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  1. When Science Fiction Writers Used Fictional Drugs: Rise and Fall of the Twentieth-Century Drug Dystopia.John Hickman - 2009 - Utopian Studies 20 (1):141-170.
    This article compares seven novels published from 1932 to 1980 which are set in drug dystopias in order to answer two questions. What are the effects and symbolic meanings of the fictional drugs they describe? Why are there so few examples of this subgenre? Today, their warnings about the reduction of populations to docility or of assaults on the integrity of individual minds seem overwrought, and the apparent passing of the subgenre need not be mourned. Two of the seven novels, (...)
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  • New Paradigm of Moral Education in an Age of Neuroscience. 추병완 - 2013 - Journal of Ethics: The Korean Association of Ethics 1 (93):231-264.
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  • Brain Data in Context: Are New Rights the Way to Mental and Brain Privacy?Daniel Susser & Laura Y. Cabrera - 2024 - American Journal of Bioethics Neuroscience 15 (2):122-133.
    The potential to collect brain data more directly, with higher resolution, and in greater amounts has heightened worries about mental and brain privacy. In order to manage the risks to individuals posed by these privacy challenges, some have suggested codifying new privacy rights, including a right to “mental privacy.” In this paper, we consider these arguments and conclude that while neurotechnologies do raise significant privacy concerns, such concerns are—at least for now—no different from those raised by other well-understood data collection (...)
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  • The Philosophy of Neuroscience.Bickle John, Mandik Peter & Anthony Landreth - 2012 - In Peter Adamson (ed.), Stanford Encyclopedia of Philosophy. Stanford Encyclopedia of Philosophy.
  • Neuroethics is Not Hyperbole.Anthony Vernillo - 2008 - American Journal of Bioethics 8 (1):57-59.
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  • Ethical questions in functional neuroimaging and cognitive enhancement.Danielle C. Turner & Barbara J. Sahakian - 2006 - Poiesis and Praxis 4 (2):81-94.
    The new field of neuroethics has recently emerged following unprecedented developments in the neurosciences. Neuroimaging and cognitive enhancement in particular are demanding ethical debate. For example, neuroscientists are able to measure, with increasing accuracy, intimate personal biases and thoughts as they occur in the brain. Smart drugs are now available that can effectively and safely enhance mental functioning in both healthy and clinical populations. This article describes the scientific principles behind these technologies, and urges the development of ethical principles based (...)
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  • Brain Privacy and the Case of Cannibal Cop.Mark Tunick - 2017 - Res Publica 23 (2):179-196.
    In light of technology that may reveal the content of a person’s innermost thoughts, I address the question of whether there is a right to ‘brain privacy’—a right not to have one’s inner thoughts revealed to others–even if exposing these thoughts might be beneficial to society. I draw on a conception of privacy as the ability to control who has access to information about oneself and to an account that connects one’s interest in privacy to one’s interests in autonomy and (...)
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  • Functional neuroimaging and the law: Trends and directions for future scholarship.Stacey A. Tovino - 2007 - American Journal of Bioethics 7 (9):44 – 56.
    Under the umbrella of the burgeoning neurotransdisciplines, scholars are using the principles and research methodologies of their primary and secondary fields to examine developments in neuroimaging, neuromodulation and psychopharmacology. The path for advanced scholarship at the intersection of law and neuroscience may clear if work across the disciplines is collected and reviewed and outstanding and debated issues are identified and clarified. In this article, I organize, examine and refine a narrow class of the burgeoning neurotransdiscipline scholarship; that is, scholarship at (...)
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  • The new possibilities of neuroscience and their ethical implications.Matthis Synofzik - 2005 - Ethik in der Medizin 17 (3):206-219.
    Durch den rasanten Fortschritt in den Neurowissenschaften ergibt sich ein bidirektionales Implikationsverhältnis zwischen Ethik und Neurowissenschaften: Einerseits haben neurowissenschaftliche Erkenntnisse epistemische Implikationen für anthropologisch-ethische Grundkonzepte, andererseits haben ethische Kriterien normative Implikationen für neurowissenschaftliche Interventionen. Die Neuroethik untersucht diese normativen Implikationen systematisch auf der metaethischen, der theoretischen und der praktischen Ebene. Um eine spezifische und differenzierte ethische Analyse der einzelnen neurowissenschaftlichen Interventionen zu ermöglichen, soll hier eine bereichsspezifische, neuroethische Kriteriologie vorgestellt werden. Durch exemplarische Anwendung ihrer einzelnen Kriterien auf gegenwärtige und zukünftige (...)
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  • The new possibilities of neuroscience and their ethical implications.Matthis Synofzik - 2005 - Ethik in der Medizin 17 (3):206-219.
    Durch den rasanten Fortschritt in den Neurowissenschaften ergibt sich ein bidirektionales Implikationsverhältnis zwischen Ethik und Neurowissenschaften: Einerseits haben neurowissenschaftliche Erkenntnisse epistemische Implikationen für anthropologisch-ethische Grundkonzepte, andererseits haben ethische Kriterien normative Implikationen für neurowissenschaftliche Interventionen. Die Neuroethik untersucht diese normativen Implikationen systematisch auf der metaethischen, der theoretischen und der praktischen Ebene. Um eine spezifische und differenzierte ethische Analyse der einzelnen neurowissenschaftlichen Interventionen zu ermöglichen, soll hier eine bereichsspezifische, neuroethische Kriteriologie vorgestellt werden. Durch exemplarische Anwendung ihrer einzelnen Kriterien auf gegenwärtige und zukünftige (...)
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  • Brain Data in Context: Are New Rights the Way to Mental and Brain Privacy?Daniel Susser & Laura Y. Cabrera - 2023 - American Journal of Bioethics Neuroscience:1-12.
    The potential to collect brain data more directly, with higher resolution, and in greater amounts has heightened worries about mental and brain privacy. In order to manage the risks to individuals posed by these privacy challenges, some have suggested codifying new privacy rights, including a right to “mental privacy.” In this paper, we consider these arguments and conclude that while neurotechnologies do raise significant privacy concerns, such concerns are—at least for now—no different from those raised by other well-understood data collection (...)
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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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  • 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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  • Neuroethics, Gender and the Response to Difference.Deboleena Roy - 2011 - Neuroethics 5 (3):217-230.
    This paper examines how the new field of neuroethics is responding to the old problem of difference, particularly to those ideas of biological difference emerging from neuroimaging research that purports to further delineate our understanding of sex and/or gender differences in the brain. As the field develops, it is important to ask what is new about neuroethics compared to bioethics in this regard, and whether the concept of difference is being problematized within broader contexts of power and representation. As a (...)
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  • Neuroscientific challenges to free will and responsibility.Adina Roskies - 2006 - Trends in Cognitive Sciences 10 (9):419-423.
  • Brain imaging and privacy.Juha Räikkä - 2010 - Neuroethics 3 (1):5-12.
    I will argue that the fairly common assumption that brain imaging may compromise people’s privacy in an undesirable way only if moral crimes are committed is false. Sometimes persons’ privacy is compromised because of failures of privacy. A normal emotional reaction to failures of privacy is embarrassment and shame, not moral resentment like in the cases of violations of right to privacy. I will claim that if (1) neuroimaging will provide all kinds of information about persons’ inner life and not (...)
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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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  • Neuroimaging: Beginning to Appreciate Its Complexities.Erik Parens & Josephine Johnston - 2014 - Hastings Center Report 44 (s2):2-7.
    For over a century, scientists have sought to see through the protective shield of the human skull and into the living brain. Today, an array of technologies allows researchers and clinicians to create astonishingly detailed images of our brain's structure as well as colorful depictions of the electrical and physiological changes that occur within it when we see, hear, think and feel. These technologies—and the images they generate—are an increasingly important tool in medicine and science.Given the role that neuroimaging technologies (...)
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  • Neural Lie Detection, Criterial Change, and OrdinaryLanguage.Thomas Nadelhoffer - 2010 - Neuroethics 4 (3):205-213.
    Michael Pardo and Dennis Patterson have recently put forward several provocative and stimulating criticisms that strike at the heart of much work that has been done at the crossroads of neuroscience and the law. My goal in this essay is to argue that their criticisms of the nascent but growing field of neurolaw are ultimately based on questionable assumptions concerning the nature of the ever evolving relationship between scientific discovery and ordinary language. For while the marriage between ordinary language and (...)
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  • Freedom of thought at the ethical frontier of law & science.Marcus Moore - 2022 - Ethics and Behavior 32 (6):510-531.
    ABSTRACT Some of the most compelling contemporary ethical questions surround 21st Century neuroscientific technologies. Among these, neurocognitive intervention technologies allow an unprecedented ability to alter thought. Concerns exist about their impact on individual freedom, behavior and personhood. They could also distort society, eroding core values of dignity, equality, and diversity. Potent laws are needed to anchor regulation in this rising field. The article explores how the long-neglected human right of Freedom of Thought might protect the integrity of the mind at (...)
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  • Human Subjects Protections in Biomedical Enhancement Research: Assessing Risk and Benefit and Obtaining Informed Consent.Maxwell J. Mehlman & Jessica W. Berg - 2008 - Journal of Law, Medicine and Ethics 36 (3):546-549.
    The protection of human subjects in biomedical research relies on two principal mechanisms: assessing and comparing the risks and potential benefits of proposed research, and obtaining potential subjects' informed consent. While these have been discussed extensively in the literature, no attention has been paid to whether the processes should be different when the objective of an experimental biomedical intervention is to improve individual appearance, performance, or capability rather than to prevent, cure, or mitigate disease . This essay examines this question (...)
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  • Human Subjects Protections in Biomedical Enhancement Research: Assessing Risk and Benefit and Obtaining Informed Consent.Maxwell J. Mehlman & Jessica W. Berg - 2008 - Journal of Law, Medicine and Ethics 36 (3):546-559.
    There are two critical steps in determining whether a medical experiment involving human subjects can be conducted in an ethical manner: assessing risks and potential benefits and obtaining potential subjects’ informed consent. Although an extensive literature on both of these aspects exists, virtually nothing has been written about human experimentation for which the objective is not to prevent, cure, or mitigate a disease or condition, but to enhance human capabilities. One exception is a 2004 article by Rebecca Dresser on preimplantation (...)
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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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  • Rethinking neuroethics in the light of the extended mind thesis.Neil Levy - 2007 - American Journal of Bioethics 7 (9):3-11.
    The extended mind thesis is the claim that mental states extend beyond the skulls of the agents whose states they are. This seemingly obscure and bizarre claim has far-reaching implications for neuroethics, I argue. In the first half of this article, I sketch the extended mind thesis and defend it against criticisms. In the second half, I turn to its neuroethical implications. I argue that the extended mind thesis entails the falsity of the claim that interventions into the brain are (...)
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  • Will neuroscientific discoveries about free will and selfhood change our ethical practices?Chris Kaposy - 2008 - Neuroethics 2 (1):51-59.
    Over the past few years, a number of authors in the new field of neuroethics have claimed that there is an ethical challenge presented by the likelihood that the findings of neuroscience will undermine many common assumptions about human agency and selfhood. These authors claim that neuroscience shows that human agents have no free will, and that our sense of being a “self” is an illusory construction of our brains. Furthermore, some commentators predict that our ethical practices of assigning moral (...)
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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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  • Ipsa scientia potestas est (knowledge is power).Judy Illes - 2007 - American Journal of Bioethics 7 (1):1 – 2.
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  • ELSI Priorities for Brain Imaging.Judy Illes, Raymond De Vries, Mildred K. Cho & Pam Schraedley-Desmond - 2006 - American Journal of Bioethics 6 (2):W24-W31.
    As one of the most compelling technologies for imaging the brain, functional MRI (fMRI) produces measurements and persuasive pictures of research subjects making cognitive judgments and even reasoning through difficult moral decisions. Even after centuries of studying the link between brain and behavior, this capability presents a number of novel significant questions. For example, what are the implications of biologizing human experience? How might neuroimaging disrupt the mysteries of human nature, spirituality, and personal identity? Rather than waiting for an ethical (...)
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  • Response to Open Commentaries for "Propranolol and the Prevention of Post-Traumatic Stress Disorder: Is It Wrong to Erase the 'Sting' of Bad Memories?".Michael Henry, Jennifer R. Fishman & Stuart J. Youngner - 2007 - American Journal of Bioethics 7 (9):1-3.
    The National Institute of Mental Health reports that approximately 5.2 million Americans experience post-traumatic stress disorder each year. PTSD can be severely debilitating and diminish quality of life for patients and those who care for them. Studies have indicated that propranolol, a beta-blocker, reduces consolidation of emotional memory. When administered immediately after a psychic trauma, it is efficacious as a prophylactic for PTSD. Use of such memory-altering drugs raises important ethical concerns, including some futuristic dystopias put forth by the President's (...)
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  • Propranolol and the prevention of post-traumatic stress disorder: Is it wrong to erase the “sting” of bad memories?Michael Henry, Jennifer R. Fishman & Stuart J. Youngner - 2007 - American Journal of Bioethics 7 (9):12 – 20.
    The National Institute of Mental Health (Bethesda, MD) reports that approximately 5.2 million Americans experience post-traumatic stress disorder (PTSD) each year. PTSD can be severely debilitating and diminish quality of life for patients and those who care for them. Studies have indicated that propranolol, a beta-blocker, reduces consolidation of emotional memory. When administered immediately after a psychic trauma, it is efficacious as a prophylactic for PTSD. Use of such memory-altering drugs raises important ethical concerns, including some futuristic dystopias put forth (...)
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  • Neuroethics.Walter Glannon - 2005 - Bioethics 20 (1):37–52.
    Neuroimaging, psychosurgery, deep-brain stimulation, and psychopharmacology hold considerable promise for more accurate prediction and diagnosis and more effective treatment of neurological and psychiatric disorders. Some forms of psychopharmacology may even be able to enhance normal cognitive and affective capacities. But the brain remains the most complex and least understood of all the organs in the human body. Mapping the neural correlates of the mind through brain scans, and altering these correlates through surgery, stimulation, or pharmacological interventions can affect us in (...)
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  • The Ethics of Human Enhancement.Alberto Giubilini & Sagar Sanyal - 2015 - Philosophy Compass 10 (4):233-243.
    Ethical debate surrounding human enhancement, especially by biotechnological means, has burgeoned since the turn of the century. Issues discussed include whether specific types of enhancement are permissible or even obligatory, whether they are likely to produce a net good for individuals and for society, and whether there is something intrinsically wrong in playing God with human nature. We characterize the main camps on the issue, identifying three main positions: permissive, restrictive and conservative positions. We present the major sub-debates and lines (...)
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  • Neuroethics and neuroimaging: Moving toward transparency.Joseph J. Fins - 2008 - American Journal of Bioethics 8 (9):46 – 52.
    Without exaggeration, it could be said that we are entering a golden age of neuroscience. Informed by recent developments in neuroimaging that allow us to peer into the working brain at both a structural and functional level, neuroscientists are beginning to untangle mechanisms of recovery after brain injury and grapple with age-old questions about brain and mind and their correlates neural mechanisms and consciousness. Neuroimaging, coupled with new diagnostic categories and assessment scales are helping us develop a new diagnostic nosology (...)
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  • “Humanities are the Hormones:” Osler, Penfield and “Neuroethics” Revisited.Joseph J. Fins - 2008 - American Journal of Bioethics 8 (1):5-8.
    If ever I summon before me my highest ideals of men and medicine, I find them sprung from the spirit of Osler. —Wilder Penfield, M.D. Neuroethics is a recently coined term that is shaping our cultu...
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  • A leg to stand on: Sir William Osler and Wilder penfield's "neuroethics".Joseph J. Fins - 2008 - American Journal of Bioethics 8 (1):37 – 46.
    If ever I summon before me my highest ideals of men and medicine, I find them sprung from the spirit of Osler. —Wilder Penfield, M.D. Neuroethics is a recently coined term that is shaping our cultu...
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  • Memory enhancing drugs and Alzheimer’s Disease: Enhancing the self or preventing the loss of it? [REVIEW]Wim Dekkers & Marcel Olde Rikkert - 2007 - Medicine, Health Care and Philosophy 10 (2):141-151.
    In this paper we analyse some ethical and philosophical questions related to the development of memory enhancing drugs (MEDs) and anti-dementia drugs. The world of memory enhancement is coloured by utopian thinking and by the desire for quicker, sharper, and more reliable memories. Dementia is characterized by decline, fragility, vulnerability, a loss of the most important cognitive functions and even a loss of self. While MEDs are being developed for self-improvement, in Alzheimer’s Disease (AD) the self is being lost. Despite (...)
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  • Responsible Reporting: Neuroimaging News in the Age of Responsible Research and Innovation.Irja Marije de Jong, Frank Kupper, Marlous Arentshorst & Jacqueline Broerse - 2016 - Science and Engineering Ethics 22 (4):1107-1130.
    Besides offering opportunities in both clinical and non-clinical domains, the application of novel neuroimaging technologies raises pressing dilemmas. ‘Responsible Research and Innovation’ (RRI) aims to stimulate research and innovation activities that take ethical and social considerations into account from the outset. We previously identified that Dutch neuroscientists interpret “responsible innovation” as educating the public on neuroimaging technologies via the popular press. Their aim is to mitigate (neuro)hype, an aim shared with the wider emerging RRI community. Here, we present results of (...)
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  • Mózg z moralnego punktu widzenia. Postulat neurobiologicznej „rekalibracji etyki”.Barbara Chyrowicz - 2020 - Diametros 17 (63):1-33.
    Z propozycją rekalibracji etyki i zastąpienia jej neuroetyką wystąpiła Patricia S. Churchland. Churchland twierdzi, że im bardziej rozumiemy szczegóły funkcjonowania naszego systemu nerwowego, tym bardziej jesteśmy przekonani co do tego, że przyjmowane przez nas standardy moralnego działania są uwarunkowane neurobiologicznie. Od roku 2002 termin „neuroetyka” funkcjonuje jako nazwa nowej subdyscypliny etyki. Wymienia się w niej dwa zasadnicze działy: etykę neuronauki i neuronaukę etyki. Pierwszy dotyczy zasadniczo moralnych problemów związanych z zastosowaniem osiągnięć neuronauk, przedmiotem drugiego: neuronauki etyki, jest wpływ, jaki wiedza (...)
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  • Human Enhancement and Communication: On Meaning and Shared Understanding.Laura Cabrera & John Weckert - 2013 - Science and Engineering Ethics 19 (3):1039-1056.
    Our technologies have enabled us to change both the world and our perceptions of the world, as well as to change ourselves and to find new ways to fulfil the human desire for improvement and for having new capacities. The debate around using technology for human enhancement has already raised many ethical concerns, however little research has been done in how human enhancement can affect human communication. The purpose of this paper is to explore whether some human enhancements could change (...)
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  • Empirical Support for the Moral Salience of the Therapy-Enhancement Distinction in the Debate Over Cognitive, Affective and Social Enhancement.Laura Y. Cabrera, Nicholas S. Fitz & Peter B. Reiner - 2014 - Neuroethics 8 (3):243-256.
    The ambiguity regarding whether a given intervention is perceived as enhancement or as therapy might contribute to the angst that the public expresses with respect to endorsement of enhancement. We set out to develop empirical data that explored this. We used Amazon Mechanical Turk to recruit participants from Canada and the United States. Each individual was randomly assigned to read one vignette describing the use of a pill to enhance one of 12 cognitive, affective or social domains. The vignettes described (...)
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  • Asia - Pacific Perspectives on Ethics of Science and Technology.Darryl R. J. Macer (ed.) - 2008 - UNESCO Bangkok.
    This collection of papers were originally presented during conferences on ethics in science and technology that UNESCO’s Regional Unit for Social and Human Sciences (RUSHSAP) has been convening since 2005. Since intercultural communication and information-sharing are essential components of these deliberations, the books also provide theme-related discourse from the conferences.
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  • The philosophy of neuroscience.John Bickle, Pete Mandik & Anthony Landreth - 2006 - Stanford Encyclopedia of Philosophy.
    Over the past three decades, philosophy of science has grown increasingly “local.” Concerns have switched from general features of scientific practice to concepts, issues, and puzzles specific to particular disciplines. Philosophy of neuroscience is a natural result. This emerging area was also spurred by remarkable recent growth in the neurosciences. Cognitive and computational neuroscience continues to encroach upon issues traditionally addressed within the humanities, including the nature of consciousness, action, knowledge, and normativity. Empirical discoveries about brain structure and function suggest (...)
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  • Cognitive-Enhancing Drugs, Behavioral Training and the Mechanism of Cognitive Enhancement.Emma Peng Chien - 2013 - In Elisabeth Hildt & Andreas G. Franke (eds.), Cognitive Enhancement: An Interdisciplinary Perspective. New York, NY: Springer. pp. 139-144.
    In this chapter, I propose the mechanism of cognitive enhancement based on studies of cognitive-enhancing drugs and behavioral training. I argue that there are mechanistic differences between cognitive-enhancing drugs and behavioral training due to their different enhancing effects. I also suggest possible mechanisms for cognitive-enhancing drugs and behavioral training and for the synergistic effects of their simultaneous application.
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  • Bioethics, Public Health and the Treatment-Enhancement Distinction.Miguel Hugo Kottow - 2018 - Revista Iberoamericana de Bioética 7:1-13.
    Enormous resources are being invested in genetics, neuroscience and nanotechnology in search vital processes that might provide effective treatment for genetic and severe degenerative disorders, but these goals are still distant. Institutional and military resources are being poured into biotechnological developments for behavioral intervention and cognitive and moral enhancement for persons with difficulties as well as for healthy individuals. Enhancement will increase health and empowerment inequities to the detriment of the disadvantaged. Marked inequality in Latin America calls for an urgent (...)
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