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  1. Nonconsensual neurocorrectives, bypassing, and free action.Gabriel De Marco - 2021 - Philosophical Studies 179 (6):1953-1972.
    As neuroscience progresses, we will not only gain a better understanding of how our brains work, but also a better understanding of how to modify them, and as a result, our mental states. An important question we are faced with is whether the state could be justified in implementing such methods on criminal offenders, without their consent, for the purposes of rehabilitation and reduction of recidivism; a practice that is already legal in some jurisdictions. By focusing on a prominent type (...)
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  • Revisiting Moral Bioenhancement and Autonomy.Ji-Young Lee - 2021 - Neuroethics 14 (3):529-539.
    Some have claimed that moral bioenhancement undermines freedom and authenticity – thereby making moral bioenhancement problematic or undesirable – whereas others have said that moral bioenhancement does not undermine freedom and authenticity – thereby salvaging its ethical permissibility. These debates are characterized by a couple of features. First, a positive relationship is assumed to hold between these agency-related concepts and the ethical permissibility of moral bioenhancement. Second, these debates are centered around individualistic conceptions of agency, like free choice and authenticity, (...)
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  • Personality and Authenticity in Light of the Memory-Modifying Potential of Optogenetics: A Reply to Objections about Potential Therapeutic Applicability of Optogenetics.Agnieszka K. Adamczyk & Przemysław Zawadzki - 2021 - American Journal of Bioethics Neuroscience 15 (2):W4-W7.
    In our article (Zawadzki and Adamczyk 2021), we analyzed threats that novel memory modifying interventions may pose in the future. More specifically, we discussed how optogenetics’ potential for reversible erasure/deactivation of memory “may impact authenticity by producing changes at different levels of personality.” Our article has received many thoughtful open peer commentaries for which we would like to express our great appreciation. We have identified two main threads of objections. They are related to the potential applicability of optogenetics as a (...)
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  • Mapping the Dimensions of Agency.Andreas Schönau, Ishan Dasgupta, Timothy Brown, Erika Versalovic, Eran Klein & Sara Goering - 2021 - American Journal of Bioethics Neuroscience 12 (2):172-186.
    Neural devices have the capacity to enable users to regain abilities lost due to disease or injury – for instance, a deep brain stimulator (DBS) that allows a person with Parkinson’s disease to regain the ability to fluently perform movements or a Brain Computer Interface (BCI) that enables a person with spinal cord injury to control a robotic arm. While users recognize and appreciate the technologies’ capacity to maintain or restore their capabilities, the neuroethics literature is replete with examples of (...)
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  • Personality and Authenticity in Light of the Memory-Modifying Potential of Optogenetics.Przemysław Zawadzki & Agnieszka K. Adamczyk - 2021 - American Journal of Bioethics Neuroscience 12 (1):3-21.
    There has been a growing interest in research concerning memory modification technologies (MMTs) in recent years. Neuroscientists and psychologists are beginning to explore the prospect of controllable and intentional modification of human memory. One of the technologies with the greatest potential to this end is optogenetics—an invasive neuromodulation technique involving the use of light to control the activity of individual brain cells. It has recently shown the potential to modify specific long-term memories in animal models in ways not yet possible (...)
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  • Moral Neuroenhancement.Brian D. Earp, Thomas Douglas & Julian Savulescu - 2017 - In L. Syd M. Johnson & Karen S. Rommelfanger (eds.), The Routledge Handbook of Neuroethics. Routledge.
    In this chapter, we introduce the notion of “moral neuroenhancement,” offering a novel definition as well as spelling out three conditions under which we expect that such neuroenhancement would be most likely to be permissible (or even desirable). Furthermore, we draw a distinction between first-order moral capacities, which we suggest are less promising targets for neurointervention, and second-order moral capacities, which we suggest are more promising. We conclude by discussing concerns that moral neuroenhancement might restrict freedom or otherwise “misfire,” and (...)
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  • Deep Brain Stimulation, Authenticity and Value.Pugh Jonathan, Maslen Hannah & Savulescu Julian - 2017 - Cambridge Quarterly of Healthcare Ethics 26 (4):640-657.
    Deep brain stimulation has been of considerable interest to bioethicists, in large part because of the effects that the intervention can occasionally have on central features of the recipient’s personality. These effects raise questions regarding the philosophical concept of authenticity. In this article, we expand on our earlier work on the concept of authenticity in the context of deep brain stimulation by developing a diachronic, value-based account of authenticity. Our account draws on both existentialist and essentialist approaches to authenticity, and (...)
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  • Moral Bio-enhancement, Freedom, Value and the Parity Principle.Jonathan Pugh - 2019 - Topoi 38 (1):73-86.
    A prominent objection to non-cognitive moral bio-enhancements is that they would compromise the recipient’s ‘freedom to fall’. I begin by discussing some ambiguities in this objection, before outlining an Aristotelian reading of it. I suggest that this reading may help to forestall Persson and Savulescu’s ‘God-Machine’ criticism; however, I suggest that the objection still faces the problem of explaining why the value of moral conformity is insufficient to outweigh the value of the freedom to fall itself. I also question whether (...)
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  • From ‘Hard’ Neuro-Tools to ‘Soft’ Neuro-Toys? Refocussing the Neuro-Enhancement Debate.Jonna Brenninkmeijer & Hub Zwart - 2016 - Neuroethics 10 (3):337-348.
    Since the 1990’s, the debate concerning the ethical, legal and societal aspects of ‘neuro-enhancement’ has evolved into a massive discourse, both in the public realm and in the academic arena. This ethical debate, however, tends to repeat the same sets of arguments over and over again. Normative disagreements between transhumanists and bioconservatives on invasive or radical brain stimulators, and uncertainties regarding the use and effectivity of nootropic pharmaceuticals dominate the field. Building on the results of an extensive European project on (...)
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  • Me, Myself and My Brain Implant: Deep Brain Stimulation Raises Questions of Personal Authenticity and Alienation.Felicitas Kraemer - 2011 - Neuroethics 6 (3):483-497.
    In this article, I explore select case studies of Parkinson patients treated with deep brain stimulation in light of the notions of alienation and authenticity. While the literature on DBS has so far neglected the issues of authenticity and alienation, I argue that interpreting these cases in terms of these concepts raises new issues for not only the philosophical discussion of neuro-ethics of DBS, but also for the psychological and medical approach to patients under DBS. In particular, I suggest that (...)
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  • Might artificial intelligence become part of the person, and what are the key ethical and legal implications?Jan Christoph Bublitz - forthcoming - AI and Society:1-12.
    This paper explores and ultimately affirms the surprising claim that artificial intelligence (AI) can become part of the person, in a robust sense, and examines three ethical and legal implications. The argument is based on a rich, legally inspired conception of persons as free and independent rightholders and objects of heightened protection, but it is construed so broadly that it should also apply to mainstream philosophical conceptions of personhood. The claim is exemplified by a specific technology, devices that connect human (...)
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  • Cognitive enhancement and authenticity: moving beyond the Impasse.Emma C. Gordon - 2022 - Medicine, Health Care and Philosophy 25 (2):281-288.
    In work on the ethics of cognitive enhancement use, there is a pervasive concern that such enhancement will—in some way—make us less authentic. Attempts to clarify what this concern amounts to and how to respond to it often lead to debates on the nature of the “true self” and what constitutes “genuine human activity”. This paper shows that a new and effective way to make progress on whether certain cases of cognitive enhancement problematically undermine authenticity is to make use of (...)
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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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  • Should violent offenders be forced to undergo neurotechnological treatment? A critical discussion of the ‘freedom of thought’ objection.Thomas Søbirk Petersen & Kristian Kragh - 2017 - Journal of Medical Ethics 43 (1):30-34.
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  • Moral Testimony Pessimism and the Uncertain Value of Authenticity.Andreas L. Mogensen - 2017 - Philosophy and Phenomenological Research 95 (2):261-284.
    Many philosophers believe that there exist distinctive obstacles to relying on moral testimony. In this paper, I criticize previous attempts to identify these obstacles and offer a new theory. I argue that the problems associated with moral deference can't be explained in terms of the value of moral understanding, nor in terms of aretaic considerations related to subjective integration. Instead, our uneasiness with moral testimony is best explained by our attachment to an ideal of authenticity that places special demands on (...)
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  • Direct Brain Interventions and Responsibility Enhancement.Elizabeth Shaw - 2014 - Criminal Law and Philosophy 8 (1):1-20.
    Advances in neuroscience might make it possible to develop techniques for directly altering offenders’ brains, in order to make offenders more responsible and law-abiding. The idea of using such techniques within the criminal justice system can seem intuitively troubling, even if they were more effective in preventing crime than traditional methods of rehabilitation. One standard argument against this use of brain interventions is that it would undermine the individual’s free will. This paper maintains that ‘free will’ (at least, as that (...)
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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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  • SSRIs as Moral Enhancement Interventions: A Practical Dead End.Harris Wiseman - 2014 - American Journal of Bioethics Neuroscience 5 (3):21-30.
    Selective serotonin reuptake inhibitors (SSRIs) have gained a degree of prominence across recent moral enhancement literature as a possible intervention for dealing with antisocial and aggressive impulses. This is due to serotonin's purported capacity to modulate persons’ averseness to harm. The aim of this article is to argue that the use of SSRIs is not something worth getting particularly excited about as a practicable intervention for moral enhancement purposes, and that the generally uncritical enthusiasm over serotonin's potential as a moral (...)
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  • Ethical Issues in Memory Modification Technology: A Scoping Review.Junjie Yang - forthcoming - Journal of Bioethical Inquiry:1-22.
    Memory modification technology (MMT) refers to the use of neurotechnologies to intervene in memories. Many scholars have reflected on the ethical issues in MMT, but a comprehensive review of this topic has not been seen. This article presents the first scoping review study of ethical issues in MMT using a bibliometric and systematic approach. After thorough examination, 133 records of key literature are included in this scoping review. Six core ethical themes are extracted: (1) self, identity, and authenticity; (2) autonomy (...)
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  • The Locus of Agency in Extended Cognitive Systems.Barbara Tomczyk - forthcoming - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie:1-26.
    The increasing popularity of artificial cognitive enhancements raises the issue of their impact on the agent’s personal autonomy, and issues pertaining to how the latter is to be secured. The extended mind thesis implies that mental states responsible for autonomous action can be partly constituted by the workings of cognitive artifacts themselves, and the question then arises of whether this commits one to embracing an extended agent thesis. My answer is negative. After briefly presenting the main accounts on the conditions (...)
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  • Moral Bioenhancement Through Memory-editing: A Risk for Identity and Authenticity?Andrea Lavazza - 2019 - Topoi 38 (1):15-27.
    Moral bioenhancement is the attempt to improve human behavioral dispositions, especially in relation to the great ethical challenges of our age. To this end, scientists have hypothesised new molecules or even permanent changes in the genetic makeup to achieve such moral bioenhancement. The philosophical debate has focused on the permissibility and desirability of that enhancement and the possibility of making it mandatory, given the positive result that would follow. However, there might be another way to enhance the overall moral behavior (...)
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  • Neuroethics and the Possible Types of Moral Enhancement.John R. Shook - 2012 - American Journal of Bioethics Neuroscience 3 (4):3-14.
    Techniques for achieving moral enhancement will modify brain processes to produce what is alleged to be more moral conduct. Neurophilosophy and neuroethics must ponder what “moral enhancement” could possibly be, if possible at all. Objections to the very possibility of moral enhancement, raised from various philosophical and neuroscientific standpoints, fail to justify skepticism, but they do place serious constraints on the kinds of efficacious moral enhancers. While there won't be a “morality pill,” and hopes for global moral enlightenment will remain (...)
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  • Pediatric Authenticity: Hiding in Plain Sight.Ryan H. Nelson, Bryanna Moore & Jennifer Blumenthal-Barby - 2022 - Hastings Center Report 52 (1):42-50.
    Hastings Center Report, Volume 52, Issue 1, Page 42-50, January/February 2022.
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  • Can self-validating neuroenhancement be autonomous?Jukka Varelius - 2020 - Medicine, Health Care and Philosophy 23 (1):51-59.
    Consider that an individual improves her capacities by neuroscientific means. It turns out that, besides altering her in the way(s) she intended, the enhancement also changes her personality in significant way(s) she did not foresee. Yet the person endorses her new self because the neuroenhancement she underwent changed her. Can the person’s approval of her new personality be autonomous? While questions of autonomy have already gathered a significant amount of attention in philosophical literature on human enhancement, the problem just described—henceforth (...)
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  • Deep Brain Stimulation, Historicism, and Moral Responsibility.Daniel Sharp & David Wasserman - 2016 - Neuroethics 9 (2):173-185.
    Although philosophers have explored several connections between neuroscience and moral responsibility, the issue of how real-world neurological modifications, such as Deep Brain Stimulation, impact moral responsibility has received little attention. In this article, we draw on debates about the relevance of history and manipulation to moral responsibility to argue that certain kinds of neurological modification can diminish the responsibility of the agents so modified. We argue for a historicist position - a version of the history-sensitive reflection view - and defend (...)
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  • Restoring Responsibility: Promoting Justice, Therapy and Reform Through Direct Brain Interventions.Nicole A. Vincent - 2014 - Criminal Law and Philosophy 8 (1):21-42.
    Direct brain intervention based mental capacity restoration techniques-for instance, psycho-active drugs-are sometimes used in criminal cases to promote the aims of justice. For instance, they might be used to restore a person's competence to stand trial in order to assess the degree of their responsibility for what they did, or to restore their competence for punishment so that we can hold them responsible for it. Some also suggest that such interventions might be used for therapy or reform in criminal legal (...)
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  • Autonomy, procedural and substantive: a discussion of the ethics of cognitive enhancement.Igor D. Bandeira & Enzo Lenine - 2022 - Medicine, Health Care and Philosophy 25 (4):729-736.
    As cognitive enhancement research advances, important ethical questions regarding individual autonomy and freedom are raised. Advocates of cognitive enhancement frequently adopt a procedural approach to autonomy, arguing that enhancers improve an individual’s reasoning capabilities, which are quintessential to being an autonomous agent. On the other hand, critics adopt a more nuanced approach by considering matters of authenticity and self-identity, which go beyond the mere assessment of one’s reasoning capacities. Both positions, nevertheless, require further philosophical scrutiny. In this paper, we investigate (...)
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  • Cognitive Enhancement to Overcome Laziness: Ethically Wrong or Just Stupid?Robert Ranisch - 2015 - American Journal of Bioethics Neuroscience 6 (1):42-43.
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  • Reasons for Comfort and Discomfort with Pharmacological Enhancement of Cognitive, Affective, and Social Domains.Laura Y. Cabrera, Nicholas S. Fitz & Peter B. Reiner - 2014 - Neuroethics 8 (2):93-106.
    The debate over the propriety of cognitive enhancement evokes both enthusiasm and worry. To gain further insight into the reasons that people may have for endorsing or eschewing pharmacological enhancement, we used empirical tools to explore public attitudes towards PE of twelve cognitive, affective, and social domains. Participants from Canada and the United States were recruited using Mechanical Turk and were randomly assigned to read one vignette that described an individual who uses a pill to enhance a single domain. After (...)
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  • Enhancement, Ethics, and Existentialism.Hannah Chimowitz, Sheridan Hough & Robert Sade - 2015 - American Journal of Bioethics Neuroscience 6 (1):48-49.
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  • “Virtue Engineering” and Moral Agency: Will Post-Humans Still Need the Virtues?Fabrice Jotterand - 2011 - American Journal of Bioethics Neuroscience 2 (4):3-9.
    It is not the purpose of this article to evaluate the techno-scientific claims of the transhumanists. Instead, I question seriously the nature of the ethics and morals they claim can, or soon will, be manipulated artificially. I argue that while the possibility to manipulate human behavior via emotional processes exists, the question still remains concerning the content of morality. In other words, neural moral enhancement does not capture the fullness of human moral psychology, which includes moral capacity and moral content. (...)
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  • Brain Interventions, Moral Responsibility, and Control over One’s Mental Life.Gabriel De Marco - 2019 - Neuroethics 12 (3):221-229.
    In the theoretical literature on moral responsibility, one sometimes comes across cases of manipulated agents. In cases of this type, the agent is a victim of wholesale manipulation, involving the implantation of various pro-attitudes (desires, values, etc.) along with the deletion of competing pro-attitudes. As a result of this manipulation, the agent ends up performing some action unlike any that she would have performed were it not for the manipulation. These sorts of cases are sometimes thought to motivate historical views (...)
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  • The Spectrum of Responsibility Ascription for End Users of Neurotechnologies.Andreas Schönau - 2021 - Neuroethics 14 (3):423-435.
    Invasive neural devices offer novel prospects for motor rehabilitation on different levels of agentive behavior. From a functional perspective, they interact with, support, or enable human intentional actions in such a way that movement capabilities are regained. However, when there is a technical malfunction resulting in an unintended movement, the complexity of the relationship between the end user and the device sometimes makes it difficult to determine who is responsible for the outcome – a circumstance that has been coined as (...)
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  • Would you be willing to zap your child's brain? Public perspectives on parental responsibilities and the ethics of enhancing children with transcranial direct current stimulation.Katy Wagner, Hannah Maslen, Justin Oakley & Julian Savulescu - 2018 - AJOB Empirical Bioethics 9 (1):29-38.
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  • The ethics of deep brain stimulation.Marcus Unterrainer & Fuat S. Oduncu - 2015 - Medicine, Health Care and Philosophy 18 (4):475-485.
    Deep brain stimulation is an invasive technique designed to stimulate certain deep brain regions for therapeutic purposes and is currently used mainly in patients with neurodegenerative disorders, such as Parkinson’s disease. However, DBS is also used increasingly for other experimental applications, such as the treatment of psychiatric disorders, weight reduction. Apart from its therapeutic potential, DBS can cause severe adverse effects, some that might also have a significant impact on the patient’s personality and autonomy by the external stimulation of DBS (...)
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  • Health, Happiness and Human Enhancement—Dealing with Unexpected Effects of Deep Brain Stimulation.Maartje Schermer - 2011 - Neuroethics 6 (3):435-445.
    Deep Brain Stimulation (DBS) is a treatment involving the implantation of electrodes into the brain. Presently, it is used for neurological disorders like Parkinson’s disease, but indications are expanding to psychiatric disorders such as depression, addiction and Obsessive Compulsive Disorder (OCD). Theoretically, it may be possible to use DBS for the enhancement of various mental functions. This article discusses a case of an OCD patient who felt very happy with the DBS treatment, even though her symptoms were not reduced. First, (...)
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  • Enhancing Motivation by Use of Prescription Stimulants: The Ethics of Motivation Enhancement.Torben Kjærsgaard - 2015 - American Journal of Bioethics Neuroscience 6 (1):4-10.
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  • Why “Moral Enhancement” Isn’t Always Moral Enhancement: The Case of Traumatic Brain Injury in American Vets.Valerie Gray Hardcastle - 2018 - Journal of Medicine and Philosophy 43 (5):527-546.
    In this article, I argue that as we learn more about how we might intervene in the brain in ways that impact human behavior, the scope of what counts as “moral behavior” becomes smaller and smaller because things we successfully manipulate using evidence-based science are often things that fall outside the sphere of morality. Consequently, the argument that we are morally obligated to morally enhance our neighbors starts to fall apart, not because humans should be free to make terrible choices, (...)
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  • Memory, Authenticity, and Optogenethics.Jan Christoph Bublitz & Dimitris Repantis - 2021 - American Journal of Bioethics Neuroscience 12 (1):30-32.
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