Results for 'neurotechnology'

222 found
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  1.  63
    Neurotechnologies, Relational Autonomy, and Authenticity.Mary Jean Walker & Catriona Mackenzie - 2020 - International Journal of Feminist Approaches to Bioethics 13 (1):98-119.
    The ethical debate about neurotechnologies—including both drugs and implanted devices—has been largely framed around the questions of whether and when these technologies could damage or promote authenticity. Patients can experience changes in mood, behavior, emotion, or preferences—seemingly, changes in character or personality. Some describe such changes by saying they feel like different people; that they have become either more or less themselves; or that they feel as though some of their moods, behaviors, emotions or preferences are not their own. These (...)
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  2. Neurotechnologies for Human Cognitive Augmentation: Current State of the Art and Future Prospects.Caterina Cinel, Davide Valeriani & Riccardo Poli - 2019 - Frontiers in Human Neuroscience 13:430907.
    Recent advances in neuroscience have paved the way to innovative applications that cognitively augment and enhance humans in a variety of contexts. This paper aims at providing a snapshot of the current state of the art and a motivated forecast of the most likely developments in the next two decades. Firstly, we survey the main neuroscience technologies for both observing and influencing brain activity, which are necessary ingredients for human cognitive augmentation. We also compare and contrast such technologies, as their (...)
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  3.  61
    Neurotechnological Behavioural Treatment of Criminal Offenders—A Comment on Bomann-Larsen.Jesper Ryberg & Thomas S. Petersen - 2011 - Neuroethics 6 (1):79-83.
    Whether it is morally acceptable to offer rehabilitation by CNS-intervention to criminals as a condition for early release constitutes an important neuroethical question. Bomann-Larsen has recently suggested that such interventions are unacceptable if the offered treatment is not narrowly targeted at the behaviour for which the criminal is convicted. In this article it is argued that Bomann-Larsen’s analysis of the morality of offers does not provide a solid base for this conclusion and that, even if the analysis is assumed to (...)
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  4.  59
    Mandatory neurotechnological treatment: ethical issues.Farah Focquaert - 2014 - Theoretical Medicine and Bioethics 35 (1):59-72.
    What if neurofeedback or other types of neurotechnological treatment, by itself or in combination with behavioral treatment, could achieve a successful “rewiring” of the psychopath’s brain? Imagine that such treatments exist and that they provide a better long-term risk-minimizing strategy compared to imprisonment. Would it be ethical to offer such treatments as a condition of probation, parole, or prison release? In this paper, I argue that it can be ethical to offer effective, non-invasive neurotechnological treatments to offenders as a condition (...)
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  5. Neurotechnology, Invasiveness and the Extended Mind.Tom Buller - 2011 - Neuroethics 6 (3):593-605.
    According to a standard view, the physical boundary of the person—the skin-and-skull boundary—matters morally because this boundary delineates between where the person begins and the world ends. On the basis of this view we make a distinction between invasive interventions that penetrate this boundary and non-invasive interventions that do not. The development of neuroprosthetics, however, raises questions about the significance of this boundary and the relationship between person and body. In particular it has been argued by appeal to the Extended (...)
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  6.  88
    Neurotechnologies, personal identity and the ethics of authenticity.Catriona Mackenzie & Mary Walker - 2015 - In Springer Handbook of Neuroethics. Dordrecht: Springer. pp. 373-92.
    In the recent neuroethics literature, there has been vigorous debate concerning the ethical implications of the use of neurotechnologies that may alter a person’s identity. Much of this debate has been framed around the concept of authenticity. The argument of this chapter is that the ethics of authenticity, as applied to neurotechnological treatment or enhancement, is conceptually misleading. The notion of authenticity is ambiguous between two distinct and conflicting conceptions: self-discovery and self-creation. The self-discovery conception of authenticity is based on (...)
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  7.  23
    Invasive Neurotechnology: A Study of the Concept of Invasiveness in Neuroethics.Benjamin Collins & Eran Klein - 2023 - Neuroethics 16 (1):1-12.
    Invasive neurotechnologies are a frequent subject of discussion in neuroethics. Technologies, like deep brain stimulation and implantable brain-computer interfaces, are thought to hold significant promise for human health and well-being, but they also raise important ethical questions about autonomy, safety, stigma, privacy, and agency, among others. The terms ‘invasive’ and ‘invasiveness’ are commonly applied to these and other neurotechnologies, yet the concept of invasiveness itself is rarely defined or delimited. Some have suggested that invasiveness may have multiple meanings – physical, (...)
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  8.  9
    Neurotechnology and Direct Brain Communication: New Insights and Responsibilities Concerning Speechless but Communicative Subjects.Michele Farisco & Kathinka Evers (eds.) - 2016 - Routledge.
    __Neurotechnology and Direct Brain Communication__ focuses on recent neuroscientific investigations of infant brains and of patients with disorders of consciousness, both of which are at the forefront of contemporary neuroscience. The prospective use of neurotechnology to access mental states in these subjects, including neuroimaging, brain simulation and brain computer interfaces, offers new opportunities for clinicians and researchers, but has also received specific attention from philosophical, scientific, ethical and legal points of view. This book offers the first systematic assessment of (...)
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  9.  27
    Should neurotechnological treatments offered to offenders always be in their best interests?Thomas Søbirk Petersen - 2018 - Journal of Medical Ethics 44 (1):32-36.
    The paper critically discusses the moral view that neurotechnological behavioural treatment for criminal offenders should only be offered if it is in their best interests. First, I show that it is difficult to apply and assess the notion of the offender's best interests unless one has a clear idea of what ‘best interests’ means. Second, I argue that if one accepts that harmful punishment of offenders has a place in the criminal justice system, it seems inconsistent not to accept the (...)
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  10.  22
    Should neurotechnological treatments offered to offenders always be in their best interests?Thomas Søbirk Petersen - 2017 - Journal of Medical Ethics Recent Issues 44 (1):32-36.
    The paper critically discusses the moral view that neurotechnological behavioural treatment for criminal offenders should only be offered if it is in their best interests. First, I show that it is difficult to apply and assess the notion of the offender's best interests unless one has a clear idea of what ‘best interests’ means. Second, I argue that if one accepts that harmful punishment of offenders has a place in the criminal justice system, it seems inconsistent not to accept the (...)
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  11.  97
    Emerging Neurotechnologies for Lie-Detection: Promises and Perils.Daniel D. Langleben, Kenneth R. Foster & Paul Root Wolpe - 2010 - American Journal of Bioethics 10 (10):40-48.
    Detection of deception and confirmation of truth telling with conventional polygraphy raised a host of technical and ethical issues. Recently, newer methods of recording electromagnetic signals from the brain show promise in permitting the detection of deception or truth telling. Some are even being promoted as more accurate than conventional polygraphy. While the new technologies raise issues of personal privacy, acceptable forensic application, and other social issues, the focus of this paper is the technical limitations of the developing technology. Those (...)
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  12.  51
    Emerging Neurotechnologies for Lie-Detection: Promises and Perils.Paul Root Wolpe, Kenneth R. Foster & Daniel D. Langleben - 2005 - American Journal of Bioethics 5 (2):39-49.
    Detection of deception and confirmation of truth telling with conventional polygraphy raised a host of technical and ethical issues. Recently, newer methods of recording electromagnetic signals from the brain show promise in permitting the detection of deception or truth telling. Some are even being promoted as more accurate than conventional polygraphy. While the new technologies raise issues of personal privacy, acceptable forensic application, and other social issues, the focus of this paper is the technical limitations of the developing technology. Those (...)
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  13.  45
    Psychopathy, neurotechnologies, and neuroethics.Fabrice Jotterand - 2014 - Theoretical Medicine and Bioethics 35 (1):1-6.
    In the last decade, a series of acts of violence has increased the interest in understanding what prompts individuals to engage in serial killing, bombing, and other violent acts. The shootings of Columbine, Newtown, and Aurora in the United States, and of Oslo in Norway, 9/11, and the recent bombing during the Boston Marathon have raised questions of how to thwart such tragedies as well as of how to detect and possibly “control” individuals posing a threat to public safety. In (...)
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  14.  18
    Why Neurotechnologies? About the Purposes, Opportunities and Limitations of Neurotechnologies in Clinical Applications.Thomas Stieglitz - 2019 - Neuroethics 14 (1):5-16.
    Neurotechnologies describe a field of science and engineering in which the nervous system is interfaced with technical devices. Fundamental research is conducted to explore functions of the brain, decipher the neural code and get a better understanding of diseases and disorders. Risk benefit assessment has been well established in all medical disciplines to treat patients best possible while minimizing jeopardizing their lives by the interventions. Is this set of assessment rules sufficient when the brain will be interfaced with a technical (...)
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  15. Taking Relational Authenticity Seriously: Neurotechnologies, Narrative Identity, and Co-Authorship of the Self.Emilian Mihailov, Alexandra Zorila & Cristian Iftode - 2021 - American Journal of Bioethics Neuroscience 12 (1):35-37.
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  16. Neurotechnology as a public good.K. N. Schiller A. M. Jeannotte, E. G. DeRenzo L. M. Reeves & D. K. McBride - 2010 - In James J. Giordano & Bert Gordijn (eds.), Scientific and Philosophical Perspectives in Neuroethics. Cambridge University Press.
     
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  17.  8
    Neurotechnology and the end of finitude.Michael Haworth - 2018 - Minneapolis: University of Minnesota Press.
    The idea becomes a machine that makes the art -- Intellectual intuition and finite creativity -- Unus Mundus -- Techno-telepathy and the otherness of the other.
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  18.  18
    Neurotechnology ethics and relational agency.Sara Goering, Timothy Brown & Eran Klein - 2021 - Philosophy Compass 16 (4):e12734.
    Novel neurotechnologies, like deep brain stimulation and brain‐computer interface, offer great hope for treating, curing, and preventing disease, but raise important questions about effects these devices may have on human identity, authenticity, and autonomy. After briefly assessing recent narrative work in these areas, we show that agency is a phenomenon key to all three goods and highlight the ways in which neural devices can help to draw attention to the relational nature of our agency. Drawing on insights from disability theory, (...)
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  19.  16
    The Global Governance of Neurotechnology: The Need for an Ecosystem Approach.David Winickoff, Laura Kreiling & Lou Lennad - 2024 - American Journal of Bioethics Neuroscience 15 (2):116-118.
    As neurotechnologies continue to develop and diffuse, this fast-paced field must be guided by robust governance frameworks in order to promote responsible innovation. The article by Bublitz (2024)...
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  20. Neurotechnologies of the Self: Mind, Brain and Subjectivity.[author unknown] - 2016
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  21.  24
    Neurotechnology and operational medicine.Carey Balaban - 2011 - Synesis: A Journal of Science, Technology, Ethics, and Policy 2 (1):T45 - T54.
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  22. Neurotechnology: the need for neuroethicists.Laura Cabrera - 2010 - Australian Journal of Professional and Applied Ethics 11 (1-2).
     
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  23. Novel Neurotechnologies in Film—A Reading of Steven Spielberg’s Minority Report.Timothy Krahn, Andrew Fenton & Letitia Meynell - 2009 - Neuroethics 3 (1):73-88.
    The portrayal of novel neurotechnologies in Steven Spielberg’s Minority Report serves to inoculate viewers from important moral considerations that are displaced by the film’s somewhat singular emphasis on the question of how to reintroduce freedom of choice into an otherwise technology driven world. This sets up a crisis mentality and presents a false dilemma regarding the appropriate use, and regulation, of neurotechnologies. On the one hand, it seems that centralized power is required to both control and effectively implement such technologies (...)
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  24.  80
    The neurotechnological cerebral subject: Persistence of implicit and explicit gender norms in a network of change. [REVIEW]Sigrid Schmitz - 2011 - Neuroethics 5 (3):261-274.
    Abstract Under the realm of neurocultures the concept of the cerebral subject emerges as the central category to define the self, socio-cultural interaction and behaviour. The brain is the reference for explaining cognitive processes and behaviour but at the same time the plastic brain is situated in current paradigms of (self)optimization on the market of meritocracy by means of neurotechnologies. This paper explores whether neurotechnological apparatuses may—due to their hybridity and malleability—bear potentials for a change in gender based attributions that (...)
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  25. Clinical Neurotechnology meets Artificial Intelligence.Orsolya Friedrich, Andreas Wolkenstein, Christoph Bublitz, Ralf J. Jox & Eric Racine (eds.) - 2021 - Springer.
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  26.  8
    Neurotechnologies and Identity Changes: What the Narrative View Can Add to the Story.Alexandra Zorila - 2023 - American Journal of Bioethics Neuroscience 14 (1):48-50.
    Do neuromodulation technologies change patients’ personal identities? Haeusermann et al. claim that there is not enough evidence to support this worry. In their study, participants, following a res...
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  27. Voluntary Rehabilitation? On Neurotechnological Behavioural Treatment, Valid Consent and (In)appropriate Offers.Lene Bomann-Larsen - 2011 - Neuroethics 6 (1):65-77.
    Criminal offenders may be offered to participate in voluntary rehabilitation programs aiming at correcting undesirable behaviour, as a condition of early release. Behavioural treatment may include direct intervention into the central nervous system (CNS). This article discusses under which circumstances voluntary rehabilitation by CNS intervention is justified. It is argued that although the context of voluntary rehabilitation is a coercive circumstance, consent may still be effective, in the sense that it can meet formal criteria for informed consent. Further, for a (...)
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  28. Neurotechnology, cyborgs, and the sense of self.Paul Root Wolpe - forthcoming - Neuroethics: Mapping the Field.
     
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  29.  9
    Emerging neurotechnologies: Trends, relevance and prospects.Vidya Nukala & William Halal - 2010 - Synesis: A Journal of Science, Technology, Ethics, and Policy 1 (1):G36 - G53.
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  30.  19
    Building Intricate Partnerships with Neurotechnology: Deep Brain Stimulation and Relational Agency.Timothy Brown - 2020 - International Journal of Feminist Approaches to Bioethics 13 (1):134-154.
    Deep Brain Stimulation is an FDA-approved treatment for the symptoms of Parkinson's disease, essential tremor, dystonia, and epilepsy—with experimental use for mood disorders. DBS systems consist of a signal generator, typically implanted in the user's chest, that sends impulses to electrodes implanted in select areas of the user's brain. These signals change the activity of areas of the brain associated with unwanted symptoms. Several research groups have begun trials to use DBS as a treatment for psychiatric disorders. DBS, however, comes (...)
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  31.  23
    Neurotechnologies Cannot Seize Thoughts: A Call for Caution in Nomenclature.Katherine E. MacDuffie & Sara Goering - 2019 - American Journal of Bioethics Neuroscience 10 (1):23-25.
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  32.  59
    Narrative Devices: Neurotechnologies, Information, and Self-Constitution.Emily Postan - 2021 - Neuroethics 14 (2):231-251.
    This article provides a conceptual and normative framework through which we may understand the potentially ethically significant roles that information generated by neurotechnologies about our brains and minds may play in our construction of our identities. Neuroethics debates currently focus disproportionately on the ways that third parties may (ab)use these kinds of information. These debates occlude interests we may have in whether and how we ourselves encounter information about our own brains and minds. This gap is not yet adequately addressed (...)
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  33.  23
    Foreword: Neurotechnology in National Security, Intelligence and Defense.Michael Swetnam - 2011 - Synesis: A Journal of Science, Technology, Ethics, and Policy 2 (2):T1 - T2.
  34. Emerging Neurotechnologies for Lie-Detection: Where Are We Now? An Appraisal of Wolpe, Foster and Langleben's “Emerging Neurotechnologies for Lie-Detection: Promise and Perils” Five Years Later.Steven E. Hyman - 2010 - American Journal of Bioethics 10 (10):49-50.
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  35.  31
    Dimensions of Ethical Direct-to-Consumer Neurotechnologies.Karola V. Kreitmair - 2019 - American Journal of Bioethics Neuroscience 10 (4):152-166.
    Not too long ago, neurotechnology was the purview of the clinic and research. In 2011, researchers at Brown University succeeded for the first time in using an implanted sensor in the brain of a pa...
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  36.  35
    Ethical Issues to Consider Before Introducing Neurotechnological Thought Apprehension in Psychiatry.Gerben Meynen - 2019 - American Journal of Bioethics Neuroscience 10 (1):5-14.
    When it becomes available, neuroscience-based apprehension of subjective thoughts is bound to have a profound impact on several areas of society. One of these areas is medicine. In principle, medical specialties that are primarily concerned with mind and brain are most likely to apply neurotechnological thought apprehension (NTA) techniques. Psychiatry is such a specialty, and the relevance of NTA developments for psychiatry has been recognized. In this article, I discuss ethical issues regarding the use of NTA techniques in psychiatric contexts. (...)
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  37.  9
    Neuropragmatic Tools for Neurotechnological Culture: Toward a Creatively Democratic Cybernetics of Care.Tibor Solymosi - 2023 - Contemporary Pragmatism 20 (1-2):77-117.
    I address the problem of caring for our body-mind through neuropragmatism, cybernetics, and Larry Hickman’s work on John Dewey and the philosophy of technology. The problems of body-mind health are related to Emma Dowling’s The Care Crisis. I address this crisis by drawing on Jay Schulkin’s conception of viability as the creative tension between stability and precarity. From this, I extend body-mind health to questions of democracy, leading to the proposal of body-mind-world as an elaboration of neuropragmatism’s evolutionary and ecological (...)
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  38.  39
    Experimental and relational authenticity: how neurotechnologies impact narrative identities.Cristian Iftode, Alexandra Zorilă, Constantin Vică & Emilian Mihailov - forthcoming - Phenomenology and the Cognitive Sciences:1-18.
    The debate about how neurotechnologies impact authenticity has focused on two inter-related dimensions: self-discovery and self-creation. In this paper, we develop a broader framework that includes the experimental and relational dimensions of authenticity, both understood as decisive for shaping one’s narrative identity. In our view, neurointerventions that alter someone’s personality traits will also impact her very own self-understanding across time. We argue that experimental authenticity only needs a minimum conception of narrative coherence of the self and that reversibility should remain (...)
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  39.  49
    Neurotechnologies as weapons in national intelligence and defense–An overview.James Giordano & Rachel Wurzman - 2011 - Synesis: A Journal of Science, Technology, Ethics, and Policy 2 (1):T55 - T71.
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  40. Guest Editorial: Neuroethics—From Neurotechnology to Healthcare.Judy Illes & Eric Racine - 2007 - Cambridge Quarterly of Healthcare Ethics 16 (2):125-128.
    In proportion to other serious illnesses, diseases of the brain and mind represent the greatest—and still increasing—public health burden that Western societies are facing. Consequently, scientists, governments, advocacy groups, and public health authorities are committed to research to tackle the causes and consequences of neurological and psychiatric diseases and to find cures for them. As neuroscience research progresses, ethicists and neuroscientists face numerous ethical challenges to the integration of frontier application of research—neurotechnology—with the delivery of high-quality healthcare. In this (...)
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  41.  17
    Moving Beyond Context: Reassessing Privacy Rights in the Neurotechnology Era.Callie Terris - 2024 - American Journal of Bioethics Neuroscience 15 (2):144-146.
    Neurotechnologies are revolutionizing our ability to monitor and modify the brain. As these technologies gather more data, many seek to understand whether brain data raises novel privacy concerns a...
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  42.  15
    The Representations of Novel Neurotechnologies in Social Media.Allyson Purcell-Davis - 2013 - The New Bioethics 19 (1):30-45.
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  43. Unpacking Neuroscience and Neurotechnology - Instructions not Included: Neuroethics Required.James Giordano - 2012 - Neuroethics 6 (2):411-414.
    Using a metaphorical reminiscence upon holiday toys - and the hopes, challenges and possibilities they presented - this essay addresses the ways that the heuristics, outcomes and products of neuroscience have effected change in the human condition, predicament, and being. A note of caution is offered to pragmatically assess what can be done with neurotechnology, what can't, and what should and shouldn't - based upon the capacities and limitations of both the science, and our collective ability to handle knowledge, (...)
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  44.  12
    Of Meatballs And Invasive Neurotechnological Trials: Additional Considerations for Complex Clinical Decisions.John Noel M. Viaña, Adrian Carter & Frederic Gilbert - 2018 - American Journal of Bioethics Neuroscience 9 (2):100-104.
    Using this case, Lavazza and Reichlin (2018) explored the ethical dilemmas associated with decision making in people with Alzheimer’s disease (AD), specifically when their new preferences conflict...
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  45.  25
    Commentary on "Neurotechnologies, Relational Autonomy, and Authenticity".Marya Schechtman - 2020 - International Journal of Feminist Approaches to Bioethics 13 (1):129-133.
    Mary Walker and Catriona Mackenzie's "Neurotechnologies, Relational Autonomy, and Authenticity" provides much needed reflection on the lens through which ethical concerns about the use of neurotechnologies are usually viewed. There is a general worry about the sometimes rapid and radical effects that such technologies can have on personalities and values. These concerns are often described as worries about how such technologies might alter our identities or compromise our authenticity. Clear theorizing of the notoriously slippery notions of "identity" and "authenticity" is, (...)
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  46.  56
    Moral Enhancement Meets Normative and Empirical Reality: Assessing the Practical Feasibility of Moral Enhancement Neurotechnologies.Veljko Dubljević & Eric Racine - 2017 - Bioethics 31 (5):338-348.
    Moral enhancement refers to the possibility of making individuals and societies better from a moral standpoint. A fierce debate has emerged about the ethical aspects of moral enhancement, notably because steering moral enhancement in a particular direction involves choosing amongst a wide array of competing options, and these options entail deciding which moral theory or attributes of the moral agent would benefit from enhancement. Furthermore, the ability and effectiveness of different neurotechnologies to enhance morality have not been carefully examined. In (...)
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  47.  29
    What an International Declaration on Neurotechnologies and Human Rights Could Look like: Ideas, Suggestions, Desiderata.Jan Christoph Bublitz - 2024 - American Journal of Bioethics Neuroscience 15 (2):96-112.
    International institutions such as UNESCO are deliberating on a new standard setting instrument for neurotechnologies. This will likely lead to the adoption of a soft law document which will be the first global document specifically tailored to neurotechnologies, setting the tone for further international or domestic regulations. While some stakeholders have been consulted, these developments have so far evaded the broader attention of the neuroscience, neurotech, and neuroethics communities. To initiate a broader debate, this target article puts to discussion twenty-five (...)
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  48.  18
    Direct-to-Consumer Neurotechnology: What Is It and What Is It for?Marcello Ienca & Effy Vayena - 2019 - American Journal of Bioethics Neuroscience 10 (4):149-151.
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  49.  25
    Fostering the trustworthiness of researchers: SPECS and the role of ethical reflexivity in novel neurotechnology research.Paul Tubig & Darcy McCusker - 2021 - Research Ethics 17 (2):143-161.
    The development of novel neurotechnologies, such as brain-computer interface (BCI) and deep-brain stimulation (DBS), are very promising in improving the welfare and life prospects many people. These include life-changing therapies for medical conditions and enhancements of cognitive, emotional, and moral capacities. Yet there are also numerous moral risks and uncertainties involved in developing novel neurotechnologies. For this reason, the progress of novel neurotechnology research requires that diverse publics place trust in researchers to develop neural interfaces in ways that are (...)
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  50.  22
    Direct-to-Consumer Neurotechnologies and Quantified Relationship Technologies: Overlapping Ethical Concerns.Sven Nyholm, Brian D. Earp & John Danaher - 2019 - American Journal of Bioethics Neuroscience 10 (4):167-170.
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