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  1. Closed-Loop Neuromodulation and Self-Perception in Clinical Treatment of Refractory Epilepsy.Tobias Haeusermann, Cailin R. Lechner, Kristina Celeste Fong, Alissa Bernstein Sideman, Agnieszka Jaworska, Winston Chiong & Daniel Dohan - 2023 - American Journal of Bioethics Neuroscience 14 (1):32-44.
    Background: Newer “closed-loop” neurostimulation devices in development could, in theory, induce changes to patients’ personalities and self-perceptions. Empirically, however, only limited data of patient and family experiences exist. Responsive neurostimulation (RNS) as a treatment for refractory epilepsy is the first approved and commercially available closed-loop brain stimulation system in clinical practice, presenting an opportunity to observe how conceptual neuroethical concerns manifest in clinical treatment. Methods: We conducted ethnographic research at a single academic medical center with an active RNS treatment program (...)
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  • Researcher Perspectives on Data Sharing in Deep Brain Stimulation.Peter Zuk, Clarissa E. Sanchez, Kristin Kostick, Laura Torgerson, Katrina A. Muñoz, Rebecca Hsu, Lavina Kalwani, Demetrio Sierra-Mercado, Jill O. Robinson, Simon Outram, Barbara A. Koenig, Stacey Pereira, Amy L. McGuire & Gabriel Lázaro-Muñoz - 2020 - Frontiers in Human Neuroscience 14:578687.
    The expansion of research on deep brain stimulation (DBS) and adaptive DBS (aDBS) raises important neuroethics and policy questions related to data sharing. However, there has been little empirical research on the perspectives of experts developing these technologies. We conducted semi-structured, open-ended interviews with aDBS researchers regarding their data sharing practices and their perspectives on ethical and policy issues related to sharing. Researchers expressed support for and a commitment to sharing, with most saying that they were either sharing their data (...)
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  • Data as a Cross-Cutting Dimension of Ethical Importance in Direct-to-Consumer Neurotechnologies.Stephen Rainey, Jan Christoph Bublitz, Hannah Maslen & Hannah Thornton - 2019 - American Journal of Bioethics Neuroscience 10 (4):180-182.
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  • Correcting the Brain? The Convergence of Neuroscience, Neurotechnology, Psychiatry, and Artificial Intelligence.Stephen Rainey & Yasemin J. Erden - 2020 - Science and Engineering Ethics 26 (5):2439-2454.
    The incorporation of neural-based technologies into psychiatry offers novel means to use neural data in patient assessment and clinical diagnosis. However, an over-optimistic technologisation of neuroscientifically-informed psychiatry risks the conflation of technological and psychological norms. Neurotechnologies promise fast, efficient, broad psychiatric insights not readily available through conventional observation of patients. Recording and processing brain signals provides information from ‘beneath the skull’ that can be interpreted as an account of neural processing and that can provide a basis to evaluate general behaviour (...)
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  • Brain Recording, Mind-Reading, and Neurotechnology: Ethical Issues from Consumer Devices to Brain-Based Speech Decoding.Stephen Rainey, Stéphanie Martin, Andy Christen, Pierre Mégevand & Eric Fourneret - 2020 - Science and Engineering Ethics 26 (4):2295-2311.
    Brain reading technologies are rapidly being developed in a number of neuroscience fields. These technologies can record, process, and decode neural signals. This has been described as ‘mind reading technology’ in some instances, especially in popular media. Should the public at large, be concerned about this kind of technology? Can it really read minds? Concerns about mind-reading might include the thought that, in having one’s mind open to view, the possibility for free deliberation, and for self-conception, are eroded where one (...)
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  • 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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  • Conceptualising and regulating all neural data from consumer-directed devices as medical data: more scope for an unnecessary expansion of medical influence?Brad Partridge & Susan Dodds - 2023 - Ethics and Information Technology 25 (4):1-8.
    Neurodevices that collect neural (or brain activity) data have been characterised as having the ability to register the inner workings of human mentality. There are concerns that the proliferation of such devices in the consumer-directed realm may result in the mass processing and commercialisation of neural data (as has been the case with social media data) and even threaten the mental privacy of individuals. To prevent this, some argue that all raw neural data should be conceptualised and regulated as “medical (...)
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  • How Neurotech Start-Ups Envision Ethical Futures: Demarcation, Deferral, Delegation.Sebastian M. Pfotenhauer, Nina Frahm & Sophia Knopf - 2023 - Science and Engineering Ethics 29 (1):1-20.
    Like many ethics debates surrounding emerging technologies, neuroethics is increasingly concerned with the private sector. Here, entrepreneurial visions and claims of how neurotechnology innovation will revolutionize society—from brain-computer-interfaces to neural enhancement and cognitive phenotyping—are confronted with public and policy concerns about the risks and ethical challenges related to such innovations. But while neuroethics frameworks have a longer track record in public sector research such as the U.S. BRAIN Initiative, much less is known about how businesses—and especially start-ups—address ethics in tech (...)
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  • Toward a More-Than-Human Approach to Neurotechnologies.Deborah Lupton - 2019 - American Journal of Bioethics Neuroscience 10 (4):174-176.
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  • Minding Rights: Mapping Ethical and Legal Foundations of ‘Neurorights’.Sjors Ligthart, Marcello Ienca, Gerben Meynen, Fruzsina Molnar-Gabor, Roberto Andorno, Christoph Bublitz, Paul Catley, Lisa Claydon, Thomas Douglas, Nita Farahany, Joseph J. Fins, Sara Goering, Pim Haselager, Fabrice Jotterand, Andrea Lavazza, Allan McCay, Abel Wajnerman Paz, Stephen Rainey, Jesper Ryberg & Philipp Kellmeyer - 2023 - Cambridge Quarterly of Healthcare Ethics 32 (4):461-481.
    The rise of neurotechnologies, especially in combination with artificial intelligence (AI)-based methods for brain data analytics, has given rise to concerns around the protection of mental privacy, mental integrity and cognitive liberty – often framed as “neurorights” in ethical, legal, and policy discussions. Several states are now looking at including neurorights into their constitutional legal frameworks, and international institutions and organizations, such as UNESCO and the Council of Europe, are taking an active interest in developing international policy and governance guidelines (...)
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  • 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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  • 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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  • Towards a Governance Framework for Brain Data.Marcello Ienca, Joseph J. Fins, Ralf J. Jox, Fabrice Jotterand, Silja Voeneky, Roberto Andorno, Tonio Ball, Claude Castelluccia, Ricardo Chavarriaga, Hervé Chneiweiss, Agata Ferretti, Orsolya Friedrich, Samia Hurst, Grischa Merkel, Fruzsina Molnár-Gábor, Jean-Marc Rickli, James Scheibner, Effy Vayena, Rafael Yuste & Philipp Kellmeyer - 2022 - Neuroethics 15 (2):1-14.
    The increasing availability of brain data within and outside the biomedical field, combined with the application of artificial intelligence (AI) to brain data analysis, poses a challenge for ethics and governance. We identify distinctive ethical implications of brain data acquisition and processing, and outline a multi-level governance framework. This framework is aimed at maximizing the benefits of facilitated brain data collection and further processing for science and medicine whilst minimizing risks and preventing harmful use. The framework consists of four primary (...)
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  • Neurorights – Do we Need New Human Rights? A Reconsideration of the Right to Freedom of Thought.Nora Hertz - 2022 - Neuroethics 16 (1):1-15.
    Progress in neurotechnology and Artificial Intelligence (AI) provides unprecedented insights into the human brain. There are increasing possibilities to influence and measure brain activity. These developments raise multifaceted ethical and legal questions. The proponents of neurorights argue in favour of introducing new human rights to protect mental processes and brain data. This article discusses the necessity and advantages of introducing new human rights focusing on the proposed new human right to mental self-determination and the right to freedom of thought as (...)
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  • Recommendations for Responsible Development and Application of Neurotechnologies.Sara Goering, Eran Klein, Laura Specker Sullivan, Anna Wexler, Blaise Agüera Y. Arcas, Guoqiang Bi, Jose M. Carmena, Joseph J. Fins, Phoebe Friesen, Jack Gallant, Jane E. Huggins, Philipp Kellmeyer, Adam Marblestone, Christine Mitchell, Erik Parens, Michelle Pham, Alan Rubel, Norihiro Sadato, Mina Teicher, David Wasserman, Meredith Whittaker, Jonathan Wolpaw & Rafael Yuste - 2021 - Neuroethics 14 (3):365-386.
    Advancements in novel neurotechnologies, such as brain computer interfaces and neuromodulatory devices such as deep brain stimulators, will have profound implications for society and human rights. While these technologies are improving the diagnosis and treatment of mental and neurological diseases, they can also alter individual agency and estrange those using neurotechnologies from their sense of self, challenging basic notions of what it means to be human. As an international coalition of interdisciplinary scholars and practitioners, we examine these challenges and make (...)
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  • Ethischer Diskurs zu Epigenetik und Genomeditierung: die Gefahr eines (epi-)genetischen Determinismus und naturwissenschaftlich strittiger Grundannahmen.Karla Karoline Sonne Kalinka Alex & Eva C. Winkler - 2021 - In Boris Fehse, Ferdinand Hucho, Sina Bartfeld, Stephan Clemens, Tobias Erb, Heiner Fangerau, Jürgen Hampel, Martin Korte, Lilian Marx-Stölting, Stefan Mundlos, Angela Osterheider, Anja Pichl, Jens Reich, Hannah Schickl, Silke Schicktanz, Jochen Taupitz, Jörn Walter, Eva Winkler & Martin Zenke (eds.), Fünfter Gentechnologiebericht: Sachstand und Perspektiven für Forschung und Anwendung. Baden-Baden, Deutschland.: Nomos. DOI: 10.5771/9783748927242. pp. 299-323.
    Slightly modified excerpt from the section 13.4 Zusammenfassung und Ausblick (translated into englisch): This chapter is based on an analysis of ethical debates on epigenetics and genome editing, debates, in which ethical arguments relating to future generations and justice play a central role. The analysis aims to contextualize new developments in genetic engineering, such as genome and epigenome editing, ethically. At the beginning, the assumptions of "genetic determinism," on which "genetic essentialism" is based, of "epigenetic determinism" as well as "genetic" (...)
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