Results for 'cognitive neuroscience research'

945 found
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  1. Experimentation in Cognitive Neuroscience and Cognitive Neurobiology.Jacqueline Anne Sullivan - 2014 - In Levy Neil & Clausen Jens (eds.), 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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  2. What is the “Cognitive” in Cognitive Neuroscience?Carrie Figdor - 2012 - 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 (...)
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  3. Understanding Stability in Cognitive Neuroscience Through Hacking's Lens.Jacqueline Anne Sullivan - 2021 - Philosophical Inquiries 1 (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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  4. 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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  5. 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. 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 (...)
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  6. (2 other versions)Mechanisms, Coherence, and Theory Choice in the Cognitive Neurosciences.Stephan Hartmann - 2001 - In Peter McLaughlin, Peter Machamer & Rick Grush (eds.), Theory and Method in the Neurosciences. Pittsburgh University Press. pp. 70-80.
    Let me first state that I like Antti Revonsuo’s discussion of the various methodological and interpretational problems in neuroscience. It shows how careful and methodologically reflected scientists have to proceed in this fascinating field of research. I have nothing to add here. Furthermore, I am very sympathetic towards Revonsuo’s general proposal to call for a Philosophy of Neuroscience that stresses foundational issues, but also focuses on methodological and explanatory strategies.2 In a footnote of his paper, Revonsuo complains (...)
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  7. 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 (...)
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  8. Understanding Cognition.Gordon Steenbergen - 2015 - Dissertation, Duke University
    Cognitive neuroscience is an interdisciplinary enterprise aimed at explaining cognition and behavior. It appears to be succeeding. What accounts for this apparent explanatory success? According to one prominent philosophical thesis, cognitive neuroscience explains by discovering and describing mechanisms. This "mechanist thesis" is open to at least two interpretations: a strong metaphysical thesis that Carl Craver and David Kaplan defend, and a weaker methodological thesis that William Bechtel defends. I argue that the metaphysical thesis is false and (...)
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  9. Non-Epistemological Values in Collaborative Research in Neuroscience: The Case of Alleged Differences Between Human Populations.Joanna K. Malinowska & Tomasz Żuradzki - 2020 - American Journal of Bioethics Neuroscience 11 (3):203-206.
    The goals and tasks of neuroethics formulated by Farahany and Ramos (2020) link epistemological and methodological issues with ethical and social values. The authors refer simultaneously to the social significance and scientific reliability of the BRAIN Initiative. They openly argue that neuroethics should not only examine neuroscientific research in terms of “a rigorous, reproducible, and representative neuroscience research process” as well as “explore the unique nature of the study of the human brain through accurate and representative models (...)
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  10. 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 (eds.), 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 (...)
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  11. Cognitive Science: Recent Advances and Recurring Problems.Fred Adams, Joao Kogler & Osvaldo Pessoa Junior (eds.) - 2017 - Wilmington, DE, USA: Vernon Press.
    This book consists of an edited collection of original essays of the highest academic quality by seasoned experts in their fields of cognitive science. The essays are interdisciplinary, drawing from many of the fields known collectively as “the cognitive sciences.” Topics discussed represent a significant cross-section of the most current and interesting issues in cognitive science. Specific topics include matters regarding machine learning and cognitive architecture, the nature of cognitive content, the relationship of information to (...)
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  12. 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 (...)
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  13. Annotating affective neuroscience data with the Emotion Ontology.Janna Hastings, Werner Ceusters, Kevin Mulligan & Barry Smith - 2012 - In Janna Hastings, Werner Ceusters, Kevin Mulligan & Barry Smith (eds.), 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. (...)
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  14. The Relevance of the Buddhist Theory of Dependent Co-Origination to Cognitive Science.Michael Kurak - 2003 - Brain and Mind 4 (3):341-351.
    The canonical Buddhist account of the cognitive processes underlying our experience of the world prefigures recent developments in neuroscience. The developments in question are centered on two main trends in neuroscience research and thinking. The first of these involves the idea that our everyday experience of ourselves and of the world consists in a series of discrete microstates. The second closely related notion is that affective structures and systems play critical roles in governing the formation of (...)
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  15. Can brain scanning and imaging techniques contribute to a theory of thinking?Robert Henman - 2013 - Dialogues in Philosophy, Mental and Neuro Sciences 6 (2):49-56.
    In this article I analyse current efforts in cognitive neuroscience to explore the organic and cognitive processes involved in problem-solving. This analysis highlights a problem with assuming that cognitive processes can be wholly explained once one has explained organic processes. Reflection on scientific performance suggests how this problem can be evaded. This reflection on performance can also provide a paradigm for future neuroscientific research leading to a more detailed account of how brain locales and activities (...)
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  16. Bayesian Cognitive Science. Routledge Encyclopaedia of Philosophy.Matteo Colombo - 2023 - Routledge Encyclopaedia of Philosophy.
    Bayesian cognitive science is a research programme that relies on modelling resources from Bayesian statistics for studying and understanding mind, brain, and behaviour. Conceiving of mental capacities as computing solutions to inductive problems, Bayesian cognitive scientists develop probabilistic models of mental capacities and evaluate their adequacy based on behavioural and neural data generated by humans (or other cognitive agents) performing a pertinent task. The overarching goal is to identify the mathematical principles, algorithmic procedures, and causal mechanisms (...)
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  17. 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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  18. 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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  19. Stinking Philosophy!: Smell Perception, Cognition, and Consciousness.Benjamin D. Young - 2024 - Cambridge MA: MIT Press.
    The nature of olfaction; its importance for understanding perennial issues of philosophy of mind, perception, and consciousness; and its implications for cognitive neuroscience. -/- What are smells? Despite the best efforts of philosophy and the chemosciences, the question remains vexing—but no more perplexing than the historical lapse of the past few centuries to seriously consider a sense that has a key place in philosophy of mind and perception. Stinking Philosophy! is Benjamin Young's answer to this critical lapse. Drawing (...)
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  20. Is the Next Frontier in Neuroscience a Decade of the Mind?Jacqueline Anne Sullivan - 2014 - In Charles T. 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, (...)
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  21. Prediction and Topological Models in Neuroscience.Bryce Gessell, Matthew Stanley, Benjamin Geib & Felipe De Brigard - 2020 - In Fabrizio Calzavarini & Marco Viola (eds.), Neural Mechanisms: New Challenges in the Philosophy of Neuroscience. Springer.
    In the last two decades, philosophy of neuroscience has predominantly focused on explanation. Indeed, it has been argued that mechanistic models are the standards of explanatory success in neuroscience over, among other things, topological models. However, explanatory power is only one virtue of a scientific model. Another is its predictive power. Unfortunately, the notion of prediction has received comparatively little attention in the philosophy of neuroscience, in part because predictions seem disconnected from interventions. In contrast, we argue (...)
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  22. From Is to Ought. How Scientific Research in the Field of Moral Cognition Can Impact the Criminal Law.Levin Güver - 2019 - Cognitio: Student Law and Society Forum 1 (2):1–22.
    Rapid technological advancements such as fMRI have led to the rise of neuroscientific discoveries. Coupled with findings from cognitive psychology, they are claiming to have solved the millennia-old puzzle of moral cognition. If true, our societal structures – and with that the criminal law – would be gravely impacted. This thesis concerns itself with four distinct theories stemming from the disciplines above as to what mechanisms constitute moral judgement: the Stage Model by KOHLBERG, the Universal Moral Grammar Theory by (...)
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  23. A Cultural Species and its Cognitive Phenotypes: Implications for Philosophy.Joseph Henrich, Damián E. Blasi, Cameron M. Curtin, Helen Elizabeth Davis, Ze Hong, Daniel Kelly & Ivan Kroupin - 2022 - Review of Philosophy and Psychology 14 (2):349-386.
    After introducing the new field of cultural evolution, we review a growing body of empirical evidence suggesting that culture shapes what people attend to, perceive and remember as well as how they think, feel and reason. Focusing on perception, spatial navigation, mentalizing, thinking styles, reasoning (epistemic norms) and language, we discuss not only important variation in these domains, but emphasize that most researchers (including philosophers) and research participants are psychologically peculiar within a global and historical context. This rising tide (...)
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    Frames of Discovery and the Formats of Cognitive Representation.Alfredo Vernazzani & Dimitri Coelho Mollo - forthcoming - In Gualtiero Piccinini (ed.), Neurocognitive Foundations of Mind. Routledge.
    Abstract: Research on the nature and varieties of the format of cognitive representations in philosophy and cognitive science have been partly shaped by analogies to external, public representations. In this paper, we argue that relying on such analogies contributes to framing the question of cognitive formats in problematic, potentially counterproductive ways. We show that cognitive and public representations differ in many of their central features, making analogies to public representations ill-suited to improving our understanding of (...)
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  25. Gestural coupling and social cognition: Moebius Syndrome as a case study.Joel Krueger - 2012 - Frontiers in Human Neuroscience 6.
    Social cognition researchers have become increasingly interested in the ways that behavioral, physiological, and neural coupling facilitate social interaction and interpersonal understanding. We distinguish two ways of conceptualizing the role of such coupling processes in social cognition: strong and moderate interactionism. According to strong interactionism (SI), low-level coupling processes are alternatives to higher-level individual cognitive processes; the former at least sometimes render the latter superfluous. Moderate interactionism (MI) on the other hand, is an integrative approach. Its guiding assumption is (...)
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  26. 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 (...)
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  27. Frames of Discovery and the Formats of Cognitive Representation.Alfredo Vernazzani & Dimitri Coelho Mollo - forthcoming - In Gualtiero Piccinini (ed.), Neurocognitive Foundations of Mind. Routledge.
    Abstract: Research on the nature and varieties of the format of cognitive representations in philosophy and cognitive science have been partly shaped by analogies to external, public representations. In this paper, we argue that relying on such analogies contributes to framing the question of cognitive formats in problematic, potentially counterproductive ways. We show that cognitive and public representations differ in many of their central features, making analogies to public representations ill-suited to improving our understanding of (...)
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  28. The Neuroscience of Spontaneous Thought: An Evolving, Interdisciplinary Field.Andrews-Hanna Jessica, Irving Zachary C., Fox Kieran, Spreng Nathan R. & Christoff Kalina - forthcoming - In Kieran Fox & Kieran Christoff (eds.), Oxford Handbook of Spontaneous Thought and Creativity. Oxford University Press.
    An often-overlooked characteristic of the human mind is its propensity to wander. Despite growing interest in the science of mind-wandering, most studies operationalize mind-wandering by its task-unrelated contents. But these contents may be orthogonal to the processes that determine how thoughts unfold over time, remaining stable or wandering from one topic to another. In this chapter, we emphasize the importance of incorporating such processes into current definitions of mind-wandering, and propose that mind-wandering and other forms of spontaneous thought (such as (...)
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  29. Empathy at the confluence of neuroscience and empirical literary studies.Michael Burke, Anezka Kuzmicova, Anne Mangen & Theresa Schilhab - 2016 - Scientific Study of Literature 6 (1):6-41.
    The objective of this article is to review extant empirical studies of empathy in narrative reading in light of (i) contemporary literary theory, and (ii) neuroscientific studies of empathy, and to discuss how a closer interplay between neuroscience and literary studies may enhance our understanding of empathy in narrative reading. An introduction to some of the philosophical roots of empathy is followed by tracing its application in contemporary literary theory, in which scholars have pursued empathy with varying degrees of (...)
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  30. Three symbol ungrounding problems: Abstract concepts and the future of embodied cognition.Guy Dove - 2016 - Psychonomic Bulletin and Review 4 (23):1109-1121.
    A great deal of research has focused on the question of whether or not concepts are embodied as a rule. Supporters of embodiment have pointed to studies that implicate affective and sensorimotor systems in cognitive tasks, while critics of embodiment have offered nonembodied explanations of these results and pointed to studies that implicate amodal systems. Abstract concepts have tended to be viewed as an important test case in this polemical debate. This essay argues that we need to move (...)
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  31. What Are We Talking About When We Talk About Cognition?: Human, cybernetic, and phylogenetic conceptual schemes.Carrie Figdor - 2023 - JOLMA - The Journal for the Philosophy of Language, Mind, and the Arts 4 (2):149-162.
    This paper outlines three broad conceptual schemes currently in play in the sciences concerned with explaining cognitive abilities. One is the anthropocentric scheme – human cognition – that dominated our thinking about cognition until very recently. Another is the cybernetic-computational scheme – cybernetic cognition – rooted in cognitive science and flourishing in such fields as artificial intelligence, computational neuroscience, and biocybernetics. The third is an evolutionary biological scheme – phylogenetic cognition – that conceptualizes cognition in terms of (...)
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  32. Sculpting the space of actions. Explaining human action by integrating intentions and mechanisms.Machiel Keestra - 2014 - Dissertation, University of Amsterdam
    How can we explain the intentional nature of an expert’s actions, performed without immediate and conscious control, relying instead on automatic cognitive processes? How can we account for the differences and similarities with a novice’s performance of the same actions? Can a naturalist explanation of intentional expert action be in line with a philosophical concept of intentional action? Answering these and related questions in a positive sense, this dissertation develops a three-step argument. Part I considers different methods of explanations (...)
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  33. 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 (...)
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  34. Productive Theory-Ladenness in fMRI.Emrah Aktunc - forthcoming - Synthese.
    Several developments for diverse scientific goals, mostly in physics and physiology, had to take place, which eventually gave us fMRI as one of the central research paradigms of contemporary cognitive neuroscience. This technique stands on solid foundations established by the physics of magnetic resonance and the physiology of hemodynamics and is complimented by computational and statistical techniques. I argue, and support using concrete examples, that these foundations give rise to a productive theory-ladenness in fMRI, which enables researchers (...)
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  35. A genealogical map of the concept of habit.Xabier E. Barandiaran & Ezequiel A. Di Paolo - 2014 - Frontiers in Human Neuroscience 8 (522):1--7.
    The notion of information processing has dominated the study of the mind for over six decades. However, before the advent of cognitivism, one of the most prominent theoretical ideas was that of Habit. This is a concept with a rich and complex history, which is again starting to awaken interest, following recent embodied, enactive critiques of computationalist frameworks. We offer here a very brief history of the concept of habit in the form of a genealogical network-map. This serves to provide (...)
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  36. Neuroscientific Kinds Through the Lens of Scientific Practice.Jacqueline Anne Sullivan - 2015 - In Catherine Kendig (ed.), Natural Kinds and Classification in Scientific Practice. Routledge. pp. 47-56.
    In this chapter, I argue that scientific practice in the neurosciences of cognition is not conducive to the discovery of natural kinds of cognitive capacities. The “neurosciences of cognition” include cognitive neuroscience and cognitive neurobiology, two research areas that aim to understand how the brain gives rise to cognition and behavior. Some philosophers of neuroscience have claimed that explanatory progress in these research areas ultimately will result in the discovery of the underlying mechanisms (...)
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  37. New Frontiers in Translational Research: Touchscreens, Open Science, and the Mouse Translational Research Accelerator Platform (MouseTRAP).Jacqueline Anne Sullivan - 2021 - Genes, Brain and Behavior 20 (1):e12705.
    Many neurodegenerative and neuropsychiatric diseases and other brain disorders are accompanied by impairments in high-level cognitive functions including memory, attention, motivation, and decision-making. Despite several decades of extensive research, neuroscience is little closer to discovering new treatments. Key impediments include the absence of validated and robust cognitive assessment tools for facilitating translation from animal models to humans. In this review, we describe a state-of-the-art platform poised to overcome these impediments and improve the success of translational (...), the Mouse Translational Research Accelerator Platform (MouseTRAP), which is centered on the touchscreen cognitive testing system for rodents. It integrates touchscreen-based tests of high-level cognitive assessment with state-of-the art neurotechnology to record and manipulate molecular and circuit level activity in vivo in animal models during human-relevant cognitive performance. The platform also is integrated with two Open Science platforms designed to facilitate knowledge and data-sharing practices within the rodent touchscreen community, touchscreencognition and mousebytes. Touchscreencognition includes the Wall, showcasing touchscreen news and publications, the Forum, for community discussion, and Training, which includes courses, videos, SOPs, and symposia. To get started, interested researchers simply create user accounts. We describe the origins of the touchscreen testing system, the novel lines of research it has facilitated, and its increasingly widespread use in translational research, which is attributable in part to knowledge-sharing efforts over the past decade. We then identify the unique features of MouseTRAP that stand to potentially revolutionize translational research, and describe new initiatives to partner with similar platforms such as McGill’s M3 platform. (shrink)
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  38. Emotion, the bodily, and the cognitive.Rick Anthony Furtak - 2010 - Philosophical Explorations 13 (1):51 – 64.
    In both psychology and philosophy, cognitive theories of emotion have met with increasing opposition in recent years. However, this apparent controversy is not so much a gridlock between antithetical stances as a critical debate in which each side is being forced to qualify its position in order to accommodate the other side of the story. Here, I attempt to sort out some of the disagreements between cognitivism and its rivals, adjudicating some disputes while showing that others are merely superficial. (...)
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  39. Jung in Dialogue with Freud and Patañjali: Instinct, Affective Neuroscience, and the Reconciliation of Science and Religious Experience.Leanne Whitney - 2017 - Cosmos and History 13 (2):298-312.
    For both Jung and Patañjali our human desire to understand “God” is as real as any other instinct. Jung’s and Patañjali’s models further align in their emphasis on the teleological directedness of the psyche, and their aim at reconciling science and religious experience. As an atheist, Freud was in disagreement, but all three scholars align in their emphasis on the study of affect as an empirical means of entering into the psyche. For Patañjali, the nadir of affect lays in transcending (...)
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  40. Memory and the extended mind: embodiment, cognition, and culture.John Sutton - 2005 - Cognitive Processing 6:223-226.
    This special issue, which includes papers first presented at two workshops on ‘Memory, Mind, and Media’ in Sydney on November 29–30 and December 2–3, 2004, showcases some of the best interdisciplinary work in philosophy and psychology by memory researchers in Australasia (and by one expatriate Australian, Robert Wilson of the University of Alberta). The papers address memory in many contexts: in dance and under hypnosis, in social groups and with siblings, in early childhood and in the laboratory. Memory is taken (...)
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  41. Brains, trains, and ethical claims: Reassessing the normative implications of moral dilemma research.Michael T. Dale & Bertram Gawronski - 2023 - Philosophical Psychology 36 (1):109-133.
    Joshua Greene has argued that the empirical findings of cognitive science have implications for ethics. In particular, he has argued (1) that people’s deontological judgments in response to trolley problems are strongly influenced by at least one morally irrelevant factor, personal force, and are therefore at least somewhat unreliable, and (2) that we ought to trust our consequentialist judgments more than our deontological judgments when making decisions about unfamiliar moral problems. While many cognitive scientists have rejected Greene’s dual-process (...)
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  42. (1 other version)Understanding human action: integrating meanings, mechanisms, causes, and contexts.Machiel Keestra - 2011 - In Repko Allen, Szostak Rick & Newell William (eds.), Interdisciplinary Research: Case Studies of Integrative Understandings of Complex Problems. Sage Publications. pp. 201-235.
    Humans are capable of understanding an incredible variety of actions performed by other humans. Even though these range from primary biological actions, like eating and fleeing, to acts in parliament or in poetry, humans generally can make sense of each other’s actions. Understanding other people’s actions is called action understanding, and it can transcend differences in race, gender, culture, age, and social and historical circumstances. Action understanding is the cognitive ability to make sense of another person’s action by integrating (...)
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  43. Integrating Philosophy of Understanding with the Cognitive Sciences.Kareem Khalifa, Farhan Islam, J. P. Gamboa, Daniel Wilkenfeld & Daniel Kostić - 2022 - Frontiers in Systems Neuroscience 16.
    We provide two programmatic frameworks for integrating philosophical research on understanding with complementary work in computer science, psychology, and neuroscience. First, philosophical theories of understanding have consequences about how agents should reason if they are to understand that can then be evaluated empirically by their concordance with findings in scientific studies of reasoning. Second, these studies use a multitude of explanations, and a philosophical theory of understanding is well suited to integrating these explanations in illuminating ways.
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  44. 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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  45. Music between Philosophy and Science: The Applicability of Scientific Results to the Philosophy of Music.Sanja Sreckovic - 2019 - Dissertation, University of Belgrade
    The dissertation discusses the relationship between two approaches to researching music: the empirical approach of experimental psychology and cognitive neuroscience, and the speculative approach of philosophical aesthetics of music. The aim of the dissertation is to determine the relationship between problems, conceptual frameworks, and domains of inquiry of the two approaches. The dissertation should answer whether the philosophical and the empirical approach deal with the same, or at least relatable aspects of music. In particular, it should answer whether (...)
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  46. Rethinking the role of the rTPJ in attention and social cognition in light of the opposing domains hypothesis: findings from an ALE-based meta-analysis and resting-state functional connectivity.Benjamin Kubit & Anthony I. Jack - 2013 - Frontiers in Human Neuroscience 7.
    The right temporo-parietal junction (rTPJ) has been associated with two apparently disparate functional roles: in attention and in social cognition. According to one account, the rTPJ initiates a “circuit-breaking” signal that interrupts ongoing attentional processes, effectively reorienting attention. It is argued this primary function of the rTPJ has been extended beyond attention, through a process of evolutionarily cooption, to play a role in social cognition. We propose an alternative account, according to which the capacity for social cognition depends on a (...)
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  47. Chinese Self: Its Culture ang Neuroscience.Ying Zhu & Hongbin Wang - 2017 - Journal of Human Cognition 1 (1):27-39.
    According to the principle of internal-external consonance (Wexler,2006), an individual's internal neuropsychological structures match key features of his or her external culture. We propose that the Chinese self, which is rooted in a culture of human relatedness under the influence of Confucianism, is a good example of this principle because recent brain imaging studies have found neural evidence that mirrors its cultural root. We also discuss the future direction of research on the neural basis of Chinese self.
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  48. The hypothesis testing brain: Some philosophical applications.Jakob Hohwy - 2010 - Proceedings of the Australian Society for Cognitive Science Conference.
    According to one theory, the brain is a sophisticated hypothesis tester: perception is Bayesian unconscious inference where the brain actively uses predictions to test, and then refine, models about what the causes of its sensory input might be. The brain’s task is simply continually to minimise prediction error. This theory, which is getting increasingly popular, holds great explanatory promise for a number of central areas of research at the intersection of philosophy and cognitive neuroscience. I show how (...)
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  49. Using fMRI in experimental philosophy: Exploring the prospects.Rodrigo Díaz - 2019 - In Eugen Fischer & Mark Curtis (eds.), Methodological Advances in Experimental Philosophy. London: Bloomsbury Press.
    This chapter analyses the prospects of using neuroimaging methods, in particular functional magnetic resonance imaging (fMRI), for philosophical purposes. To do so, it will use two case studies from the field of emotion research: Greene et al. (2001) used fMRI to uncover the mental processes underlying moral intuitions, while Lindquist et al. (2012) used fMRI to inform the debate around the nature of a specific mental process, namely, emotion. These studies illustrate two main approaches in cognitive neuroscience: (...)
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  50. Psychedelics, Meditation, and Self-Consciousness.Raphaël Millière, Robin L. Carhart-Harris, Leor Roseman, Fynn-Mathis Trautwein & Aviva Berkovich-Ohana - 2018 - Frontiers in Psychology 9:375105.
    In recent years, the scientific study of meditation and psychedelic drugs has seen remarkable developments. The increased focus on meditation in cognitive neuroscience has led to a cross-cultural classification of standard meditation styles validated by functional and structural neuroanatomical data. Meanwhile, the renaissance of psychedelic research has shed light on the neurophysiology of altered states of consciousness induced by classical psychedelics, such as psilocybin and LSD, whose effects are mainly mediated by agonism of serotonin receptors. Few attempts (...)
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