Results for 'Cognitive neuroscience'

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  1. 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 (...)
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  2. Model-Based Cognitive Neuroscience: Multifield Mechanistic Integration in Practice.Mark Povich - 2019 - Theory & Psychology 5 (29):640–656.
    Autonomist accounts of cognitive science suggest that cognitive model building and theory construction (can or should) proceed independently of findings in neuroscience. Common functionalist justifications of autonomy rely on there being relatively few constraints between neural structure and cognitive function (e.g., Weiskopf, 2011). In contrast, an integrative mechanistic perspective stresses the mutual constraining of structure and function (e.g., Piccinini & Craver, 2011; Povich, 2015). In this paper, I show how model-based cognitive neuroscience (MBCN) epitomizes (...)
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  3. A Cognitive Neuroscience Framework for Understanding Causal Reasoning and the Law.Jonathan A. Fugelsang & Kevin N. Dunbar - 2006 - In Semir Zeki & Oliver Goodenough (eds.), Law and the Brain. Oxford University Press. pp. 157--166.
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  4. Experimentation in Cognitive Neuroscience and Cognitive Neurobiology.Jacqueline Anne Sullivan - 2015 - In Jens Clausen Neil Levy (ed.), 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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  5. Cognitive Neuroscience and Animal Consciousness.Matteo Grasso - 2014 - In Sofia Bonicalzi, Leonardo Caffo & Mattia Sorgon (eds.), Naturalism and Constructivism in Metaethics. Newcastle Upon Tyne, UK: Cambridge Scholars Press. pp. 182-203.
    The problem of animal consciousness has profound implications on our concept of nature and of our place in the natural world. In philosophy of mind and cognitive neuroscience the problem of animal consciousness raises two main questions (Velmans, 2007): the distribution question (“are there conscious animals beside humans?”) and the phenomenological question (“what is it like to be a non-human animal?”). In order to answer these questions, many approaches take into account similarities and dissimilarities in animal and human (...)
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  6. What is the “Cognitive” in Cognitive Neuroscience?Carrie Figdor - 2013 - Neuroethics 6 (1):105-114.
    This paper argues that the cognitive neuroscientific use of ordinary mental terms to report research results and draw implications can contribute to public confusion and misunderstanding regarding neuroscience results. This concern is raised at a time when cognitive neuroscientists are increasingly required by funding agencies to link their research to specific results of public benefit, and when neuroethicists have called for greater attention to public communication of neuroscience. The paper identifies an ethical dimension to the problem (...)
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  7. Similarity-Based Cognition: Radical Enactivism Meets Cognitive Neuroscience.Miguel Segundo-Ortin & Daniel D. Hutto - 2019 - Synthese 198 (Suppl 1):1-19.
    Similarity-based cognition is commonplace. It occurs whenever an agent or system exploits the similarities that hold between two or more items—e.g., events, processes, objects, and so on—in order to perform some cognitive task. This kind of cognition is of special interest to cognitive neuroscientists. This paper explicates how similarity-based cognition can be understood through the lens of radical enactivism and why doing so has advantages over its representationalist rival, which posits the existence of structural representations or S-representations. Specifically, (...)
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  8. Bounded Mirroring. Joint Action and Group Membership in Political Theory and Cognitive Neuroscience.Machiel Keestra - 2012 - In Frank Vandervalk (ed.), Thinking About the Body Politic: Essays on Neuroscience and Political Theory. Routledge. pp. 222--249.
    A crucial socio-political challenge for our age is how to rede!ne or extend group membership in such a way that it adequately responds to phenomena related to globalization like the prevalence of migration, the transformation of family and social networks, and changes in the position of the nation state. Two centuries ago Immanuel Kant assumed that international connectedness between humans would inevitably lead to the realization of world citizen rights. Nonetheless, globalization does not just foster cosmopolitanism but simultaneously yields the (...)
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  9. On Some Unwarranted Tacit Assumptions in Cognitive Neuroscience.Rainer Mausfeld - 2012 - Frontiers in Cognition 3 (67):1-13.
    The cognitive neurosciences are based on the idea that the level of neurons or neural networks constitutes a privileged level of analysis for the explanation of mental phenomena. This paper brings to mind several arguments to the effect that this presumption is ill-conceived and unwarranted in light of what is currently understood about the physical principles underlying mental achievements. It then scrutinizes the question why such conceptions are nevertheless currently prevailing in many areas of psychology. The paper argues that (...)
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  10.  66
    Understanding Stability in Cognitive Neuroscience Through Hacking's Lens.Jacqueline Anne Sullivan - 2021 - Philosophical Inquiries (1):189-208.
    Ian Hacking instigated a revolution in 20th century philosophy of science by putting experiments (“interventions”) at the top of a philosophical agenda that historically had focused nearly exclusively on representations (“theories”). In this paper, I focus on a set of conceptual tools Hacking (1992) put forward to understand how laboratory sciences become stable and to explain what such stability meant for the prospects of unity of science and kind discovery in experimental science. I first use Hacking’s tools to understand sources (...)
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  11. Neuroscience and the Multiple Realization of Cognitive Functions.Carrie Figdor - 2010 - Philosophy of Science 77 (3):419-456.
    Many empirically minded philosophers have used neuroscientific data to argue against the multiple realization of cognitive functions in existing biological organisms. I argue that neuroscientists themselves have proposed a biologically based concept of multiple realization as an alternative to interpreting empirical findings in terms of one‐to‐one structure‐function mappings. I introduce this concept and its associated research framework and also how some of the main neuroscience‐based arguments against multiple realization go wrong. *Received October 2009; revised December 2009. †To contact (...)
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  12. Explanation and Reduction in the Cognitive Neuroscience Approach to the Musical Meaning Problem.Tomasz Szubart - 2019 - In Andrej Démuth (ed.), The Cognitive Aspects of Aesthetic Experience – Selected Problems. Berlin: Peter Lang. pp. 39-50.
    The aim of this paper is to refer basic philosophical approaches to the problem of musical meaning and, on the other hand, to describe some examples of the research on musical meaning found in the field of cognitive neuroscience. By looking at those two approaches together it can be seen that there is still no agreement on how musical meaning should be understood, often due to several methodological problems of which the most important seem to be the possibility (...)
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  13. Philip Gerrans, The Measure of Madness. Philosophy of Mind, Cognitive Neuroscience, and Delusional Thought, MIT Press Cambridge, Massachusetts – London, 2014, pp. 274. [REVIEW]E. Loria - 2017 - Aphex 15:1-13.
    The Australian philosopher Philip Gerrans ambitiously tries to provide a general theory about the formation of delusions that should enclose neuronal, cognitive and phenomenological levels of description. His theory is defined as narrative and it is grounded on the so called “default thoughts”, that consist in simulations, autobiographical narrative fragments produced by the Default Mode Network (DMN). The DMN is a powerful simulation system that evolved to allow humans to simulate and imagine experiences in the absence of an eliciting (...)
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  14.  7
    What Can Neuroscience Tell Us About Reference?Berit Brogaard - 2019 - In Barbara Abbott & Jeanette Gundel (eds.), The Oxford Handbook of Reference. Oxford: Oxford University Press. pp. 365-383.
    In traditional formal semantics the notions of reference, truth and satisfaction are basic and that of representation is derivative and dispensable. If a level of representation is included in the formal presentation of the theory, it is included as a heuristic. Semantics in the traditional sense has no bearing on any form of mental processing. When reference is understood within this framework, cognitive neuroscience cannot possibly provide any insights into the nature of reference. Traditional semantics, however, has numerous (...)
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  15. Responsible Brains: Neuroscience, Law, and Human Culpability.William Hirstein, Katrina L. Sifferd & Tyler K. Fagan - 2018 - New York, NY, USA: MIT Press.
    [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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  16. The Aristotelian Conception of Habit and its Contribution to Human Neuroscience.José Ignacio Murillo & Javier Bernacer - 2014 - Frontiers in Human Neuroscience 8:1-10.
    The notion of habit used in neuroscience is an inheritance from a particular theoretical origin, whose main source is William James. Thus, habits have been characterized as rigid, automatic, unconscious, and opposed to goal-directed actions. This analysis leaves unexplained several aspects of human behavior and cognition where habits are of great importance. We intend to demonstrate the utility that another philosophical conception of habit, the Aristotelian, may have for neuroscientific research. We first summarize the current notion of habit in (...)
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  17. The Architect's Brain: Neuroscience, Creativity, and Architecture.Harry Francis Mallgrave - 2010 - Wiley-Blackwell.
    Introduction -- Historical essays -- The humanist brain : Alberti, Vitruvius, and Leonardo -- The enlightened brain : Perrault, Laugier, and Le Roy -- The sensational brain : Burke, Price, and Knight -- The transcendental brain : Kant and Schopenhauer -- The animate brain : Schinkel, Bötticher, and Semper -- The empathetic brain : Vischer, Wölfflin, and Göller -- The gestalt brain : the dynamics of the sensory field -- The neurological brain : Hayek, Hebb, and Neutra -- The phenomenal (...)
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  18. Network Neuroscience Theory of Human Intelligence.K. Barbey Aron - 2018 - Trends in Cognitive Sciences 22 (1):8-20.
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  19. 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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  20. Confabulation: Views From Neuroscience, Psychiatry, Psychology and Philosophy.William Hirstein (ed.) - 2009 - Oxford University Press.
    [This download contains the introductory chapter.] People confabulate when they make an ill-grounded claim that they honestly believe is true, for example in claiming to recall an event from their childhood that never actually happened. This interdisciplinary book brings together some of the leading thinkers on confabulation in neuroscience, psychiatry, psychology, and philosophy.
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  21.  57
    Beyond Cognitive Myopia: A Patchwork Approach to the Concept of Neural Function.Philipp Haueis - 2018 - Synthese 195 (12):5373-5402.
    In this paper, I argue that looking at the concept of neural function through the lens of cognition alone risks cognitive myopia: it leads neuroscientists to focus only on mechanisms with cognitive functions that process behaviorally relevant information when conceptualizing “neural function”. Cognitive myopia tempts researchers to neglect neural mechanisms with noncognitive functions which do not process behaviorally relevant information but maintain and repair neural and other systems of the body. Cognitive myopia similarly affects philosophy of (...)
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  22. Patterns in Cognitive Phenomena and Pluralism of Explanatory Styles.Angela Potochnik & Guilherme Sanches de Oliveira - 2019 - Topics in Cognitive Science 12 (4):1306-1320.
    Debate about cognitive science explanations has been formulated in terms of identifying the proper level(s) of explanation. Views range from reductionist, favoring only neuroscience explanations, to mechanist, favoring the integration of multiple levels, to pluralist, favoring the preservation of even the most general, high-level explanations, such as those provided by embodied or dynamical approaches. In this paper, we challenge this framing. We suggest that these are not different levels of explanation at all but, rather, different styles of explanation (...)
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  23. Annotating Affective Neuroscience Data with the Emotion Ontology.Janna Hastings, Werner Ceusters, Kevin Mulligan & Barry Smith - 2012 - In Third International Conference on Biomedical Ontology. ICBO. pp. 1-5.
    The Emotion Ontology is an ontology covering all aspects of emotional and affective mental functioning. It is being developed following the principles of the OBO Foundry and Ontological Realism. This means that in compiling the ontology, we emphasize the importance of the nature of the entities in reality that the ontology is describing. One of the ways in which realism-based ontologies are being successfully used within biomedical science is in the annotation of scientific research results in publicly available databases. Such (...)
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  24. Mind, Cognition, and Neuroscience: A Philosophical Introduction.Benjamin D. Young & Carolyn Dicey Jennings (eds.) - forthcoming - Routledge.
    Mind, Cognition, and Neuroscience: A Philosophical Introduction is specifically designed for interdisciplinary audiences. The textbook will offer a comprehensive overview of a wide range of contemporary topics that are relevant to the study of mind. Each chapter will situate current philosophical research and neuroscientific findings within historically relevant debates in philosophy of cognitive science. By situating cutting-edge research within the theoretical trajectory of the field, students will gain a fundamental understanding of the cognitive neurosciences, as well as (...)
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  25. A Cognitive Computation Fallacy? Cognition, Computations and Panpsychism.John Mark Bishop - 2009 - Cognitive Computation 1 (3):221-233.
    The journal of Cognitive Computation is defined in part by the notion that biologically inspired computational accounts are at the heart of cognitive processes in both natural and artificial systems. Many studies of various important aspects of cognition (memory, observational learning, decision making, reward prediction learning, attention control, etc.) have been made by modelling the various experimental results using ever-more sophisticated computer programs. In this manner progressive inroads have been made into gaining a better understanding of the many (...)
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  26. Embodied Cognitive Science and its Implications for Psychopathology.Zoe Drayson - 2009 - Philosophy, Psychiatry, and Psychology 16 (4):329-340.
    The past twenty years have seen an increase in the importance of the body in psychology, neuroscience, and philosophy of mind. This 'embodied' trend challenges the orthodox view in cognitive science in several ways: it downplays the traditional 'mind-as-computer' approach and emphasizes the role of interactions between the brain, body, and environment. In this article, I review recent work in the area of embodied cognitive science and explore the approaches each takes to the ideas of consciousness, computation (...)
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  27. Connecting Levels of Analysis in Educational Neuroscience: A Review of Multi-Level Structure of Educational Neuroscience with Concrete Examples.Hyemin Han - 2019 - Trends in Neuroscience and Education 17:100113.
    In its origins educational neuroscience has started as an endeavor to discuss implications of neuroscience studies for education. However, it is now on its way to become a transdisciplinary field, incorporating findings, theoretical frameworks and methodologies from education, and cognitive and brain sciences. Given the differences and diversity in the originating disciplines, it has been a challenge for educational neuroscience to integrate both theoretical and methodological perspective in education and neuroscience in a coherent way. We (...)
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  28.  60
    The Neural and Cognitive Mechanisms of Knowledge Attribution: An EEG Study.Adam Michael Bricker - 2020 - Cognition 203:104412.
    Despite the ubiquity of knowledge attribution in human social cognition, its associated neural and cognitive mechanisms are poorly documented. A wealth of converging evidence in cognitive neuroscience has identified independent perspective-taking and inhibitory processes for belief attribution, but the extent to which these processes are shared by knowledge attribution isn't presently understood. Here, we present the findings of an EEG study designed to directly address this shortcoming. These findings suggest that belief attribution is not a component process (...)
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  29. The Cognitive Gap, Neural Darwinism & Linguistic Dualism —Russell, Husserl, Heidegger & Quine.Hermann G. W. Burchard - 2014 - Open Journal of Philosophy 4 (3):244-264.
    Guided by key insights of the four great philosophers mentioned in the title, here, in review of and expanding on our earlier work (Burchard, 2005, 2011), we present an exposition of the role played by language, & in the broader sense, λογοζ, the Logos, in how the CNS, the brain, is running the human being. Evolution by neural Darwinism has been forcing the linguistic nature of mind, enabling it to overcome & exploit the cognitive gap between an animal and (...)
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  30. Psychoanalysis Representation and Neuroscience: The Freudian Unconscious and the Bayesian Brain.Jim Hopkins - 2012 - In A. Fotopoulu, D. Pfaff & M. Conway (eds.), From the Couch to the Lab: Psychoanalysis, Neuroscience and Cognitive Psychology in Dialoge. Oxford University Press.
    This paper argues that recent work in the 'free energy' program in neuroscience enables us better to understand both consciousness and the Freudian unconscious, including the role of the superego and the id. This work also accords with research in developmental psychology (particularly attachment theory) and with evolutionary considerations bearing on emotional conflict. This argument is carried forward in various ways in the work that follows, including 'Understanding and Healing', 'The Significance of Consilience', 'Psychoanalysis, Philosophical Issues', and 'Kantian (...) and Radical Interpretation', and the discussion of conscious extends that of both 'The Problem of Consciousness and the Innerness of the Mind' and 'Psychoanalysis, Metaphor, and the Concept of Mind'. (shrink)
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  31. Against Functional Reductionism in Cognitive Science.Muhammad Ali Khalidi - 2005 - International Studies in the Philosophy of Science 19 (3):319 – 333.
    Functional reductionism concerning mental properties has recently been advocated by Jaegwon Kim in order to solve the problem of the 'causal exclusion' of the mental. Adopting a reductionist strategy first proposed by David Lewis, he regards psychological properties as being 'higher-order' properties functionally defined over 'lower-order' properties, which are causally efficacious. Though functional reductionism is compatible with the multiple realizability of psychological properties, it is blocked if psychological properties are subdivided or crosscut by neurophysiological properties. I argue that there is (...)
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  32. The Cognitive Load of Presupposition Triggers: Mandatory and Optional Repairs in Presupposition Failure.Filippo Domaneschi, Carlo Penco, Elena Carrea & Alberto Greco - 2014 - Language, Cognition and Neuroscience 29 (1):136-146.
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  33. Is the Next Frontier in Neuroscience a Decade of the Mind?Jacqueline Anne Sullivan - 2014 - In Charles Wolfe (ed.), Brain Theory: Essays in Critical Neurophilosophy. Palgrave MacMillan.
    In 2007, ten world-renowned neuroscientists proposed “A Decade of the Mind Initiative.” The contention was that, despite the successes of the Decade of the Brain, “a fundamental understanding of how the brain gives rise to the mind [was] still lacking” (2007, 1321). The primary aims of the decade of the mind were “to build on the progress of the recent Decade of the Brain (1990-99)” by focusing on “four broad but intertwined areas” of research, including: healing and protecting, understanding, enriching, (...)
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  34. A Study of Ignorance: Suffering and Freedom in Early Buddhist Teachings and Parallels in Modern Neuroscience.Margot Wilson - manuscript
    What might early Buddhist teachings offer neuroscience and how might neuroscience inform contemporary Buddhism? Both early Buddhist teachings and cognitive neuroscience suggest that the conditioning of our cognitive apparatus and brain plays a role in agency that may be either efficacious or non-efficacious. Both consider internal time to play a central role in the efficacy of agency. Buddhism offers an approach that promises to increase the efficacy of agency. This approach is found in five early (...)
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  35. Moral Implications From Cognitive (Neuro)Science? No Clear Route.Micah Lott - 2016 - Ethics 127 (1):241-256.
    Joshua Greene argues that cognitive (neuro)science matters for ethics in two ways, the “direct route” and the “indirect route.” Greene illustrates the direct route with a debunking explanation of the inclination to condemn all incest. The indirect route is an updated version of Greene’s argument that dual-process moral psychology gives support for consequentialism over deontology. I consider each of Greene’s arguments, and I argue that neither succeeds. If there is a route from cognitive (neuro)science to ethics, Greene has (...)
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  36. Three Approaches to Human Cognitive Development: Neo-Nativism, Neuroconstructivism, and Dynamic Enskillment.Mirko Farina - 2016 - British Journal for the Philosophy of Science 67 (2):617-641.
    In Section 1, I introduce three views that explain human cognitive development from different standpoints: Marcus’s neo-nativism, standard neuroconstructivism, and neo-neuroconstructivism. In Section 2, I assess Marcus’s attempt to reconcile nativism with developmental flexibility. In Section 3, I argue that in structurally reconfiguring nativism, Marcus ends up transforming it into an unrecognizable form, and I claim that his view could be accommodated within the more general framework provided by standard neuroconstructivism. In Section 4, I focus on recent empirical findings (...)
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  37. Mindmelding: Consciousness, Neuroscience, and the Mind's Privacy.William Hirstein - 2012 - Oxford University Press.
    [This download contains the Table of Contents and Chapter 1]. I argue here that the claim that conscious states are private, in the sense that only one person can ever experience them directly, is false. There actually is a way to connect the brains of two people that would allow one to have direct experience of the other's conscious, e.g., perceptual states. This would allow, for instance, one person to see that the other had deviant color perception (which was masked (...)
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  38. Steps to a "Properly Embodied" Cognitive Science.Mog Stapleton - 2013 - Cognitive Systems Research 22 (June):1-11.
    Cognitive systems research has predominantly been guided by the historical distinction between emotion and cognition, and has focused its efforts on modelling the “cognitive” aspects of behaviour. While this initially meant modelling only the control system of cognitive creatures, with the advent of “embodied” cognitive science this expanded to also modelling the interactions between the control system and the external environment. What did not seem to change with this embodiment revolution, however, was the attitude towards affect (...)
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  39. Auditory Neuroscience: Making Sense of Sound.Adam M. Croom - 2014 - Musicae Scientiae: The Journal of the European Society for the Cognitive Sciences of Music 18:1-3.
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  40. Noise, Uncertainty, and Interest: Predictive Coding and Cognitive Penetration.Jona Vance & Dustin Stokes - 2017 - Consciousness and Cognition 47:86-98.
    This paper concerns how extant theorists of predictive coding conceptualize and explain possible instances of cognitive penetration. §I offers brief clarification of the predictive coding framework and relevant mechanisms, and a brief characterization of cognitive penetration and some challenges that come with defining it. §II develops more precise ways that the predictive coding framework can explain, and of course thereby allow for, genuine top-down causal effects on perceptual experience, of the kind discussed in the context of cognitive (...)
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  41. Psychology, Neuroscience and the Consciousness Dilemma.Katalin Balog - manuscript
    Phenomenality and accessibility are two aspects of conscious experience. “Phenomenality” refers to the felt, experiential aspect of experience, and “accessibility” to a cognitive aspect of it: its availability in general to thought processes, reasoning, decision making, etc. In this paper, I present a dilemma for theorizing about the connection between them. Either there is a conceptual connection linking phenomenality and accessibility (i.e., it is not possible to conceive of a phenomenal experience that is not cognitively accessible for the subject) (...)
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  42. The Neuroscience of Moral Judgment.Joanna Demaree-Cotton & Guy Kahane - 2018 - In Aaron Zimmerman, Karen Jones & Mark Timmons (eds.), The Routledge Handbook of Moral Epistemology.
    This chapter examines the relevance of the cognitive science of morality to moral epistemology, with special focus on the issue of the reliability of moral judgments. It argues that the kind of empirical evidence of most importance to moral epistemology is at the psychological rather than neural level. The main theories and debates that have dominated the cognitive science of morality are reviewed with an eye to their epistemic significance.
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  43. Cognitive Emotion and the Law.Harold Anthony Lloyd - 2016 - Law and Psychology Review 41.
    Many wrongly believe that emotion plays little or no role in legal reasoning. Unfortunately, Langdell and his “scientific” case method encourage this error. A careful review of analysis in the real world, however, belies this common belief. Emotion can be cognitive, and cognition can be emotional. Additionally, modern neuroscience underscores the “co-dependence” of reason and emotion. Thus, even if law were a certain science of appellate cases (which it is not), emotion could not be torn from such “science.” (...)
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  44. Implications of Action-Oriented Paradigm Shifts in Cognitive Science.Peter F. Dominey, Tony J. Prescott, Jeannette Bohg, Andreas K. Engel, Shaun Gallagher, Tobias Heed, Matej Hoffmann, Gunther Knoblich, Wolfgang Prinz & Andrew Schwartz - 2016 - In Andreas K. Engel, Karl J. Friston & Danica Kragic (eds.), The Pragmatic Turn: Toward Action-Oriented Views in Cognitive Science. MIT Press. pp. 333-356.
    An action-oriented perspective changes the role of an individual from a passive observer to an actively engaged agent interacting in a closed loop with the world as well as with others. Cognition exists to serve action within a landscape that contains both. This chapter surveys this landscape and addresses the status of the pragmatic turn. Its potential influence on science and the study of cognition are considered (including perception, social cognition, social interaction, sensorimotor entrainment, and language acquisition) and its impact (...)
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  45. Reverse-Engineering in Cognitive-Science.Marcin Miłkowski - 2013 - In Marcin Miłkowski & Konrad Talmont-Kaminski (eds.), Regarding Mind, Naturally. Cambridge Scholars Press. pp. 12-29.
    I discuss whether there are some lessons for philosophical inquiry over the nature of simulation to be learnt from the practical methodology of reengineering. I will argue that reengineering serves a similar purpose as simulations in theoretical science such as computational neuroscience or neurorobotics, and that the procedures and heuristics of reengineering help to develop solutions to outstanding problems of simulation.
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  46. Why Build a Virtual Brain? Large-Scale Neural Simulations as Jump Start for Cognitive Computing.Matteo Colombo - 2016 - Journal of Experimental and Theoretical Artificial Intelligence.
    Despite the impressive amount of financial resources recently invested in carrying out large-scale brain simulations, it is controversial what the pay-offs are of pursuing this project. One idea is that from designing, building, and running a large-scale neural simulation, scientists acquire knowledge about the computational performance of the simulating system, rather than about the neurobiological system represented in the simulation. It has been claimed that this knowledge may usher in a new era of neuromorphic, cognitive computing systems. This study (...)
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  47. Semantics and Metaphysics in Informatics: Toward an Ontology of Tasks (a Reply to Lenartowicz Et Al. 2010, Towards an Ontology of Cognitive Control).Carrie Figdor - 2011 - Topics in Cognitive Science 3 (2):222-226.
    This article clarifies three principles that should guide the development of any cognitive ontology. First, that an adequate cognitive ontology depends essentially on an adequate task ontology; second, that the goal of developing a cognitive ontology is independent of the goal of finding neural implementations of the processes referred to in the ontology; and third, that cognitive ontologies are neutral regarding the metaphysical relationship between cognitive and neural processes.
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  48. A Study of Ignorance: Suffering and Freedom in Early Buddhist Teachings and Parallels in Modern Neuroscience.Margot Wilson - 2016 - Dissertation, University of Glasgow
    What might early Buddhist teachings offer neuroscience and how might neuroscience inform contemporary Buddhism? Both early Buddhist teachings and cognitive neuroscience suggest that the conditioning of our cognitive apparatus and brain plays a role in agency that may be either efficacious or non-efficacious. Both consider internal time to play a central role in the efficacy of agency. Buddhism offers an approach that promises to increase the efficacy of agency. This approach is found in five early (...)
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  49. Where the Standard Approach in Comparative Neuroscience Fails and Where It Works: General Intelligence and Brain Asymmetries.Davide Serpico & Elisa Frasnelli - 2018 - Comparative Cognition and Behavior Reviews 13:95-98.
    Although brain size and the concept of intelligence have been extensively used in comparative neuroscience to study cognition and its evolution, such coarse-grained traits may not be informative enough about important aspects of neurocognitive systems. By taking into account the different evolutionary trajectories and the selection pressures on neurophysiology across species, Logan and colleagues suggest that the cognitive abilities of an organism should be investigated by considering the fine-grained and species-specific phenotypic traits that characterize it. In such a (...)
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  50.  48
    Psychology and Neuroscience: The Distinctness Question.Brice Bantegnie - forthcoming - Erkenntnis:1-20.
    In a recent paper, Gualtiero Piccinini and Carl Craver have argued that psychology is not distinct from neuroscience. Many have argued that Piccinini and Craver’s argument is unsuccessful. However, none of these authors have questioned the appropriateness of Piccinini and Craver’s argument for their key premise—that functional analyses are mechanism sketches. My first and main goal in this paper is to show that Piccinini and Craver offer normative considerations in support of what is a descriptive premise and to provide (...)
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