Results for 'Brain Organoids'

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  1. When Is a Brain Organoid a Sentience Candidate?Jonathan Birch - forthcoming - Molecular Psychology.
    It would be unwise to dismiss the possibility of human brain organoids developing sentience. However, scepticism about this idea is appropriate when considering current organoids. It is a point of consensus that a brain-dead human is not sentient, and current organoids lack a functioning brainstem. There are nonetheless troubling early warning signs, suggesting organoid research may create forms of sentience in the near future. To err on the side of caution, researchers with very different views (...)
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  2.  49
    Organoid Sentience.Shourya Verma - manuscript
    Recent advances in stem cell-derived human brain organoids and microelectrode array (MEA) tech- nology raise profound questions about the potential for these systems to give rise to sentience. Brain organoids are 3D tissue constructs that recapitulate key aspects of brain development and function, while MEAs enable bidirectional communication with neuronal cultures. As brain organoids become more sophisticated and integrated with MEAs, the question arises: Could such a system support not only intelligent computation, but (...)
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  3. Neuroethics and Animals: Report and Recommendations From the University of Pennsylvania Animal Research Neuroethics Workshop.Adam Shriver & Tyler M. John - 2021 - ILAR Journal (00):1-10.
    Growing awareness of the ethical implications of neuroscience in the early years of the 21st century led to the emergence of the new academic field of “neuroethics,” which studies the ethical implications of developments in the neurosciences. However, despite the acceleration and evolution of neuroscience research on nonhuman animals, the unique ethical issues connected with neuroscience research involving nonhuman animals remain underdiscussed. This is a significant oversight given the central place of animal models in neuroscience. To respond to these concerns, (...)
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  4. Organoid Biobanking, Autonomy and the Limits of Consent.Jonathan Lewis & Søren Holm - 2022 - Bioethics 36 (7):742-756.
    In the debates regarding the ethics of human organoid biobanking, the locus of donor autonomy has been identified in processes of consent. The problem is that, by focusing on consent, biobanking processes preclude adequate engagement with donor autonomy because they are unable to adequately recognise or respond to factors that determine authentic choice. This is particularly problematic in biobanking contexts associated with organoid research or the clinical application of organoids because, given the probability of unforeseen and varying purposes for (...)
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  5. Neural Organoids and the Precautionary Principle.Jonathan Birch & Heather Browning - 2021 - American Journal of Bioethics 21 (1):56-58.
    Human neural organoid research is advancing rapidly. As Greely notes in the target article, this progress presents an “onrushing ethical dilemma.” We can’t rule out the possibility that suff...
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  6. 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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  7. 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 (...)
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  8. 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 (...)
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  9. 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 (...)
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  10. 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 (...)
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  11. 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 (...)
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  12. 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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  13. 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 (...)
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  14. 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 (...)
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  15. The Brain's Mind. The Mind's Brain.Ronny Verlet - manuscript
    The biological brain creates a mind, and the mental mind creates a brain. Learn how the brain creates consciousness and how it generates momentaneous time moments. Discover how at each moment in Time, our body runs the whole program of Evolution. Neuroscience and Philosophy.
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  16. Cultured brains and the production of subjectivity: The politics of affect(s) as an unfinished project.Charles T. Wolfe - 2014 - In W. Neidich (ed.), The Psychopathologies of Cognitive Capitalism II. ArchiveBooks. pp. 245-267.
    A reflection on overcoming Natur vs Geisteswissenschaften oppositions in thinking about the 'cultured brain' and plasticity.
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  17. The story of a brain.Arnold Zuboff - 1981 - In Douglas R. Hofstadter & Daniel Clement Dennett (eds.), The Mind's I: Fantasies and Reflections on Self and Soul. Basic Books. pp. 202-212.
    Most people will agree that if my brain were made to have within it precisely the same pattern of activity that is in it now but through artificial means, as in its being fed all its stimulation through electrodes as it sits in a vat, an experience would result for me that would be subjectively indistinguishable from that I am now having. In ‘The Story of a Brain’ I ask whether the same subjective experience would be maintained in (...)
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  18. Traumatic Brain Injury with Personality Change: a Challenge to Mental Capacity Law in England and Wales.Demian Whiting - 2020 - Psychological Injury and Law 13 (1):11-18.
    It is well documented that people with moderate-to-severe traumatic brain injury (TBI) can undergo personality changes, including becoming more impulsive in terms of how they behave. Legal guidance and academic commentary support the view that impulsiveness can render someone decisionally incompetent as defined by English and Welsh law. However, impulsiveness is a trait found within the healthy population. Arguably, impulsiveness is also a trait that gives rise to behaviours that should normally be tolerated even when they cause harm to (...)
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  19. (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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  20. THE INFLUENCE OF IMPLEMENTATION BRAIN-FRIENDLY LEARNING THROUGH THE WHOLE BRAIN TEACHING TO STUDENTS’ RESPONSE AND CREATIVE CHARACTER IN LEARNING MATHEMATICS.Widodo Winarso & Siti Asri Karimah - 2017 - Jurnal Pendidikan Dan Pengajaran 50 (1):10-19.
    his study aims to determine whether the application of brain-friendly learning through whole brain teaching gives a positive effect on the creative character of students, to know the response of the students against the application of brain-friendly learning through whole brain teaching, and to find out if the student response against the application of brain-friendly learning through whole brain teaching correlates positively with the creative character of students in learning mathematics. The research method used (...)
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  21. The Influence Of Implementation Brain-Friendly Learning Through The Whole Brain Teaching To Students’ Response and Creative Character In Learning Mathematics.Widodo Winarso & Siti Asri Karimah - 2017
    The purpose of this study was to determine whether the application of learning brain-friendly through the whole brain teaching a positive effect on the character of creative students, to study the response of the students, and to determine whether the students' response to the application of learning brain-friendly through the whole brain teaching positively correlated with the character of creative students in mathematics. The research method used is quantitative. The instruments used are student questionnaire responses related (...)
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  22. The mind-brain problem in cognitive neuroscience (only content).Gabriel Vacariu & Vacariu - 2013
    (June 2013) “The mind-body problem in cognitive neuroscience”, Philosophia Scientiae 17/2, Gabriel Vacariu and Mihai Vacariu (eds.): 1. William Bechtel (Philosophy, Center for Chronobiology, and Interdisciplinary Program in Cognitive Science University of California, San Diego) “The endogenously active brain: the need for an alternative cognitive architecture” 2. Rolls T. Edmund (Oxford Centre for Computational Neuroscience, Oxford, UK) “On the relation between the mind and the brain: a neuroscience perspective” 3. Cees van Leeuwen (University of Leuven, Belgium; Riken (...) Science Institute, Japan) “Brain and mind” 4. Kari Theurer (Trinity College) and John Bickle (Philosophy, Mississippi State University) “What’s old is new again: Kemeny-Oppenheim reduction at work in current molecular neuroscience” 5. Bernard Andrieu (Staps Université de Lorraine) “Sentir son cerveau? Les dispositifs neuro-expérientiels en 1er personne” 6. Corey Maley and Gualtiero Piccinini (Philosophy, University of Missouri – St. Louis) “Get the latest upgrade: Functionalism 6.3.1” 7. Paula Droege (Philosophy, Pennsylvania State University) “Memory and consciousness” 8. Gabriel Vacariu and Mihai Vacariu (Philosophy, University of Bucharest) “Troubles with cognitive neuroscience”. (shrink)
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  23. Types of Boltzmann Brains.Alexey Turchin & Roman Yampolskiy - manuscript
    Abstract. Boltzmann brains (BBs) are minds which randomly appear as a result of thermodynamic or quantum fluctuations. In this article, the question of if we are BBs, and the observational consequences if so, is explored. To address this problem, a typology of BBs is created, and the evidence is compared with the Simulation Argument. Based on this comparison, we conclude that while the existence of a “normal” BB is either unlikely or irrelevant, BBs with some ordering may have observable consequences. (...)
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  24. Some ethics of deep brain stimulation.Joshua August Skorburg & Walter Sinnott Armstrong - 2020 - In Dan Stein & Ilina Singh (eds.), Global Mental Health and Neuroethics. Elsevier. pp. 117-132.
    Case reports about patients undergoing Deep Brain Stimulation (DBS) for various motor and psychiatric disorders - including Parkinson’s Disease, Obsessive Compulsive Disorder, and Treatment Resistant Depression - have sparked a vast literature in neuroethics. Questions about whether and how DBS changes the self have been at the fore. The present chapter brings these neuroethical debates into conversation with recent research in moral psychology. We begin in Section 1 by reviewing the recent clinical literature on DBS. In Section 2, we (...)
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  25. 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 (...)
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  26. 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 (...)
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  27. 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 (...)
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  28. 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 (...)
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  29. 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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  30. On Adjoint and Brain Functors.David Ellerman - 2016 - Axiomathes 26 (1):41-61.
    There is some consensus among orthodox category theorists that the concept of adjoint functors is the most important concept contributed to mathematics by category theory. We give a heterodox treatment of adjoints using heteromorphisms that parses an adjunction into two separate parts. Then these separate parts can be recombined in a new way to define a cognate concept, the brain functor, to abstractly model the functions of perception and action of a brain. The treatment uses relatively simple category (...)
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  31. Informational Mode of the Brain Operation and Consciousness as an Informational Related System.Florin Gaiseanu - 2019 - Archives in Biomedical Engineering and Biotechnology 1 (5):1-7.
    Introduction: the objective of the investigation is to analyse the informational operating-mode of the brain and to extract conclusions on the structure of the informational system of the human body and consciousness. Analysis: the mechanisms and processes of the transmission of information in the body both by electrical and non-electrical ways are analysed in order to unify the informational concepts and to identify the specific essential requirements supporting the life. It is shown that the electrical transmission can be described (...)
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  32. Dimensions of the Threat to the Self Posed by Deep Brain Stimulation: Personal Identity, Authenticity, and Autonomy.Przemysław Zawadzki - 2020 - Diametros 18 (69):71-98.
    Deep Brain Stimulation (DBS) is an invasive therapeutic method involving the implantation of electrodes and the electrical stimulation of specific areas of the brain to modulate their activity. DBS brings therapeutic benefits, but can also have adverse side effects. Recently, neuroethicists have recognized that DBS poses a threat to the very fabric of human existence, namely, to the selves of patients. This article provides a review of the neuroethical literature examining this issue, and identifies the crucial dimensions related (...)
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  33. Can we read minds by imaging brains?Charles Rathkopf - 2022 - Philosophical Psychology 10:1-25.
    Will brain imaging technology soon enable neuroscientists to read minds? We cannot answer this question without some understanding of the state of the art in neuroimaging. But neither can we answer this question without some understanding of the concept invoked by the term "mind reading." This article is an attempt to develop such understanding. Our analysis proceeds in two stages. In the first stage, we provide a categorical explication of mind reading. The categorical explication articulates empirical conditions that must (...)
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  34. Pattern theory of self and situating moral aspects: the need to include authenticity, autonomy and responsibility in understanding the effects of deep brain stimulation.Przemysław Zawadzki - 2022 - Phenomenology and the Cognitive Sciences 21 (3):559-582.
    The aims of this paper are to: (1) identify the best framework for comprehending multidimensional impact of deep brain stimulation on the self; (2) identify weaknesses of this framework; (3) propose refinements to it; (4) in pursuing (3), show why and how this framework should be extended with additional moral aspects and demonstrate their interrelations; (5) define how moral aspects relate to the framework; (6) show the potential consequences of including moral aspects on evaluating DBS’s impact on patients’ selves. (...)
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  35. 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 (...)
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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 (...)
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  37. 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 (...)
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  38. Brain Function on the Basis of Biological Equilibrium - The Triggering Brain (2nd edition).Juergen Stueber - 2023 - Journal of Neurophilosophy 2023 (2(2)):432-452.
    A model of brain function is presented that is consistently based on the biological principle of equilibrium. The neuronal modules of the cerebral cortex are proposed as units in which equilibrium between incoming signals and the synaptic structure is determined or established. Because of the electromagnetic activity of the brain, the electromagnetic properties of thecells are brought into focus. Due to the synaptic changes of the modules -essentially during sleep -an electromagnetic resting balance between the modules is established. (...)
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  39. 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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  40. 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 (...)
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  41. 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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  42. Memory, environment, and the brain.César Schirmer Dos Santos - 2013 - Filosofia Unisinos 14 (3):204-214.
    In recent decades, investigation of brain injuries associated with amnesia allowed progress in the philosophy and science of memory, but it also paved the way for the hubris of assuming that memory is an exclusively neural phenomenon. Nonetheless, there are methodological and conceptual reasons preventing a reduction of the ecological and contextual phenomenon of memory to a neural phenomenon, since memory is the observed action of an individual before being the simple output of a brain (or, at least, (...)
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  43. Spongy Brains and Material Memories.John Sutton - 2007 - In Mary Floyd-Wilson & Garrett Sullivan (eds.), Embodiment and Environment in Early Modern England. Palgrave.
    Embodied human minds operate in and spread across a vast and uneven world of things—artifacts, technologies, and institutions which they have collectively constructed and maintained through cultural and individual history. This chapter seeks to add a historical dimension to the enthusiastically future-oriented study of “natural-born cyborgs” in the philosophy of cognitive science,3 and a cognitive dimension to recent work on material memories and symbol systems in early modern England, bringing humoral psychophysiology together with material culture studies. The aim is to (...)
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  44. Against the Precautionary Approach to Moral Status: The Case of Surrogates for Living Human Brains.Tomasz Żuradzki - 2021 - American Journal of Bioethics 21 (1):53-56.
    My paper builds on the conceptual tools from three interrelated philosophical debates that—as I believe—may help structure important if chaotic discussions about surrogates for living human brains and resolve some practical issues related to regulatory matters. In particular, I refer to the discussions about the “moral precautionary principle” in research ethics (Koplin and Wilkinson 2019); about normative uncertainty in ethics (MacAskill, Bykvist, and Ord 2020), and about the inductive risk problem for animal welfare scientists (Birch 2018). I elucidate upon the (...)
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  45. 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. (...)
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  46. Brains, ectobrains, and the construction of a subgenre. [REVIEW]Michel-Antoine Xhignesse - 2022 - Metascience 32 (1):87-90.
    Review of Fernando Vidal's _Performing brains on screen_ (Amsterdam 2022).
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  47. Materialism and ‘the soft substance of the brain’: Diderot and plasticity.Charles T. Wolfe - 2017 - British Journal for the History of Philosophy 25 (5):963-982.
    ABSTRACTMaterialism is the view that everything that is real is material or is the product of material processes. It tends to take either a ‘cosmological’ form, as a claim about the ultimate nature of the world, or a more specific ‘psychological’ form, detailing how mental processes are brain processes. I focus on the second, psychological or cerebral form of materialism. In the mid-to-late eighteenth century, the French materialist philosopher Denis Diderot was one of the first to notice that any (...)
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  48. 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 (...)
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  49. 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 (...)
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  50. 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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