Results for 'Lila Ghent Braine'

968 found
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  1. Controlled and uncontrolled English for ontology editing.Brian Donohue, Douglas Kutach, Robert Ganger, Ron Rudnicki, Tien Pham, Geeth de Mel, Dave Braines & Barry Smith - 2015 - Semantic Technology for Intelligence, Defense and Security 1523:74-81.
    Ontologies formally represent reality in a way that limits ambiguity and facilitates automated reasoning and data fusion, but is often daunting to the non-technical user. Thus, many researchers have endeavored to hide the formal syntax and semantics of ontologies behind the constructs of Controlled Natural Languages (CNLs), which retain the formal properties of ontologies while simultaneously presenting that information in a comprehensible natural language format. In this paper, we build upon previous work in this field by evaluating prospects of implementing (...)
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  2. Brain electrical traits of logical validity.F. Salto - 2021 - Scientific Reports 11 (7892).
    Neuroscience has studied deductive reasoning over the last 20 years under the assumption that deductive inferences are not only de jure but also de facto distinct from other forms of inference. The objective of this research is to verify if logically valid deductions leave any cerebral electrical trait that is distinct from the trait left by non-valid deductions. 23 subjects with an average age of 20.35 years were registered with MEG and placed into a two conditions paradigm (100 trials for (...)
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  3. Henry of Ghent on Real Relations and the Trinity: The Case for Numerical Sameness Without Identity.Scott M. Williams - 2012 - Recherches de Theologie Et Philosophie Medievales 79 (1):109-148.
    I argue that there is a hitherto unrecognized connection between Henry of Ghent’s general theory of real relations and his Trinitarian theology, namely the notion of numerical sameness without identity. A real relation (relatio) is numerically the same thing (res) as its absolute (non-relative) foundation, without being identical to its foundation. This not only holds for creaturely real relations but also for the divine persons’ distinguishing real relations. A divine person who is constituted by a real relation (relatio) and (...)
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  4. From 'Brain Drain' to 'Care Drain': Women's Labor Migration and Methodological Sexism.Speranta Dumitru - 2014 - Women's Studies International Forum 47:203-212.
    The metaphor of “care drain” has been created as a womanly parallel to the “brain drain” idea. Just as “brain drain” suggests that the skilled migrants are an economic loss for the sending country, “care drain” describes the migrant women hired as care workers as a loss of care for their children left behind. This paper criticizes the construction of migrant women as “care drain” for three reasons: 1) it is built on sexist stereotypes, 2) it misrepresents and devalues care (...)
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  5. 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 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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  6. 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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  7. Predictive brains: forethought and the levels of explanation.Giuseppe Boccignone & Roberto Cordeschi - 2012 - Frontiers in Psychology 3.
    Is any unified theory of brain function possible? Following a line of thought dat- ing back to the early cybernetics (see, e.g., Cordeschi, 2002), Clark (in press) has proposed the action-oriented Hierarchical Predictive Coding (HPC) as the account to be pursued in the effort of gain- ing the “Grand Unified Theory of the Mind”—or “painting the big picture,” as Edelman (2012) put it. Such line of thought is indeed appealing, but to be effectively pursued it should be confronted with experimental (...)
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  8.  50
    Minds, Brains, AI.Jay Seitz - manuscript
    In the last year or so (and going back many decades) there has been extensive claims by major computational scientists, engineers, and others that AGI (artificial general intelligence) is 5 or 10 years away, but without a scintilla of scientific evidence, for a broad body of these claims: Computers will become conscious, have a “theory of mind,” think and reason, will become more intelligent than humans, and so on. But the claims are science fiction, not science. -/- This article reviews (...)
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  9. Why think that the brain is not a computer?Marcin Miłkowski - 2016 - APA Newsletter on Philosophy and Computers 16 (2):22-28.
    In this paper, I review the objections against the claim that brains are computers, or, to be precise, information-processing mechanisms. By showing that practically all the popular objections are either based on uncharitable interpretation of the claim, or simply wrong, I argue that the claim is likely to be true, relevant to contemporary cognitive (neuro)science, and non-trivial.
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  10. Brain drain – A smartphone side-effect.Loan Nguyen - 2023 - Sm3D Science Portal.
    Along with the development of new technologies applied to a smartphone, the frequency that users interact with their phones also increased, leading to more impacts on human behaviors.
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  11. Perinatal Brain Damage Causation.Olaf Dammann - 2007 - Developmental Neuroscience 29:280–8.
    The search for causes of perinatal brain damage needs a solid theoretical foundation. Current theory apparently does not offer a unanimously accepted view of what constitutes a cause, and how it can be identified. We discuss nine potential theoretical misconceptions: (1) too narrow a view of what is a cause (causal production vs. facilitation), (2) extrapolating from possibility to fact (potential vs. factual causation), (3) if X, then invariably Y (determinism vs. probabilism), (4) co-occurrence in individuals vs. association in populations, (...)
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  12. Brain Death as the End of a Human Organism as a Self-moving Whole.Adam Omelianchuk - 2021 - Journal of Medicine and Philosophy 46 (5):530-560.
    The biophilosophic justification for the idea that “brain death” is death needs to support two claims: that what dies in human death is a human organism, not merely a psychological entity distinct from it; that total brain failure signifies the end of the human organism as a whole. Defenders of brain death typically assume without argument that the first claim is true and argue for the second by defending the “integrative unity” rationale. Yet the integrative unity rationale has fallen on (...)
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  13. Brain self-regulation in criminal psychopaths.Lilian Konicar, Ralf Veit, Hedwig Eisenbarth, Beatrix Barth, Paolo Tonin, Ute Strehl & Niels Birbaumer - 2015 - Nature: Scientific Reports 5:1-7.
    Psychopathic individuals are characterized by impaired affective processing, impulsivity, sensation-seeking, poor planning skills and heightened aggressiveness with poor self-regulation. Based on brain self-regulation studies using neurofeedback of Slow Cortical Potentials (SCPs) in disorders associated with a dysregulation of cortical activity thresholds and evidence of deficient cortical functioning in psychopathy, a neurobiological approach seems to be promising in the treatment of psychopathy. The results of our intensive brain regulation intervention demonstrate, that psychopathic offenders are able to gain control of their brain (...)
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  14. Brain functors: A mathematical model for intentional perception and action.David Ellerman - 2016 - Brain: Broad Research in Artificial Intelligence and Neuroscience 7 (1):5-17.
    Category theory has foundational importance because it provides conceptual lenses to characterize what is important and universal in mathematics—with adjunctions being the primary lens. If adjunctions are so important in mathematics, then perhaps they will isolate concepts of some importance in the empirical sciences. But the applications of adjunctions have been hampered by an overly restrictive formulation that avoids heteromorphisms or hets. By reformulating an adjunction using hets, it is split into two parts, a left and a right semiadjunction. Semiadjunctions (...)
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  15. Polluting the Brain.Nikita Parajuli & Arjun Dahal - 2017
    Our brain is solely responsible for every work we perform and execute. Through this article, we have attempted to classify the way through which our brain gets polluted, which ultitmately leads to the declination in the functioning power of our brain.
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  16. Brain Drain, Health, and Global Justice.Alex Sager - 2010 - In Rebecca Shah (ed.), The International Migration of Health Workers: Ethics, Rights and Justice. Palgrave-Macmillan. pp. 103-117.
    This chapter criticizes policies that aim to restrict the emigration or immigration of skilled workers, analyzes the ethics of recruitment, and proposes basing an ethics of skilled migration based on the violation of negative duties not to uphold unjust institutions.
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  17. How Can Brains in Vats Experience a Spatial World? A Puzzle for Internalists.Adam Pautz - 2018 - In Adam Pautz & Daniel Stoljar (eds.), Blockheads! Essays on Ned Block’s Philosophy of Mind and Consciousness. new york: MIT Press.
    In this chapter, Pautz raises a puzzle about spatial experience for phenomenal internalists like Ned Block. If an accidental, lifelong brain-in-the-void (BIV) should have all the same experiences as you, it would have an experience as of items having various shapes, and be able to acquire concepts of those shapes, despite being cut off from real things with the shapes. Internalists cannot explain this by saying that BIV is presented with Peacocke-style visual field regions having various shapes, because these would (...)
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  18. (1 other version)Reconsidering Brain Death: A Lesson from Japan's Fifteen Years of Experience.Masahiro Morioka - 2001 - Hastings Center Report 31 (4):41-46.
    The Japanese Transplantation Law is unique among others in that it allows us to choose between "brain death" and "traditional death" as our death. In every country 20 to 40 % of the popularion doubts the idea of brain death. This paper reconsiders the concept, and reports the ongoing rivision process of the current law. Published in Hastings Center Report, 2001.
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  19. Deep Brain Stimulation, Authenticity and Value.Sven Nyholm & Elizabeth O’Neill - 2017 - Cambridge Quarterly of Healthcare Ethics 26 (4):658-670.
    In this paper, we engage in dialogue with Jonathan Pugh, Hannah Maslen, and Julian Savulescu about how to best interpret the potential impacts of deep brain stimulation on the self. We consider whether ordinary people’s convictions about the true self should be interpreted in essentialist or existentialist ways. Like Pugh et al., we argue that it is useful to understand the notion of the true self as having both essentialist and existentialist components. We also consider two ideas from existentialist philosophy (...)
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  20. Data Mining the Brain to Decode the Mind.Daniel Weiskopf - 2020 - In Fabrizio Calzavarini & Marco Viola (eds.), Neural Mechanisms: New Challenges in the Philosophy of Neuroscience. Springer.
    In recent years, neuroscience has begun to transform itself into a “big data” enterprise with the importation of computational and statistical techniques from machine learning and informatics. In addition to their translational applications such as brain-computer interfaces and early diagnosis of neuropathology, these tools promise to advance new solutions to longstanding theoretical quandaries. Here I critically assess whether these promises will pay off, focusing on the application of multivariate pattern analysis (MVPA) to the problem of reverse inference. I argue that (...)
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  21. Can brain scanning and imaging techniques contribute to a theory of thinking?Robert Henman - 2013 - Dialogues in Philosophy, Mental and Neuro Sciences 6 (2):49-56.
    In this article I analyse current efforts in cognitive neuroscience to explore the organic and cognitive processes involved in problem-solving. This analysis highlights a problem with assuming that cognitive processes can be wholly explained once one has explained organic processes. Reflection on scientific performance suggests how this problem can be evaded. This reflection on performance can also provide a paradigm for future neuroscientific research leading to a more detailed account of how brain locales and activities can be correlated with conscious (...)
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  22. Effects of Deep Brain Stimulation on the lived experience of Obsessive-Compulsive Disorder patients.Sanneke de Haan, Erik Rietveld, Martin Stokhof & Damiaan Denys - 2015 - PLoS ONE 10 (8):1-29.
    Deep Brain Stimulation (DBS) is a relatively new, experimental treatment for patients suffering from treatment-refractory Obsessive Compulsive Disorder (OCD). The effects of treatment are typically assessed with psychopathological scales that measure the amount of symptoms. However, clinical experience indicates that the effects of DBS are not limited to symptoms only: patients for instance report changes in perception, feeling stronger and more confident, and doing things unreflectively. Our aim is to get a better overview of the whole variety of changes that (...)
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  23. Brain Pathology and Moral Responsibility.Anneli Jefferson - 2022 - In Matt King & Joshua May (eds.), Agency in Mental Disorder: Philosophical Dimensions. Oxford University Press.
    Does a diagnosis of brain dysfunction matter for ascriptions of moral responsibility? This chapter argues that, while knowledge of brain pathology can inform judgments of moral responsibility, its evidential value is currently limited for a number of practical and theoretical reasons. These include the problem of establishing causation from correlational data, drawing inferences about individuals from group data, and the reliance of the interpretation of brain findings on well-established psychological findings. Brain disorders sometimes matter for moral responsibility, however, because they (...)
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  24. Augustine, Thomas Aquinas, Henry of Ghent, and John Duns Scotus: On the Theology of the Father's Intellectual Generation of the Word.Scott M. Williams - 2010 - Recherches de Theologie Et Philosophie Medievales 77 (1):35-81.
    There are two general routes that Augustine suggests in De Trinitate, XV, 14-16, 23-25, for a psychological account of the Father's intellectual generation of the Word. Thomas Aquinas and Henry of Ghent, in their own ways, follow the first route; John Duns Scotus follows the second. Aquinas, Henry, and Scotus's psychological accounts entail different theological opinions. For example, Aquinas (but neither Henry nor Scotus) thinks that the Father needs the Word to know the divine essence. If we compare the (...)
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  25. The brain's 'new' science: Psychology, neurophysiology, and constraint.Gary Hatfield - 2000 - Philosophy of Science 67 (3):388-404.
    There is a strong philosophical intuition that direct study of the brain can and will constrain the development of psychological theory. When this intuition is tested against case studies on the neurophysiology and psychology of perception and memory, it turns out that psychology has led the way toward knowledge of neurophysiology. An abstract argument is developed to show that psychology can and must lead the way in neuroscientific study of mental function. The opposing intuition is based on mainly weak arguments (...)
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  26. Why the Brain Knows More than We Do.Birgitta Dresp-Langley - 2011 - Brain Sciences 2:1-21.
    Scientific studies have shown that non-conscious stimuli and représentations influence information processing during conscious experience. In the light of such evidence, questions about potential functional links between non-conscious brain representations and conscious experience arise. This article discusses models capable of explaining how statistical learning mechanisms in dedicated resonant circuits could generate specific temporal activity traces of non-conscious representations in the brain. How reentrant signaling, top-down matching, and statistical coincidence of such activity traces may lead to the progressive consolidation of neural (...)
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  27. Misbehaving Machines: The Emulated Brains of Transhumanist Dreams.Corry Shores - 2011 - Journal of Evolution and Technology 22 (1):10-22.
    Enhancement technologies may someday grant us capacities far beyond what we now consider humanly possible. Nick Bostrom and Anders Sandberg suggest that we might survive the deaths of our physical bodies by living as computer emulations.­­ In 2008, they issued a report, or “roadmap,” from a conference where experts in all relevant fields collaborated to determine the path to “whole brain emulation.” Advancing this technology could also aid philosophical research. Their “roadmap” defends certain philosophical assumptions required for this technology’s success, (...)
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  28. Brains in vats and model theory.Tim Button - 2015 - In Sanford Goldberg (ed.), The Brain in a Vat. United Kingdom: Cambridge University Press. pp. 131-154.
    Hilary Putnam’s BIV argument first occurred to him when ‘thinking about a theorem in modern logic, the “Skolem–Löwenheim Theorem”’ (Putnam 1981: 7). One of my aims in this paper is to explore the connection between the argument and the Theorem. But I also want to draw some further connections. In particular, I think that Putnam’s BIV argument provides us with an impressively versatile template for dealing with sceptical challenges. Indeed, this template allows us to unify some of Putnam’s most enduring (...)
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  29. Deep brain stimulation and revising the Mental Health Act: the case for intervention-specific safeguards.Jonathan Pugh, Tipu Aziz, Jonathan Herring & Julian Savulescu - 2018 - British Journal of Psychiatry 214 (3).
    Under the current Mental Health Act of England and Wales, it is lawful to perform deep brain stimulation in the absence of consent and independent approval. We argue against the Care Quality Commission's preferred strategy of addressing this problematic issue, and offer recommendations for deep brain stimulation-specific provisions in a revised Mental Health Act.
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  30. The Great Brain Suck: And Other American Epiphanies.Eugene Halton - 2008 - Chicago, IL, USA: University of Chicago Press.
    “Witty, acerbic, and brilliant. Halton takes on truly basic philosophical issues, but unlike the great majority of cultural critics today, he is philosophically prepared and highly competent to do so. Halton’s extraordinary work is nearly unique among current writers in its relevance, incisiveness, and philosophical power.” (Bruce Wilshire, Rutgers University) “The Great Brain Suck is a wholly original book that draws on Eugene Halton’s careful empirical and conceptual work to offer critical insights into American life and scholarship. As he details (...)
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  31. Brains in Vats? Don't Bother!Peter Baumann - 2019 - Episteme 16 (2):186-199.
    Contemporary discussions of epistemological skepticism - the view that we do not and cannot know anything about the world around us - focus very much on a certain kind of skeptical argument involving a skeptical scenario (a situation familiar from Descartes’ First Meditation). According to the argument, knowing some ordinary proposition about the world (one we usually take ourselves to know) requires knowing we are not in some such skeptical scenario SK; however, since we cannot know that we are not (...)
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  32. Responsible Brains: Neuroscience, Law, and Human Culpability.William Hirstein, Katrina L. Sifferd & Tyler K. Fagan - 2018 - New York, NY, USA: MIT Press. Edited by Katrina Sifferd & Tyler Fagan.
    [This download includes the table of contents and chapter 1.] -/- When we praise, blame, punish, or reward people for their actions, we are holding them responsible for what they have done. Common sense tells us that what makes human beings responsible has to do with their minds and, in particular, the relationship between their minds and their actions. Yet the empirical connection is not necessarily obvious. The “guilty mind” is a core concept of criminal law, but if a defendant (...)
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  33. The phenomenology of Deep Brain Stimulation-induced changes in Obsessive-Compulsive Disorder patients: An enactive affordance-based model.Sanneke de Haan, Erik Rietveld, Martin Stokhof & Damiaan Denys - 2013 - Frontiers in Human Neuroscience 7:1-14.
    People suffering from Obsessive-Compulsive Disorder (OCD) do things they do not want to do, and/or they think things they do not want to think. In about 10 percent of OCD patients, none of the available treatment options is effective. A small group of these patients is currently being treated with deep brain stimulation (DBS). Deep brain stimulation involves the implantation of electrodes in the brain. These electrodes give a continuous electrical pulse to the brain area in which they are implanted. (...)
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  34. Can Brain Drain Justify Immigration Restrictions?Kieran Oberman - 2012 - Ethics 123 (1):427-455.
    This article considers one seemingly compelling justification for immigration restrictions: that they help restrict the brain drain of skilled workers from poor states. For some poor states, brain drain is a severe problem, sapping their ability to provide basic services. Yet this article finds that justifying immigration restrictions on brain drain grounds is far from straightforward. For restrictions to be justified, a series of demanding conditions must be fulfilled. Brain drain does provide a successful argument for some immigration restrictions, but (...)
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  35. Brain Gender and Transsexualism.Madeline Kilty - 2007 - Australian Journal of Professional and Applied Ethics 9 (1):31-43.
    Research by neuroscientists suggests there is a distinction in the BSTc area of the brain between males and females. In transsexual females, those considered male at birth, but who had a strong conviction that they were female, the BSTc region appears to be similar in size to the female BSTc and transsexuals considered female at birth, but who were certain they were male, had a BSTc similar to the male BSTc. This distinction leads to the conclusion that in addition to (...)
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  36. Mind–brain identity and evidential insulation.Jakob Hohwy - 2011 - Philosophical Studies 153 (3):377-395.
    Is it rational to believe that the mind is identical to the brain? Identity theorists say it is (or looks like it will be, once all the neuroscientific evidence is in), and they base this claim on a general epistemic route to belief in identity. I re-develop this general route and defend it against some objections. Then I discuss how rational belief in mind–brain identity, obtained via this route, can be threatened by an appropriately adjusted version of the anti-physicalist knowledge (...)
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  37. Beyin Gelişimine ve Nörofelsefeye Göre Kötülük Problemi (The Problem of Evil in The Scope of Neurophilosophy and The Development of Brain).Aysel Tan - 2021 - Van, Türkiye: Bilhikem.
    The first serious scientific studies on the brain date back to the 1800s. Two events led the studies on the brain. The first incident is an accident involving Phineas Gage, a railway worker. The two-meter-long piece of iron that entered Gage's left eye and broke up the anterior frontal lobe of the brain prompted scientists to rethink the brain. Having lived a moral life before the accident, Gage became immoral and evil after the accident. This incident revealed that the brain (...)
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  38. Brain, mind and limitations of a scientific theory of human consciousness.Alfred Gierer - 2008 - Bioessays 30 (5):499-505.
    In biological terms, human consciousness appears as a feature associated with the func- tioning of the human brain. The corresponding activities of the neural network occur strictly in accord with physical laws; however, this fact does not necessarily imply that there can be a comprehensive scientific theory of conscious- ness, despite all the progress in neurobiology, neuropsychology and neurocomputation. Pre- dictions of the extent to which such a theory may become possible vary widely in the scien- tific community. There are (...)
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  39. Brain stimulation for treatment and enhancement in children: an ethical analysis.Hannah Maslen, Brian D. Earp, Roi Cohen Kadosh & Julian Savulescu - 2014 - Frontiers in Human Neuroscience 8.
    Davis called for “extreme caution” in the use of non-invasive brain stimulation to treat neurological disorders in children, due to gaps in scientific knowledge. We are sympathetic to his position. However, we must also address the ethical implications of applying this technology to minors. Compensatory trade-offs associated with NIBS present a challenge to its use in children, insofar as these trade-offs have the effect of limiting the child’s future options. The distinction between treatment and enhancement has some normative force here. (...)
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  40. Brain Death Debates: From Bioethics to Philosophy of Science.Alberto Molina-Pérez - 2022 - F1000Research 11:195.
    50 years after its introduction, brain death remains controversial among scholars. The debates focus on one question: is brain death a good criterion for determining death? This question has been answered from various perspectives: medical, metaphysical, ethical, and legal or political. Most authors either defend the criterion as it is, propose some minor or major revisions, or advocate abandoning it and finding better solutions to the problems that brain death was intended to solve when it was introduced. Here I plead (...)
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  41. My brain made me do it: The exclusion argument against free will, and what’s wrong with it.Christian List & Peter Menzies - 2017 - In Helen Beebee, Christopher Hitchcock & Huw Price (eds.), Making a Difference: Essays on the Philosophy of Causation. Oxford: Oxford University Press.
    We offer a critical assessment of the “exclusion argument” against free will, which may be summarized by the slogan: “My brain made me do it, therefore I couldn't have been free”. While the exclusion argument has received much attention in debates about mental causation (“could my mental states ever cause my actions?”), it is seldom discussed in relation to free will. However, the argument informally underlies many neuroscientific discussions of free will, especially the claim that advances in neuroscience seriously challenge (...)
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  42. Brain in the Shell. Assessing the Stakes and the Transformative Potential of the Human Brain Project.Philipp Haueis & Jan Slaby - 2015 - In Philipp Haueis & Jan Slaby (eds.), Neuroscience and Critique. London: pp. 117–140.
    The “Human Brain Project” (HBP) is a large-scale European neuroscience and information communication technology (ICT) project that has been a matter of heated controversy since its inception. With its aim to simulate the entire human brain with the help of supercomputing technologies, the HBP plans to fundamentally change neuroscientific research practice, medical diagnosis, and eventually the use of computers itself. Its controversial nature and its potential impacts render the HBP a subject of crucial importance for critical studies of science and (...)
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  43. Genes, Brains, and Language: Would Someone Please Pull the Brakes?Nathalie Gontier - 2008 - Review of General Psychology 2 (12):170-180.
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  44. Medical Brain Drain: Free-Riding, Exploitation, and Global Justice.Merten Reglitz - 2016 - Moral Philosophy and Politics 3 (1): 67-81.
    In her debate with Michael Blake, Gillian Brock sets out to justify emigration restrictions on medical workers from poor states on the basis of their free-riding on the public investment that their states have made in them in form of a publicly funded education. For this purpose, Brock aims to isolate the question of emigration restrictions from the larger question of responsibilities for remedying global inequalities. I argue that this approach is misguided because it is blind to decisive factors at (...)
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  45. Better brains, better selves? The ethics of neuroenhancements.Richard H. Dees - 2007 - Kennedy Institute of Ethics Journal 17 (4):371-395.
    : The idea of enhancing our mental functions through medical means makes many people uncomfortable. People have a vague feeling that altering our brains tinkers with the core of our personalities and the core of ourselves. It changes who we are, and doing so seems wrong, even if the exact reasons for the unease are difficult to define. Many of the standard arguments against neuroenhancements—that they are unsafe, that they violate the distinction between therapy and enhancements, that they undermine equality, (...)
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  46. Knowledge and the Brain: Why the Knowledge-Centric Theory of Mind Program Needs Neuroscience.Adam Michael Bricker - forthcoming - Behavioral and Brain Sciences.
    The knowledge-centric Theory of Mind research program suggested by Phillips et al. stands to gain significant value by embracing a neurocognitive approach that takes full advantage of techniques like fMRI and EEG. This neurocognitive approach has already begun providing important insights into the mechanisms of knowledge attribution, insights which support the claim that it is more basic than belief attribution.
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  47.  96
    (1 other version)Mind-brain puzzle versus mind-physical world identity.David A. Booth - 1978 - Behavioral and Brain Sciences 1 (3):348-349.
    To maintain my neutral monist or multi-aspect view of human reality (or indeed to defend the Cartesian dualism assumed by Puccetti & Dykes, it is wrong to relate the mind to the brain alone. A person's mind should be related to the physical environment, including the body, in addition to the brain. Furthermore, we are unlikely to understand the detailed functioning of an individual brain without knowing the history of its interactions with the external and internal environments during that person's (...)
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  48. (1 other version)Stimulating good practice - What an embodied cognition approach could mean for Deep Brain Stimulation practice.Sanneke de Haan, Erik Rietveld & Damiaan Denys - 2014 - American Journal of Bioethics Neuroscience 5 (4).
    We whole-heartedly agree with Mecacci and Haselager(2014) on the need to investigate the psychosocial effects of deep brain stimulation (DBS), and particularly to find out how to prevent adverse psychosocial effects. We also agree with the authors on the value of an embodied, embedded, enactive approach (EEC) to the self and the mind–brain problem. However, we do not think this value primarily lies in dissolving a so-called “maladaptation” of patients to their DBS device. In this comment, we challenge three central (...)
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  49. The Brain and its States.Richard Brown - 2012 - In Shimon Edelman, Tomer Fekete & Neta Zach (eds.), Being in Time: Dynamical Models of Phenomenal Experience. Philadelphia: John Benjamins. pp. 211-238.
    In recent times we have seen an explosion in the amount of attention paid to the conscious brain from scientists and philosophers alike. One message that has emerged loud and clear from scientific work is that the brain is a dynamical system whose operations unfold in time. Any theory of consciousness that is going to be physically realistic must take account of the intrinsic nature of neurons and brain activity. At the same time a long discussion on consciousness among philosophers (...)
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  50. Epistemological and phenomenological issues in the use of brain-computer interfaces.Richard Heersmink - 2011 - In C. Ess & R. Hagengruber (eds.), Proceedings of the International Association for Computing and Philosophy 2011 (pp. 98-102). MV-Wissenschaft.
    Brain-computer interfaces (BCIs) are an emerging and converging technology that translates the brain activity of its user into command signals for external devices, ranging from motorized wheelchairs, robotic hands, environmental control systems, and computer applications. In this paper I functionally decompose BCI systems and categorize BCI applications with similar functional properties into three categories, those with (1) motor, (2) virtual, and (3) linguistic applications. I then analyse the relationship between these distinct BCI applications and their users from an epistemological and (...)
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