Results for 'Neuroscience'

287+ found
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  1.  73
    Mentoring for Neuroscience and Society Careers: Lessons Learned from the Dana Foundation Career Network in Neuroscience & Society.Dana Foundation Career Network in Neuroscience & Society, Craig W. McFarland, Makenna E. Law, Ivan E. Ramirez, Emily Rodriguez, Ithika S. Senthilnathan, Adam P. Steiner, Kelisha M. Williams & Francis X. Shen - 2025 - American Journal of Bioethics Neuroscience 16 (3):203-208.
    With the growth of neuroscience research, new neuroscience and society (NeuroX) fields like neuroethics, neurolaw, neuroarchitecture, neuroeconomics, and many more have emerged. In this article we report on lessons learned about mentoring students in the interdisciplinary space of neuroscience and society. We draw on our experiences with the recently launched Dana Foundation Career Network in Neuroscience & Society. This resource supports educators and practitioners mentoring students aiming to apply neuroscience in diverse fields beyond medicine and (...)
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  2. All Animals Are Not Equal: The Interface Between Scientific Knowledge and Legislation for Animal Rights.Lesley J. Rogers, Gisela Kaplan, Both Professors Of Neuroscience & Australia - 2004 - In Cass R. Sunstein & Martha Craven Nussbaum, Animal rights: current debates and new directions. New York: Oxford University Press.
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  3. 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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  4.  85
    Ethical Issues in Intraoperative Neuroscience Research: Assessing Subjects’ Recall of Informed Consent and Motivations for Participation.Anna Wexler, Rebekah J. Choi, Ashwin G. Ramayya, Nikhil Sharma, Brendan J. McShane, Love Y. Buch, Melanie P. Donley-Fletcher, Joshua I. Gold, Gordon H. Baltuch, Sara Goering & Eran Klein - 2022 - AJOB Empirical Bioethics 13 (1):57-66.
    BackgroundAn increasing number of studies utilize intracranial electrophysiology in human subjects to advance basic neuroscience knowledge. However, the use of neurosurgical patients as human research subjects raises important ethical considerations, particularly regarding informed consent and undue influence, as well as subjects’ motivations for participation. Yet a thorough empirical examination of these issues in a participant population has been lacking. The present study therefore aimed to empirically investigate ethical concerns regarding informed consent and voluntariness in Parkinson’s disease patients undergoing deep (...)
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  5.  63
    Neuroscience and philosophy.Felipe de Brigard & Walter Sinnott-Armstrong (eds.) - 2022 - Cambridge, Massachusetts: The MIT Press.
    State-of-the-art collection on how neuroscience and philosophy can mutually illuminate each other on core psychological concepts. An interdisciplinary collection in the best sense.
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  6. How can neuroscience contribute to moral philosophy, psychology and education based on Aristotelian virtue ethics?Hyemin Han - 2016 - International Journal of Ethics Education 1 (2):201-217.
    The present essay discusses the relationship between moral philosophy, psychology and education based on virtue ethics, contemporary neuroscience, and how neuroscientific methods can contribute to studies of moral virtue and character. First, the present essay considers whether the mechanism of moral motivation and developmental model of virtue and character are well supported by neuroscientific evidence. Particularly, it examines whether the evidence provided by neuroscientific studies can support the core argument of virtue ethics, that is, motivational externalism. Second, it discusses (...)
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  7. The dynamical renaissance in neuroscience.Luis H. Favela - 2020 - Synthese 1 (1):1-25.
    Although there is a substantial philosophical literature on dynamical systems theory in the cognitive sciences, the same is not the case for neuroscience. This paper attempts to motivate increased discussion via a set of overlapping issues. The first aim is primarily historical and is to demonstrate that dynamical systems theory is currently experiencing a renaissance in neuroscience. Although dynamical concepts and methods are becoming increasingly popular in contemporary neuroscience, the general approach should not be viewed as something (...)
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  8. Criminal Responsibility and Neuroscience: No Revolution Yet.Ariane Bigenwald & Valerian Chambon - 2019 - Frontiers in Psychology 10.
    Since the 90’s, neurolaw is on the rise. At the heart of heated debates lies the recurrent theme of a neuro-revolution of criminal responsibility. However, caution should be observed: the alleged foundations of criminal responsibility (amongst which free will) are often inaccurate and the relative imperviousness of its real foundations to scientific facts often underestimated. Neuroscientific findings may impact on social institutions, but only insofar as they also engage in a political justification of the changes being called for, convince populations, (...)
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  9. Can neuroscience explain consciousness?Jakob Hohwy & Christopher D. Frith - 2004 - Journal of Consciousness Studies 11 (7-8):180-198.
    Cognitive neuroscience aspires to explain how the brain produces conscious states. Many people think this aspiration is threatened by the subjective nature of introspective reports, as well as by certain philosophical arguments. We propose that good neuroscientific explanations of conscious states can consolidate an interpretation of introspective reports, in spite of their subjective nature. This is because the relative quality of explanations can be evaluated on independent, methodological grounds. To illustrate, we review studies that suggest that aspects of the (...)
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  10. Abductive reasoning in cognitive neuroscience: weak and strong reverse inference.Fabrizio Calzavarini & Gustavo Cevolani - 2022 - Synthese 200 (2):1-26.
    Reverse inference is a crucial inferential strategy used in cognitive neuroscience to derive conclusions about the engagement of cognitive processes from patterns of brain activation. While widely employed in experimental studies, it is now viewed with increasing scepticism within the neuroscience community. One problem with reverse inference is that it is logically invalid, being an instance of abduction in Peirce’s sense. In this paper, we offer the first systematic analysis of reverse inference as a form of abductive reasoning (...)
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  11. Critical Neuroscience and Socially Extended Minds.Jan Slaby & Shaun Gallagher - 2015 - Theory, Culture and Society 32 (1):33-59.
    The concept of a socially extended mind suggests that our cognitive processes are extended not simply by the various tools and technologies we use, but by other minds in our intersubjective interactions and, more systematically, by institutions that, like tools and technologies, enable and sometimes constitute our cognitive processes. In this article we explore the potential of this concept to facilitate the development of a critical neuroscience. We explicate the concept of cognitive institution and suggest that science itself is (...)
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  12.  70
    Psychoanalysis and Neuroscience: The Bridge Between Mind and Brain.Filippo Cieri & Roberto Esposito - 2019 - Frontiers in Psychology 10.
    In 1895 in the Project for a Scientific Psychology Freud tried to integrate psychology and neurology in order to develop a neuroscientific psychology. Since 1880 Freud made no distinction between psychology and physiology. His papers from the end of the 1880s to1890 were very clear on this scientific overlap: as with many of its contemporaries, Freud thought about psychology essentially as the physiology of the brain. Years later he had to surrender, realizing a technological delay, not capable to pursue its (...)
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  13. The unity of neuroscience: a flat view.Arnon Levy - 2016 - Synthese 193 (12):3843-3863.
    This paper offers a novel view of unity in neuroscience. I set out by discussing problems with the classical account of unity-by-reduction, due to Oppenheim and Putnam. That view relies on a strong notion of levels, which has substantial problems. A more recent alternative, the mechanistic “mosaic” view due to Craver, does not have such problems. But I argue that the mosaic ideal of unity is too minimal, and we should, if possible, aspire for more. Relying on a number (...)
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  14.  38
    The neuroscience of intelligence.Richard J. Haier - 2017 - New York, NY: Cambridge University Press.
    This unique book clearly explains genetic and neuroimaging research on intelligence and how neuroscience findings may lead to enhancing it.
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  15. Neuroscience and Normativity: How Knowledge of the Brain Offers a Deeper Understanding of Moral and Legal Responsibility.William Hirstein - 2022 - Criminal Law and Philosophy 16 (2):327-351.
    Neuroscience can relate to ethics and normative issues via the brain’s cognitive control network. This network accomplishes several executive processes, such as planning, task-switching, monitoring, and inhibiting. These processes allow us to increase the accuracy of our perceptions and our memory recall. They also allow us to plan much farther into the future, and with much more detail than any of our fellow mammals. These abilities also make us fitting subjects for responsibility claims. Their activity, or lack thereof, is (...)
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  16. Psychiatry as Cognitive Neuroscience: Philosophical Perspectives.Matthew Broome & Lisa Bortolotti (eds.) - 2009 - New York: Oxford University Press.
    Neuroscience has long had an impact on the field of psychiatry, and over the last two decades, with the advent of cognitive neuroscience and functional neuroimaging, that influence has been most pronounced. However, many question whether psychopathology can be understood by relying on neuroscience alone, and highlight some of the perceived limits to the way in which neuroscience informs psychiatry. -/- Psychiatry as Cognitive Neuroscience is a philosophical analysis of the role of neuroscience in (...)
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  17.  86
    Philosophy and Neuroscience: A Ruthlessly Reductive Account.J. Bickle - 2003 - Kluwer Academic Publishers.
    Philosophy and Neuroscience: A Ruthlessly Reductive Account is the first book-length treatment of philosophical issues and implications in current cellular and molecular neuroscience. John Bickle articulates a philosophical justification for investigating "lower level" neuroscientific research and describes a set of experimental details that have recently yielded the reduction of memory consolidation to the molecular mechanisms of long-term potentiation (LTP). These empirical details suggest answers to recent philosophical disputes over the nature and possibility of psycho-neural scientific reduction, including the (...)
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  18. Neuroscience and Philosophy: Brain, Mind, and Language.Maxwell Bennett, Daniel Dennett, Peter Hacker, John Searle & Daniel N. Robinson (eds.) - 2007 - Columbia University Press.
    In _Neuroscience and Philosophy_ three prominent philosophers and a leading neuroscientist clash over the conceptual presuppositions of cognitive neuroscience. The book begins with an excerpt from Maxwell Bennett and Peter Hacker's _Philosophical Foundations of Neuroscience_ (Blackwell, 2003), which questions the conceptual commitments of cognitive neuroscientists. Their position is then criticized by Daniel Dennett and John Searle, two philosophers who have written extensively on the subject, and Bennett and Hacker in turn respond. Their impassioned debate encompasses a wide range of (...)
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  19.  69
    The Neuroscience of Freedom and Creativity: Our Predictive Brain.Joaquin M. Fuster - 2013 - Cambridge: Cambridge University Press.
    Joaquín M. Fuster is an eminent cognitive neuroscientist whose research over the last five decades has made fundamental contributions to our understanding of the neural structures underlying cognition and behaviour. This book provides his view on the eternal question of whether we have free will. Based on his seminal work on the functions of the prefrontal cortex in decision-making, planning, creativity, working memory, and language, Professor Fuster argues that the liberty or freedom to choose between alternatives is a function of (...)
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  20.  91
    Decision-making: from neuroscience to neuroeconomics—an overview.Daniel Serra - 2021 - Theory and Decision 91 (1):1-80.
    By the late 1990s, several converging trends in economics, psychology, and neuroscience had set the stage for the birth of a new scientific field known as “neuroeconomics”. Without the availability of an extensive variety of experimental designs for dealing with individual and social decision-making provided by experimental economics and psychology, many neuroeconomics studies could not have been developed. At the same time, without the significant progress made in neuroscience for grasping and understanding brain functioning, neuroeconomics would have never (...)
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  21. Experimentation in Cognitive Neuroscience and Cognitive Neurobiology.Jacqueline Anne Sullivan - 2014 - In Levy Neil & Clausen Jens, Handbook on Neuroethics. Springer.
    Neuroscience is a laboratory-based science that spans multiple levels of analysis from molecular genetics to behavior. At every level of analysis experiments are designed in order to answer empirical questions about phenomena of interest. Understanding the nature and structure of experimentation in neuroscience is fundamental for assessing the quality of the evidence produced by such experiments and the kinds of claims that are warranted by the data. This article provides a general conceptual framework for thinking about evidence and (...)
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  22. Can Neuroscience Contribute to Practical Ethics? A Critical Review and Discussion of the Methodological and Translational Challenges of the Neuroscience of Ethics.Eric Racine, Veljko Dubljević, Ralf J. Jox, Bernard Baertschi, Julia F. Christensen, Michele Farisco, Fabrice Jotterand, Guy Kahane & Sabine Müller - 2017 - Bioethics 31 (5):328-337.
    Neuroethics is an interdisciplinary field that arose in response to novel ethical challenges posed by advances in neuroscience. Historically, neuroethics has provided an opportunity to synergize different disciplines, notably proposing a two-way dialogue between an ‘ethics of neuroscience’ and a ‘neuroscience of ethics’. However, questions surface as to whether a ‘neuroscience of ethics’ is a useful and unified branch of research and whether it can actually inform or lead to theoretical insights and transferable practical knowledge to (...)
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  23. Neuroscience for Educators: What Are They Seeking, and What Are They Finding?Cayce J. Hook & Martha J. Farah - 2012 - Neuroethics 6 (2):331-341.
    What can neuroscience offer to educators? Much of the debate has focused on whether basic research on the brain can translate into direct applications within the classroom. Accompanying ethical concern has centered on whether neuroeducation has made empty promises to educators. Relatively little investigation has been made into educators’ expectations regarding neuroscience research and how they might find it professionally useful. In order to address this question, we conducted semi-structured interviews with 13 educators who were repeat attendees of (...)
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  24. Computational neuroscience and localized neural function.Daniel C. Burnston - 2016 - Synthese 193 (12):3741-3762.
    In this paper I criticize a view of functional localization in neuroscience, which I call “computational absolutism”. “Absolutism” in general is the view that each part of the brain should be given a single, univocal function ascription. Traditional varieties of absolutism posit that each part of the brain processes a particular type of information and/or performs a specific task. These function attributions are currently beset by physiological evidence which seems to suggest that brain areas are multifunctional—that they process distinct (...)
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  25.  60
    (Ir-)Responsibilization, genetics and neuroscience.Thomas Biebricher - 2011 - European Journal of Social Theory 14 (4):469-488.
    The concept of responsibilization that originally emerged out of the context of the so-called Governmentality Studies is now widely used in various social sciences to describe a governing technology particularly attuned to the challenge of neoliberalism, i.e. how to govern free individuals. However, in seemingly paradoxical simultaneity with the hegemeony of neoliberalism that relies heavily on individual choice, freedom and responsibility, two powerful scientific discourses exist that appear to undermine these assumptions vehemently, namely genetics and neuroscience. Starting from a (...)
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  26.  16
    Philosophy and Neuroscience: Tango or Solo Dancing?Steven Gouveia & Ângela Leite - 2026 - Principia: An International Journal of Epistemology 30 (1):195-215.
    In this paper, I want to briefly introduce how four approaches that relate (or not) philosophical investigation with the neuroscientific research can be considered in order to achieve a methodology that can effectively investigate the phenomenon of the conscious mind and its relationship with the brain. The traditional way of defining philosophical work seems to be clearly opposed to the traditional way of conceiving neuroscientific work. That raises the question that serves as the title of the paper: should we conceive (...)
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  27.  10
    Neuroscience as technoscience: The importance of materiality in simplification.Nedah Nemati - 2026 - Philosophy and the Mind Sciences 7 (1).
    This commentary examines Mazviita Chirimuuta’s The Brain Abstracted through the lens of productive simplification, which balances epistemic, cognitive, and material considerations in experimental practice. I extend her argument by exploring how material and technological constraints – ranging from standardized tools to computational infrastructure – condition which simplification strategies become viable and entrenched. Examples from behavioral and computational neuroscience demonstrate that simplifications are not merely theoretical decisions but are deeply intertwined with labor, cost, and infrastructural realities. This perspective highlights the (...)
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  28.  93
    Relating Neuroscience to Responsibility: Comments on Hirstein, Sifferd, and Fagan’s Responsible Brains.Michael S. Moore - 2022 - Criminal Law and Philosophy 16 (2):283-298.
    The article explores the agreements and disagreements between the author and the authors of Responsible Brains on how neuroscience relates to moral responsibility. The agreements are fundamental: neuroscience is not the harbinger of revolutionary revision of our views of when persons are morally responsible for the harms that they cause. The disagreements are in the details of what is needed for neuroscience to be the helper of the moral sciences.
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  29. Neuroscience and Society: Supporting and Unsettling Public Engagement.Gregory E. Kaebnick - 2024 - Hastings Center Report 54 (1):20-23.
    Advancing neuroscience is one of many topics that pose a challenge often called “the alignment problem”—the challenge, that is, of assuring that science policy is responsive to and in some sense squares with the public's values. This issue of the Hastings Center Report launches a series of scholarly essays and articles on the ethical and social issues raised by this vast body of medical research and bench science. The series, which will run under the banner “Neuroscience and Society,” (...)
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  30.  45
    Individual Development: Developmental Neuroscience.Kristina Musholt & Charlotte Grosse Wiesmann - 2024 - In Nora Heinzelmann, Advances in Neurophilosophy. Bloomsbury Academic . pp. 179-197.
    Developmental neuroscience is generally understood as a field that studies the development of cognitive abilities and their relation to brain mechanisms during childhood by means of employing various methods, often using a combination of observational and experimental behavioural techniques with neuroscientific methods, such as functional and anatomic magnetic resonance imaging (MRI), electroencephalography (EEG) and functional near-infrared spectroscopy (fNIRS). With this approach, developmental neuroscience pursues at least three different goals. A first goal of developmental neuroscience is to understand (...)
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  31. Neuroscience and phenomenology.Vittorio Gallese - 2011 - Phenomenology and Mind 1:28-39.
    This text contributes to a necessary dialogue, and possibly a translation of the different notions employed by neuroscience and phenomenology. This effort is particularly significant for cognitive neuroscientists whose main topic is social cognition and the related notion of intersubjectivity. What I qualify as “embodied simulation” (which exploits, not only but mainly, the intrinsic functional organization of the motor system) is a crucial functional mechanism in social cognition, not confined to the domain of action, but encompassing other aspects of (...)
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  32. Judging Mechanistic Neuroscience: A Preliminary Conceptual-Analytic Framework for Evaluating Scientific Evidence in the Courtroom.Jacqueline Anne Sullivan & Emily Baron - 2018 - Psychology, Crime and Law (00):00-00.
    The use of neuroscientific evidence in criminal trials has been steadily increasing. Despite progress made in recent decades in understanding the mechanisms of psychological and behavioral functioning, neuroscience is still in an early stage of development and its potential for influencing legal decision-making is highly contentious. Scholars disagree about whether or how neuroscientific evidence might impact prescriptions of criminal culpability, particularly in instances in which evidence of an accused’s history of mental illness or brain abnormality is offered to support (...)
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  33.  38
    Neuroscience and the person: scientific perspectives on divine action.Robert J. Russell (ed.) - 2002 - Berkeley (USA): Center for Theology and the Natural Sciences.
    This collection of 21 essays explores the creative interaction among the cognitive neurosciences, philosophy, and theology. It is the result of an international research conference co-sponsored by the Vatican Observatory, Rome, and the Center for Theology and the Natural Sciences, Berkeley.
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  34. Cognitive Neuroscience: The Troubled Marriage of Cognitive Science and Neuroscience.Richard P. Cooper & Tim Shallice - 2010 - Topics in Cognitive Science 2 (3):398-406.
    We discuss the development of cognitive neuroscience in terms of the tension between the greater sophistication in cognitive concepts and methods of the cognitive sciences and the increasing power of more standard biological approaches to understanding brain structure and function. There have been major technological developments in brain imaging and advances in simulation, but there have also been shifts in emphasis, with topics such as thinking, consciousness, and social cognition becoming fashionable within the brain sciences. The discipline has great (...)
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  35. Why Educational Neuroscience Needs Educational and School Psychology to Effectively Translate Neuroscience to Educational Practice.Gabrielle Wilcox, Laura M. Morett, Zachary Hawes & Eleanor J. Dommett - 2021 - Frontiers in Psychology 11:618449.
    The emerging discipline of educational neuroscience stands at a crossroads between those who see great promise in integrating neuroscience and education and those who see the disciplinary divide as insurmountable. However, such tension is at least partly due to the hitherto predominance of philosophy and theory over the establishment of concrete mechanisms and agents of change. If educational neuroscience is to move forward and emerge as a distinct discipline in its own right, the traditional boundaries and methods (...)
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  36.  70
    The Neuroscience of Criminality and Our Sense of Justice.Valerie Hardcastle - 2018 - In Gregg Caruso & Owen Flanagan, Neuroexistentialism: Meaning, Morals, and Purpose in the Age of Neuroscience. New York, US: OUP Usa. pp. 311-332.
    Part IV begins with Valerie Hardcastle’s chapter on the neuroscience of criminality and our sense of justice. Taking the US courts as her stalking horse, Hardcastle analyzes appellate cases from the past five years in which a brain scan was cited as a consideration in the decision. She focuses on how a defendant’s race might be correlated with whether he is able to get a brain scan, whether the scan is admitted into evidence, how the scan is used in (...)
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  37. Conceptual Change in Visual Neuroscience: The Receptive Field Concept.A. Nicolás Venturelli - 2021 - International Studies in the Philosophy of Science 34 (1):41-57.
    I focus on the concept of the receptive field of a sensory neuron, taking it as a prominent case to address conceptual change in the history of neuroscience. I argue for an interpretation of its ro...
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  38. Methodological Issues in the Neuroscience of Moral Judgement.Guy Kahane & Nicholas Shackel - 2010 - Mind and Language 25 (5):561-582.
    Neuroscience and psychology have recently turned their attention to the study of the subpersonal underpinnings of moral judgment. In this article we critically examine an influential strand of research originating in Greene's neuroimaging studies of ‘utilitarian’ and ‘non-utilitarian’ moral judgement. We argue that given that the explananda of this research are specific personal-level states—moral judgments with certain propositional contents—its methodology has to be sensitive to criteria for ascribing states with such contents to subjects. We argue that current research has (...)
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  39. What Can Neuroscience Bring to Education?Michel Ferrari - 2011 - Educational Philosophy and Theory 43 (1):31-36.
    Educational neuroscience promises to incorporate emerging insights from neuroscience into education, and is an exiting renovation of cognitive science in education. But unlike cognitive neuroscience—which aims to explain how the mind is embodied—educational neuroscience necessarily incorporates values that reflect the kind of citizen and the kind of society we aspire to create. Neuroscience can help fulfill the mandate of public education, but only as a tool that is part of a broader conversation about what schools (...)
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  40. Demystifying the Neuroscience of Love.Stephanie Cacioppo & John T. Cacioppo - 2016 - Emotion Review 8 (2):108-109.
    Scholars from different disciplines have investigated the nature of love for centuries. It has been only in the past century that social psychologists have begun to scientifically investigate the complexity of love in comparison with other emotions (Hatfield & Rapson, 2009, for review). We laud Lamy (2016) for his thoughtful intentions to pursue this long-lasting tradition and extend his goal to better understand the definition and neural bases of love by focusing on recent scientific evidence from social psychology and (...). The better is our understanding of love, the greater is our respect for its significant role in mental and physical health. (shrink)
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  41. Phenomenology, Neuroscience and Clinical Practice: Transdisciplinary Experiences.Francesca Brencio (ed.) - 2024 - Cham: Springer Verlag.
    This book offers fundamental insights into three main fields of education and expertise: phenomenology, neuroscience, and clinical practice. The richness and pluralism of the contributions aim to overcome the reductionist and dualistic approach to mental health and shed new light on clinical practice. Designed as both an education tool for mental health professionals, and a theoretical investigation for philosophers on the use of phenomenology in clinical practice, this book highlights the need for a new direction on mental health, and (...)
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  42. The Paradox of Addiction Neuroscience.Peter B. Reiner - 2010 - Neuroethics 4 (2):65-77.
    Neuroscience has substantially advanced the understanding of how changes in brain biochemistry contribute to mechanisms of tolerance and physical dependence via exposure to addictive drugs. Many scientists and mental health advocates scaffold this emerging knowledge by adding the imprimatur of disease, arguing that conceptualizing addiction as a brain disease will reduce stigma amongst the folk. Promoting a brain disease concept is grounded in beneficent and utilitarian thinking: the language makes room for individuals living with addiction to receive the same (...)
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  43. Does neuroscience undermine deontological theory?Richard Dean - 2009 - Neuroethics 3 (1):43-60.
    Joshua Greene has argued that several lines of empirical research, including his own fMRI studies of brain activity during moral decision-making, comprise strong evidence against the legitimacy of deontology as a moral theory. This is because, Greene maintains, the empirical studies establish that “characteristically deontological” moral thinking is driven by prepotent emotional reactions which are not a sound basis for morality in the contemporary world, while “characteristically consequentialist” thinking is a more reliable moral guide because it is characterized by greater (...)
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  44.  36
    Neuroscience and the Person: Scientific Perspectives on Divine Action.Theo C. Meyering (ed.) - 1998 - Berkeley (USA): Notre Dame: University Notre Dame Press.
    This collection of 21 essays explores the creative interaction among the cognitive neurosciences, philosophy, and theology. It is the result of an international research conference co-sponsored by the Vatican Observatory, Rome, and the Center for Theology and the Natural Sciences, Berkeley.
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  45. The Neuroscience of Moral Judgment: Empirical and Philosophical Developments.Joshua May, Clifford I. Workman, Julia Haas & Hyemin Han - 2022 - In Felipe de Brigard & Walter Sinnott-Armstrong, Neuroscience and philosophy. Cambridge, Massachusetts: The MIT Press. pp. 17-47.
    We chart how neuroscience and philosophy have together advanced our understanding of moral judgment with implications for when it goes well or poorly. The field initially focused on brain areas associated with reason versus emotion in the moral evaluations of sacrificial dilemmas. But new threads of research have studied a wider range of moral evaluations and how they relate to models of brain development and learning. By weaving these threads together, we are developing a better understanding of the neurobiology (...)
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  46. The neuroscience of pain, and a neuroethics of pain care.James Giordano - 2009 - Neuroethics 3 (1):89-94.
    Neuroscience, together with a broadened concept of “mind” has instigated pragmatic and ethical concerns about the experience and treatment of pain. If pain medicine is to be authentic, it requires knowledge of the brain-mind, pain, and the relative and appropriate “goodness” of potential interventions that can and/or should be provided. This speaks to the need for an ethics that reflects and is relevant to the contemporary neuroscience of pain, acknowledgment and appreciation of the sentient being in pain, effects (...)
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  47.  9
    Dance Criticism: Neuroscience, Training, and Self-Media.ManFang Lyu & HuiYu Zhang - 2025 - International Theory and Practice in Humanities and Social Sciences 2 (1):235-242.
    This study explores the intersection of professional dance training, neuroscience, and dance criticism within the context of the self-media era. As digital platforms such as YouTube, Instagram, and TikTok democratize dance critique by allowing a broader array of voices to contribute, the role of professional expertise has come into question. Through an examination of the neural mechanisms involved in movement perception, this research reveals that critics with professional dance training possess a heightened kinesthetic awareness, which enables them to offer (...)
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  48. The cognitive neuroscience revolution.Worth Boone & Gualtiero Piccinini - 2016 - Synthese 193 (5):1509-1534.
    We outline a framework of multilevel neurocognitive mechanisms that incorporates representation and computation. We argue that paradigmatic explanations in cognitive neuroscience fit this framework and thus that cognitive neuroscience constitutes a revolutionary break from traditional cognitive science. Whereas traditional cognitive scientific explanations were supposed to be distinct and autonomous from mechanistic explanations, neurocognitive explanations aim to be mechanistic through and through. Neurocognitive explanations aim to integrate computational and representational functions and structures across multiple levels of organization in order (...)
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  49. Philosophy, neuroscience and pre-service teachers’ beliefs in neuromyths: A call for remedial action.Minkang Kim & Derek Sankey - 2018 - Educational Philosophy and Theory 50 (13):1214-1227.
    Hitherto, the contribution of philosophers to Neuroscience and Education has tended to be less than enthusiastic, though there are some notable exceptions. Meanwhile, the pervasive influence of neuromyths on education policy, curriculum design and pedagogy in schools is well documented. Indeed, philosophers have sometimes used the prevalence of neuromyths in education to bolster their opposition to neuroscience in teacher education courses. By contrast, this article views the presence of neuromyths in education as a call for remedial action, including (...)
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  50. Neuroscience, Choice, and the Free Will Debate.Jason Shepard & Shane Reuter - 2012 - American Journal of Bioethics - Neuroscience 3 (3):7-11.
    A number of scientists have recently argued that neuroscience provides strong evidence against the requirements of the folk notion of free will. In one such line of argumentation, it is claimed that choice is required for free will, and neuroscience is showing that people do not make choices. In this article, we argue that this no-choice line of argumentation relies on a specific conception of choice. We then provide evidence that people do not share the conception of choice (...)
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