language and cognition has been widely_ _acknowledged, although it was accounted for in quite different ways. Recent advances in natural language processing, as_ _well as attempts to create “embodied conversational agents” which couple (...))
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  41.  30
    The machine’s role in human’s service automation and knowledge sharing.Mihály Héder - 2014 - AI and Society 29 (2):185-192.
    The possibility of interacting with remote services in natural language opens up new opportunities for sharing knowledge and for automating services. Easy-to-use, text-based interfaces might provide more democratic access to legal information, government services, and everyday knowledge as well. However, the methodology of engineering robust natural language interfaces is very diverse, and widely deployed solutions are still yet to come. The main contribution is a detailed problem analysis on the theoretical level, which reveals that a text-based interface is (...)
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  42.  15
    A truly human interface: interacting face-to-face with someone whose words are determined by a computer program.Kevin Corti & Alex Gillespie - 2015 - Frontiers in Psychology 6:145265.
    We use speech shadowing to create situations wherein people converse in person with a human whose words are determined by a conversational agent computer program. Speech shadowing involves a person (the shadower) repeating vocal stimuli originating from a separate communication source in real-time. Humans shadowing for conversational agent sources (e.g., chat bots) become hybrid agents ("echoborgs") capable of face-to-face interlocution. We report three studies that investigated people’s experiences interacting with echoborgs and the extent to which echoborgs pass as autonomous humans. (...)
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  43.  18
    A data-driven machine learning approach for brain-computer interfaces targeting lower limb neuroprosthetics.Arnau Dillen, Elke Lathouwers, Aleksandar Miladinović, Uros Marusic, Fakhredinne Ghaffari, Olivier Romain, Romain Meeusen & Kevin De Pauw - 2022 - Frontiers in Human Neuroscience 16.
    Prosthetic devices that replace a lost limb have become increasingly performant in recent years. Recent advances in both software and hardware allow for the decoding of electroencephalogram signals to improve the control of active prostheses with brain-computer interfaces. Most BCI research is focused on the upper body. Although BCI research for the lower extremities has increased in recent years, there are still gaps in our knowledge of the neural patterns associated with lower limb movement. Therefore, the main objective of (...)
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  44.  14
    A data-driven machine learning approach for brain-computer interfaces targeting lower limb neuroprosthetics.Arnau Dillen, Elke Lathouwers, Aleksandar Miladinović, Uros Marusic, Fakhreddine Ghaffari, Olivier Romain, Romain Meeusen & Kevin De Pauw - 2022 - Frontiers in Human Neuroscience 16.
    Prosthetic devices that replace a lost limb have become increasingly performant in recent years. Recent advances in both software and hardware allow for the decoding of electroencephalogram signals to improve the control of active prostheses with brain-computer interfaces. Most BCI research is focused on the upper body. Although BCI research for the lower extremities has increased in recent years, there are still gaps in our knowledge of the neural patterns associated with lower limb movement. Therefore, the main objective of (...)
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  45.  5
    Interface.Branden Hookway - 2014 - Cambridge, Massachusetts: The MIT Press.
    The subject of the interface -- The interface as form of relation -- Between faces and facing between -- The interface and the surface -- Toward a theory of the interface -- Janus and Jupiter -- Control and power -- The interface and the apparatus -- The interface and the game -- The interface and the machine -- Separation and augmentation -- Mimicry in the game and the interface -- The forming of the interface -- The interface as that which (...)
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  46.  13
    The Ethics of Thinking with Machines: Brain-Computer Interfaces in the Era of Artificial Intelligence.David M. Lyreskog, Hazem Zohny, Ilina Singh & Julian Savulescu - 2023 - International Journal of Chinese and Comparative Philosophy of Medicine 21 (2):11-34.
    LANGUAGE NOTE | Document text in English; abstract also in Chinese. 腦機介面 (BCIs) 是大腦和電腦無需人工交互即可直接交流的一系列技術。隨著人工智能 (AI) 時代的到來,我們需要更多地關注腦機介面和人工智能的融合所帶來的倫理問題。那麼,與機器一起思考會帶來什麼樣的倫理問題?在本文中,圍繞這一主題,我們將重點關注以下問題:自主性、完整性、身分認同、隱私,以及 作為一種增強的方式,該技術在兒科領域的應用會帶來怎樣的風險和潛在收益。我們的結論是,雖然該技術存在多種令人擔憂的問題,同時也有可能帶來好處,但仍存在很大的不確定性。如果生命倫理學家想在這一領域有所建樹 ,他們就應該做好準備來迎接我們對醫學和醫療保健領域中一些我們視為核心價值的理解的重大轉變。 Brain-Computer Interfaces – BCIs – are a set of technologies with which brains and computers can communicate directly, without the need for manual interaction. As we are witnessing the dawn of an era in which Artificial Intelligence (AI) quite possibly will come to dominate the technological innovation landscape, we are compelled to ask questions about the ethical issues which the convergence of BCIs and (...)
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  47. The mind and the machine. On the conceptual and moral implications of brain-machine interaction.Maartje Schermer - 2009 - NanoEthics 3 (3):217-230.
    Brain-machine interfaces are a growing field of research and application. The increasing possibilities to connect the human brain to electronic devices and computer software can be put to use in medicine, the military, and entertainment. Concrete technologies include cochlear implants, Deep Brain Stimulation, neurofeedback and neuroprosthesis. The expectations for the near and further future are high, though it is difficult to separate hope from hype. The focus in this paper is on the effects that these new technologies may have (...)
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  48.  55
    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 to (...)
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  49.  15
    Where Bodies End and Artefacts Begin: Tools, Machines and Interfaces.Daniel Black - 2014 - Body and Society 20 (1):31-60.
    Our use of artefacts has at different moments been characterised as either replacing or impoverishing our natural human capacities, or a key part of our humanity. This article critically evaluates the conception of the natural invoked by both accounts, and highlights the degree to which engagement with material features of the environment is fundamental to all living things, the closeness of this engagement making any account that seeks to draw a clear boundary between body and artefact problematic. By doing this (...)
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  50. 'Involving Interface': An Extended Mind Theoretical Approach to Roboethics.Miranda Anderson, Hiroshi Ishiguro & Tamami Fukushi - 2010 - Accountability in Research: Policies and Quality Assurance 6 (17):316-329.
    In 2008 the authors held Involving Interface, a lively interdisciplinary event focusing on issues of biological, sociocultural, and technological interfacing (see Acknowledgments). Inspired by discussions at this event, in this article, we further discuss the value of input from neuroscience for developing robots and machine interfaces, and the value of philosophy, the humanities, and the arts for identifying persistent links between human interfacing and broader ethical concerns. The importance of ongoing interdisciplinary debate and public communication on scientific and technical (...)
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