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  1. Committing Crimes with BCIs: How Brain-Computer Interface Users can Satisfy Actus Reus and be Criminally Responsible.Kramer Thompson - 2021 - Neuroethics 14 (S3):311-322.
    Brain-computer interfaces allow agents to control computers without moving their bodies. The agents imagine certain things and the brain-computer interfaces read the concomitant neural activity and operate the computer accordingly. But the use of brain-computer interfaces is problematic for criminal law, which requires that someone can only be found criminally responsible if they have satisfied the actus reus requirement: that the agent has performed some (suitably specified) conduct. Agents who affect the world using brain-computer interfaces do not obviously perform any (...)
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  • Psychopathy: Morally Incapacitated Persons.Heidi Maibom - 2017 - In Thomas Schramme & Steven Edwards (eds.), Handbook of the Philosophy of Medicine. Springer. pp. 1109-1129.
    After describing the disorder of psychopathy, I examine the theories and the evidence concerning the psychopaths’ deficient moral capacities. I first examine whether or not psychopaths can pass tests of moral knowledge. Most of the evidence suggests that they can. If there is a lack of moral understanding, then it has to be due to an incapacity that affects not their declarative knowledge of moral norms, but their deeper understanding of them. I then examine two suggestions: it is their deficient (...)
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  • The Clinical Research of Nanomedicine: A New Ethical Challenge?Urban Wiesing & Jens Clausen - 2014 - NanoEthics 8 (1):19-28.
    Nanomedicine promises unprecedented innovations for diagnosis and therapy as well as for predicting and preventing diseases. On the other hand it raises fears linked to new and unknown characteristics of nanoscale materials. Both, promises and fears, are closely linked to the realm of uncertainty. To a large extent it is currently not known which expectations could become reality and which suspected adverse events might come true. Medicine is quite familiar with decision-making under uncertainty. Rules and regulations for clinical research have (...)
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  • Wired Emotions: Ethical Issues of Affective Brain–Computer Interfaces.Steffen Steinert & Orsolya Friedrich - 2020 - Science and Engineering Ethics 26 (1):351-367.
    Ethical issues concerning brain–computer interfaces have already received a considerable amount of attention. However, one particular form of BCI has not received the attention that it deserves: Affective BCIs that allow for the detection and stimulation of affective states. This paper brings the ethical issues of affective BCIs in sharper focus. The paper briefly reviews recent applications of affective BCIs and considers ethical issues that arise from these applications. Ethical issues that affective BCIs share with other neurotechnologies are presented and (...)
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  • On the Significance of the Identity Debate in DBS and the Need of an Inclusive Research Agenda. A Reply to Gilbert, Viana and Ineichen.Anke Snoek, Sanneke de Haan, Maartje Schermer & Dorothee Horstkötter - 2019 - Neuroethics 14 (1):65-74.
    Gilbert et al. argue that the concerns about the influence of Deep Brain Stimulation on – as they lump together – personality, identity, agency, autonomy, authenticity and the self are due to an ethics hype. They argue that there is only a small empirical base for an extended ethics debate. We will critically examine their claims and argue that Gilbert and colleagues do not show that the identity debate in DBS is a bubble, they in fact give very little evidence (...)
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  • 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 have (...)
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  • The Cyborg-Fear: How Conceptual Dualisms Shape Our Self-Understanding.Maartje Schermer - 2014 - American Journal of Bioethics Neuroscience 5 (4):56-57.
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  • Does Ethical Judgment Determine the Decision to Become a Cyborg?: Influence of Ethical Judgment on the Cyborg Market.Jorge Pelegrín-Borondo, Mario Arias-Oliva, Kiyoshi Murata & Mar Souto-Romero - 2020 - Journal of Business Ethics 161 (1):5-17.
    Today, technological implants to increase innate human capabilities are already available on the market. Cyborgs, understood as healthy people who decide to integrate their bodies with insideable technology, are no longer science fiction, but fact. The cyborg market will be a huge new business with important consequences for both industry and society. More specifically, cyborg technologies are a unique product, with a potentially critical impact on the future of humanity. In light of the potential transformations involved in the creation of (...)
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  • Does Ethical Judgment Determine the Decision to Become a Cyborg?: Influence of Ethical Judgment on the Cyborg Market.Jorge Pelegrín-Borondo, Mario Arias-Oliva, Kiyoshi Murata & Mar Souto-Romero - 2018 - Journal of Business Ethics 161 (1):5-17.
    Today, technological implants to increase innate human capabilities are already available on the market. Cyborgs, understood as healthy people who decide to integrate their bodies with insideable technology, are no longer science fiction, but fact. The cyborg market will be a huge new business with important consequences for both industry and society. More specifically, cyborg technologies are a unique product, with a potentially critical impact on the future of humanity. In light of the potential transformations involved in the creation of (...)
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  • Assessing the Moderating Effect of the End User in Consumer Behavior: The Acceptance of Technological Implants to Increase Innate Human Capacities.Jorge Pelegrín-Borondo, Eva Reinares-Lara, Cristina Olarte-Pascual & Marta Garcia-Sierra - 2016 - Frontiers in Psychology 7.
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  • The Asilomar Survey: Stakeholders' Opinions on Ethical Issues Related to Brain-Computer Interfacing. [REVIEW]Femke Nijboer, Jens Clausen, Brendan Z. Allison & Pim Haselager - 2011 - Neuroethics 6 (3):541-578.
    Brain-Computer Interface (BCI) research and (future) applications raise important ethical issues that need to be addressed to promote societal acceptance and adequate policies. Here we report on a survey we conducted among 145 BCI researchers at the 4th International BCI conference, which took place in May–June 2010 in Asilomar, California. We assessed respondents’ opinions about a number of topics. First, we investigated preferences for terminology and definitions relating to BCIs. Second, we assessed respondents’ expectations on the marketability of different BCI (...)
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  • Deflating the “DBS causes personality changes” bubble.Frederic Gilbert, J. N. M. Viaña & C. Ineichen - 2021 - Neuroethics 14 (1):1-17.
    The idea that deep brain stimulation (DBS) induces changes to personality, identity, agency, authenticity, autonomy and self (PIAAAS) is so deeply entrenched within neuroethics discourses that it has become an unchallenged narrative. In this article, we critically assess evidence about putative effects of DBS on PIAAAS. We conducted a literature review of more than 1535 articles to investigate the prevalence of scientific evidence regarding these potential DBS-induced changes. While we observed an increase in the number of publications in theoretical neuroethics (...)
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  • Correction to: Deflating the “DBS Causes Personality Changes” Bubble.Frederic Gilbert, J. N. M. Viaña & C. Ineichen - 2018 - Neuroethics 14 (1):19-19.
    Owing to an oversight, we noted that the acknowledgement section was missing from the original published version of this paper.
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  • Correction to: Deflating the “DBS causes personality changes” bubble.Frederic Gilbert, J. N. M. Viaña & C. Ineichen - 2018 - Neuroethics 14 (1):21-21.
    The article Deflating the "DBS causes personality changes" bubble, written by Frederic Gilbert, J. N. M. Viaña and C. Ineichen, was originally published electronically on the publisher’s internet portal on 19 June 2018 without open access.
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  • Towards Establishing Criteria for the Ethical Analysis of Artificial Intelligence.Michele Farisco, Kathinka Evers & Arleen Salles - 2020 - Science and Engineering Ethics 26 (5):2413-2425.
    Ethical reflection on Artificial Intelligence has become a priority. In this article, we propose a methodological model for a comprehensive ethical analysis of some uses of AI, notably as a replacement of human actors in specific activities. We emphasize the need for conceptual clarification of relevant key terms in order to undertake such reflection. Against that background, we distinguish two levels of ethical analysis, one practical and one theoretical. Focusing on the state of AI at present, we suggest that regardless (...)
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  • Will Life Be Worth Living in a World Without Work? Technological Unemployment and the Meaning of Life.John Danaher - 2017 - Science and Engineering Ethics 23 (1):41-64.
    Suppose we are about to enter an era of increasing technological unemployment. What implications does this have for society? Two distinct ethical/social issues would seem to arise. The first is one of distributive justice: how will the efficiency gains from automated labour be distributed through society? The second is one of personal fulfillment and meaning: if people no longer have to work, what will they do with their lives? In this article, I set aside the first issue and focus on (...)
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  • Framing the Discussion: Nanotechnology and the Social Construction of Technology--What STS Scholars Are Saying.Stephen H. Cutcliffe, Christine M. Pense & Michael Zvalaren - 2012 - NanoEthics 6 (2):81-99.
    The emergence of nanotechnology, with all its promises of economic, social, and medical benefits, along with dire predictions of environmental, health, and safety threats, has occasioned an active debate in the Science and Technology Studies field, in which we have seen five distinct conversations that frame the discussion. The topical threads include ethics, regulation, opportunities and threats including utopian/dystopian visions of the future, public perception, public participation. These conversational distinctions are not absolutes with firm borders as they clearly overlap at (...)
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