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  1. Why converging technologies need converging international regulation.Dirk Helbing & Marcello Ienca - 2024 - Ethics and Information Technology 26 (1):1-11.
    Emerging technologies such as artificial intelligence, gene editing, nanotechnology, neurotechnology and robotics, which were originally unrelated or separated, are becoming more closely integrated. Consequently, the boundaries between the physical-biological and the cyber-digital worlds are no longer well defined. We argue that this technological convergence has fundamental implications for individuals and societies. Conventional domain-specific governance mechanisms have become ineffective. In this paper we provide an overview of the ethical, societal and policy challenges of technological convergence. Particularly, we scrutinize the adequacy of (...)
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  • 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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  • AI as IA: The use and abuse of artificial intelligence (AI) for human enhancement through intellectual augmentation (IA).Alexandre Erler & Vincent C. Müller - 2023 - In Fabrice Jotterand & Marcello Ienca (eds.), The Routledge Handbook of the Ethics of Human Enhancement. Routledge. pp. 187-199.
    This paper offers an overview of the prospects and ethics of using AI to achieve human enhancement, and more broadly what we call intellectual augmentation (IA). After explaining the central notions of human enhancement, IA, and AI, we discuss the state of the art in terms of the main technologies for IA, with or without brain-computer interfaces. Given this picture, we discuss potential ethical problems, namely inadequate performance, safety, coercion and manipulation, privacy, cognitive liberty, authenticity, and fairness in more detail. (...)
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  • Neuromedia, Cognitive Offloading, and Intellectual Perseverance.Cody Turner - 2022 - Synthese 200 (1):1-26.
    This paper engages in what might be called anticipatory virtue epistemology, as it anticipates some virtue epistemological risks related to a near-future version of brain-computer interface technology that Michael Lynch (2014) calls 'neuromedia.' I analyze how neuromedia is poised to negatively affect the intellectual character of agents, focusing specifically on the virtue of intellectual perseverance, which involves a disposition to mentally persist in the face of challenges towards the realization of one’s intellectual goals. First, I present and motivate what I (...)
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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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  • Towards new human rights in the age of neuroscience and neurotechnology.Marcello Ienca & Roberto Andorno - 2017 - Life Sciences, Society and Policy 13 (1):1-27.
    Rapid advancements in human neuroscience and neurotechnology open unprecedented possibilities for accessing, collecting, sharing and manipulating information from the human brain. Such applications raise important challenges to human rights principles that need to be addressed to prevent unintended consequences. This paper assesses the implications of emerging neurotechnology applications in the context of the human rights framework and suggests that existing human rights may not be sufficient to respond to these emerging issues. After analysing the relationship between neuroscience and human rights, (...)
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  • Ethical Design of Intelligent Assistive Technologies for Dementia: A Descriptive Review.Marcello Ienca, Tenzin Wangmo, Fabrice Jotterand, Reto W. Kressig & Bernice Elger - 2018 - Science and Engineering Ethics 24 (4):1035-1055.
    The use of Intelligent Assistive Technology in dementia care opens the prospects of reducing the global burden of dementia and enabling novel opportunities to improve the lives of dementia patients. However, with current adoption rates being reportedly low, the potential of IATs might remain under-expressed as long as the reasons for suboptimal adoption remain unaddressed. Among these, ethical and social considerations are critical. This article reviews the spectrum of IATs for dementia and investigates the prevalence of ethical considerations in the (...)
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  • Rationales and Approaches to Protecting Brain Data: a Scoping Review.Anita S. Jwa & Nicole Martinez-Martin - 2023 - Neuroethics 17 (1):1-15.
    Advances in neurotechnologies, artificial intelligence (AI) and Big Data analytics are allowing interpretation of patterns from brain data to identify and even predict and manipulate mental states. Furthermore, there are avenues through which brain data can move into the consumer sphere, be reidentified and brokered. In response to these developments, there have been a number of approaches proposed to strengthen protections of brain data. To better understand the landscape of brain data protection discussions, we conducted a scoping review to identify (...)
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  • Brain to Brain Interfaces (BBIs) in future military operations; blurring the boundaries of individual responsibility.Sahar Latheef - 2022 - Monash Bioethics Review 41 (1):49-66.
    Developments in neurotechnology took a leap forward with the demonstration of the first Brain to Brain Interface (BBI). BBIs enable direct communication between two brains via a Brain Computer Interface (BCI) and bypasses the peripheral nervous system. This discovery promises new possibilities for future battlefield technology. As battlefield technology evolves, it is more likely to place greater demands on future soldiers. Future soldiers are more likely to process large amounts of data derived from an extensive networks of humans and machines. (...)
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  • Cybersecurity in health – disentangling value tensions.Michele Loi, Markus Christen, Nadine Kleine & Karsten Weber - 2019 - Journal of Information, Communication and Ethics in Society 17 (2):229-245.
    Purpose Cybersecurity in healthcare has become an urgent matter in recent years due to various malicious attacks on hospitals and other parts of the healthcare infrastructure. The purpose of this paper is to provide an outline of how core values of the health systems, such as the principles of biomedical ethics, are in a supportive or conflicting relation to cybersecurity. Design/methodology/approach This paper claims that it is possible to map the desiderata relevant to cybersecurity onto the four principles of medical (...)
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  • Brainjacking in deep brain stimulation and autonomy.Jonathan Pugh, Laurie Pycroft, Anders Sandberg, Tipu Aziz & Julian Savulescu - 2018 - Ethics and Information Technology 20 (3):219-232.
    'Brainjacking’ refers to the exercise of unauthorized control of another’s electronic brain implant. Whilst the possibility of hacking a Brain–Computer Interface (BCI) has already been proven in both experimental and real-life settings, there is reason to believe that it will soon be possible to interfere with the software settings of the Implanted Pulse Generators (IPGs) that play a central role in Deep Brain Stimulation (DBS) systems. Whilst brainjacking raises ethical concerns pertaining to privacy and physical or psychological harm, we claim (...)
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  • (1 other version)Synthetic Biology and the Translational Imperative.Raheleh Heidari Feidt, Marcello Ienca, Bernice Simone Elger & Marc Folcher - 2019 - Science and Engineering Ethics 25 (1):33-52.
    Advances at the interface between the biological sciences and engineering are giving rise to emerging research fields such as synthetic biology. Harnessing the potential of synthetic biology requires timely and adequate translation into clinical practice. However, the translational research enterprise is currently facing fundamental obstacles that slow down the transition of scientific discoveries from the laboratory to the patient bedside. These obstacles including scarce financial resources and deficiency of organizational and logistic settings are widely discussed as primary impediments to translational (...)
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  • Decentralising the Self – Ethical Considerations in Utilizing Decentralised Web Technology for Direct Brain Interfaces.David M. Lyreskog, Hazem Zohny, Sebastian Porsdam Mann, Ilina Singh & Julian Savulescu - 2024 - Science and Engineering Ethics 30 (4):1-14.
    The rapidly advancing field of brain-computer (BCI) and brain-to-brain interfaces (BBI) is stimulating interest across various sectors including medicine, entertainment, research, and military. The developers of large-scale brain-computer networks, sometimes dubbed ‘Mindplexes’ or ‘Cloudminds’, aim to enhance cognitive functions by distributing them across expansive networks. A key technical challenge is the efficient transmission and storage of information. One proposed solution is employing blockchain technology over Web 3.0 to create decentralised cognitive entities. This paper explores the potential of a decentralised web (...)
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  • Mental integrity, autonomy, and fundamental interests.Peter Zuk - 2024 - Journal of Medical Ethics 50 (10):676-683.
    Many technology ethicists hold that the time has come to articulate _neurorights_: our normative claims vis-à-vis our brains and minds. One such claim is the right to _mental integrity_ (‘MI’). I begin by considering some paradigmatic threats to MI (§1) and how the dominant autonomy-based conception (‘ABC’) of MI attempts to make sense of them (§2). I next consider the objection that the ABC is _overbroad_ in its understanding of what threatens MI and suggest a friendly revision to the ABC (...)
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  • The Mystery of Mental Integrity: Clarifying Its Relevance to Neurotechnologies.Hazem Zohny, David M. Lyreskog, Ilina Singh & Julian Savulescu - 2023 - Neuroethics 16 (3):1-12.
    The concept of mental integrity is currently a significant topic in discussions concerning the regulation of neurotechnologies. Technologies such as deep brain stimulation and brain-computer interfaces are believed to pose a unique threat to mental integrity, and some authors have advocated for a legal right to protect it. Despite this, there remains uncertainty about what mental integrity entails and why it is important. Various interpretations of the concept have been proposed, but the literature on the subject is inconclusive. Here we (...)
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  • Data, Metadata, Mental Data? Privacy and the Extended Mind.Spyridon Orestis Palermos - 2023 - American Journal of Bioethics Neuroscience 14 (2):84-96.
    It has been recently suggested that if the Extended Mind thesis is true, mental privacy might be under serious threat. In this paper, I look into the details of this claim and propose that one way of dealing with this emerging threat requires that data ontology be enriched with an additional kind of data—viz., mental data. I explore how mental data relates to both data and metadata and suggest that, arguably, and by contrast with these existing categories of informational content, (...)
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  • Deep Fakes and Memory Malleability: False Memories in the Service of Fake News.Nadine Liv & Dov Greenbaum - 2020 - American Journal of Bioethics Neuroscience 11 (2):96-104.
    Fake news is a scourge within modern society, brought about by foreign powers amplifying messages throughout the recently constructed echo chambers of social media and exacerbated by the lack of co...
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  • Democratizing cognitive technology: a proactive approach.Marcello Ienca - 2019 - Ethics and Information Technology 21 (4):267-280.
    Cognitive technology is an umbrella term sometimes used to designate the realm of technologies that assist, augment or simulate cognitive processes or that can be used for the achievement of cognitive aims. This technological macro-domain encompasses both devices that directly interface the human brain as well as external systems that use artificial intelligence to simulate or assist (aspects of) human cognition. As they hold the promise of assisting and augmenting human cognitive capabilities both individually and collectively, cognitive technologies could produce, (...)
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  • Neuroethics Inside and Out: A Comparative Survey of Neural Device Industry Representatives and the General Public on Ethical Issues and Principles in Neurotechnology.Katherine E. MacDuffie, Scott Ransom & Eran Klein - forthcoming - American Journal of Bioethics Neuroscience:1-11.
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  • Is Your Neural Data Part of Your Mind? Exploring the Conceptual Basis of Mental Privacy.Abel Wajnerman Paz - 2022 - Minds and Machines 32 (2):395-415.
    It has been argued that neural data are an especially sensitive kind of personal information that could be used to undermine the control we should have over access to our mental states, and therefore need a stronger legal protection than other kinds of personal data. The Morningside Group, a global consortium of interdisciplinary experts advocating for the ethical use of neurotechnology, suggests achieving this by treating legally ND as a body organ. Although the proposal is currently shaping ND-related policies, it (...)
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  • Neuroadaptive Technology and the Self: a Postphenomenological Perspective.Stephen Fairclough - 2023 - Philosophy and Technology 36 (2):1-17.
    Neuroadaptive technology (NAT) is a closed-loop neurotechnology designed to enhance human–computer interaction. NAT works by collecting neurophysiological data, which are analysed via autonomous algorithms to create actions and adaptations at the user interface. This paper concerns how interaction with NAT can mediate self-related processing (SRP), such as self-awareness, self-knowledge, and agency. We begin with a postphenomenological analysis of the NAT closed loop to highlight the built-in selectivities of machine hermeneutics, i.e., autonomous chains of algorithms that convert data into an assessment (...)
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  • Identifying Criteria for the Evaluation of the Implications of Brain Reading for Mental Privacy.Giulio Mecacci & Pim Haselager - 2019 - Science and Engineering Ethics 25 (2):443-461.
    Contemporary brain reading technologies promise to provide the possibility to decode and interpret mental states and processes. Brain reading could have numerous societally relevant implications. In particular, the private character of mind might be affected, generating ethical and legal concerns. This paper aims at equipping ethicists and policy makers with conceptual tools to support an evaluation of the potential applicability and the implications of current and near future brain reading technology. We start with clarifying the concepts of mind reading and (...)
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