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  1. When philosophical nuance matters: safeguarding consciousness research from restrictive assumptions.Marius Usher, Niccolò Negro, Hilla Jacobson & Naotsugu Tsuchiya - 2023 - Frontiers in Psychology 14.
    In this paper, we revisit the debate surrounding the Unfolding Argument (UA) against causal structure theories of consciousness (as well as the hard-criteria research program it prescribes), using it as a platform for discussing theoretical and methodological issues in consciousness research. Causal structure theories assert that consciousness depends on a particular causal structure of the brain. Our claim is that some of the assumptions fueling the UA are not warranted, and therefore we should reject the methodology for consciousness science that (...)
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  • Towards an Affective Quality Space.Laura Silva - 2023 - Journal of Consciousness Studies 30 (7):164-195.
    In this paper I lay the foundations for the construction of an affective quality space. I begin by outlining what quality spaces are, and how they have been constructed for sensory qualities across different perceptual modalities. I then turn to tackle four obstacles that an affective quality space might face that would make an affective quality space unfeasible. After showing these obstacles to be surmountable, I propose a number of conditions and methodological constraints that should be satisfied in attempts to (...)
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  • Confidence in Consciousness Research.Matthias Michel - 2023 - WIREs Cognitive Science 14 (2):e1628.
    To study (un)conscious perception and test hypotheses about consciousness, researchers need procedures for determining whether subjects consciously perceive stimuli or not. This article is an introduction to a family of procedures called ‘confidence-based procedures’, which consist in interpreting metacognitive indicators as indicators of consciousness. I assess the validity and accuracy of these procedures, and answer a series of common objections to their use in consciousness research. I conclude that confidence-based procedures are valid for assessing consciousness, and, in most cases, accurate (...)
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  • The mnemonic basis of subjective experience.Hakwan Lau, Matthias Michel, Joseph LeDoux & Stephen Fleming - 2022 - Nature Reviews Psychology.
    Conscious experiences involve subjective qualities, such as colours, sounds, smells and emotions. In this Perspective, we argue that these subjective qualities can be understood in terms of their similarity to other experiences. This account highlights the role of memory in conscious experience, even for simple percepts. How an experience feels depends on implicit memory of the relationships between different perceptual representations within the brain. With more complex experiences such as emotions, explicit memories are also recruited. We draw inspiration from work (...)
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  • Objective Phenomenology.Andrew Y. Lee - 2024 - Erkenntnis 89 (3):1197–1216.
    This paper examines the idea of "objective phenomenology," or a way of understanding the phenomenal character of conscious experiences that doesn’t require one to have had the kinds of experiences under consideration. My central thesis is that structural facts about experience—facts that characterize purely how conscious experiences are structured—are objective phenomenal facts. I begin by precisifying the idea of objective phenomenology and diagnosing what makes any given phenomenal fact subjective. Then I defend the view that structural facts about experience are (...)
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  • A multidimensional phenomenal space for pain: structure, primitiveness, and utility.Sabrina Coninx - 2021 - Phenomenology and the Cognitive Sciences 21 (1):223-243.
    Pain is often used as the paradigmatic example of a phenomenal kind with a phenomenal quality common and unique to its instantiations. Philosophers have intensely discussed the relation between the subjective feeling, which unites pains and distinguishes them from other experiences, and the phenomenal properties of sensory, affective, and evaluative character along which pains typically vary. At the center of this discussion is the question whether the phenomenal properties prove necessary and/or sufficient for pain. In the empirical literature, sensory, affective, (...)
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  • From the Phenomenology to the Mechanisms of Consciousness: Integrated Information Theory 3.0.Masafumi Oizumi, Larissa Albantakis & Giulio Tononi - 2014 - PLOS Computational Biology 10 (5):e1003588.
    This paper presents Integrated Information Theory of consciousness 3.0, which incorporates several advances over previous formulations. IIT starts from phenomenological axioms: information says that each experience is specific a sh it is what it is by how it differs from alternative experiences; integration says that it is unified a sh irreducible to non-interdependent components; exclusion says that it has unique borders and a particular spatio-temporal grain. These axioms are formalized into postulates that prescribe how physical mechanisms, such as neurons or (...)
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  • Modeling Mental Qualities.Andrew Y. Lee - 2021 - The Philosophical Review 130 (2):263-209.
    Conscious experiences are characterized by mental qualities, such as those involved in seeing red, feeling pain, or smelling cinnamon. The standard framework for modeling mental qualities represents them via points in geometrical spaces, where distances between points inversely correspond to degrees of phenomenal similarity. This paper argues that the standard framework is structurally inadequate and develops a new framework that is more powerful and flexible. The core problem for the standard framework is that it cannot capture precision structure: for example, (...)
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  • Consciousness and topologically structured phenomenal spaces.Robert Prentner - 2019 - Consciousness and Cognition 70:25-38.
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  • Quality-space theory in olfaction.Benjamin D. Young, Andreas Keller & David Rosenthal - 2014 - Frontiers in Psychology 5.
    Quality-space theory (QST) explains the nature of the mental qualities distinctive of perceptual states by appeal to their role in perceiving. QST is typically described in terms of the mental qualities that pertain to color. Here we apply QST to the olfactory modalities. Olfaction is in various respects more complex than vision, and so provides a useful test case for QST. To determine whether QST can deal with the challenges olfaction presents, we show how a quality space (QS) could be (...)
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  • Consciousness and Mental Qualities for Auditory Sensations.Adriana Renero - 2014 - Journal of Consciousness Studies 21 (9-10):179-204.
    The contribution of recent theories of sound and audition has been extremely significant for the development of a philosophy of auditory perception; however, none tackle the question of how our consciousness of auditory states arises. My goal is to show how consciousness about our auditory experience gets triggered. I examine a range of auditory mental phenomena to show how we are able to capture qualitative distinctions of auditory sensations. I argue that our consciousness of auditory states consists in having thoughts (...)
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  • Quality Space Model of Temporal Perception.Michal Klincewicz - 2010 - Lecture Notes in Computer Science 6789 (Multidisciplinary Aspects of Tim):230-245.
    Quality Space Theory is a holistic model of qualitative states. On this view, individual mental qualities are defined by their locations in a space of relations, which reflects a similar space of relations among perceptible properties. This paper offers an extension of Quality Space Theory to temporal perception. Unconscious segmentation of events, the involvement of early sensory areas, and asymmetries of dominance in multi-modal perception of time are presented as evidence for the view.
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  • (2 other versions)How to think about mental qualities.David Rosenthal - 2010 - Philosophical Issues 20 (1):368-393.
    It’s often held that undetectable inversion of mental qualities is, if not possible, at least conceivable. It’s thought to be conceivable that the mental quality your visual states exhibit when you see something red in standard conditions is literally of the same type as the mental quality my visual states exhibit when I see something green in such circumstances. It’s thought, moreover, to be conceivable that such inversion of mental qualities could be wholly undetectable by any third-person means. And since (...)
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  • (1 other version)Studies in the logic of explanation.Carl Gustav Hempel & Paul Oppenheim - 1948 - Philosophy of Science 15 (2):135-175.
    To explain the phenomena in the world of our experience, to answer the question “why?” rather than only the question “what?”, is one of the foremost objectives of all rational inquiry; and especially, scientific research in its various branches strives to go beyond a mere description of its subject matter by providing an explanation of the phenomena it investigates. While there is rather general agreement about this chief objective of science, there exists considerable difference of opinion as to the function (...)
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  • A connectionist theory of phenomenal experience.Jonathan Opie & Gerard O'Brien - 1999 - Behavioral and Brain Sciences 22 (1):127-148.
    When cognitive scientists apply computational theory to the problem of phenomenal consciousness, as many of them have been doing recently, there are two fundamentally distinct approaches available. Either consciousness is to be explained in terms of the nature of the representational vehicles the brain deploys; or it is to be explained in terms of the computational processes defined over these vehicles. We call versions of these two approaches _vehicle_ and _process_ theories of consciousness, respectively. However, while there may be space (...)
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  • The inverted spectrum.Sydney Shoemaker - 1982 - Journal of Philosophy 79 (July):357-381.
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  • Inverted earth.Ned Block - 1990 - Philosophical Perspectives 4:53-79.
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  • The independence of consciousness and sensory quality.David M. Rosenthal - 1991 - Philosophical Issues 1:15-36.
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  • Enriched category as a model of qualia structure based on similarity judgements.Naotsugu Tsuchiya, Steven Phillips & Hayato Saigo - 2022 - Consciousness and Cognition 101 (C):103319.
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  • Reasoning about conscious experience with axiomatic and graphical mathematics.Camilo Miguel Signorelli, Quanlong Wang & Bob Coecke - 2021 - Consciousness and Cognition 95:103168.
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  • Explanation and scientific understanding.Michael Friedman - 1974 - Journal of Philosophy 71 (1):5-19.
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  • Qualia space.Richard P. Stanley - 1999 - Journal of Consciousness Studies 6 (1):49-60.
    We define qualia space Q to be the space of all possible conscious experience. For simplicity we restrict ourselves to perceptual experience only, though other kinds of experience could also be considered. Qualia space is a highly idealized concept that unifies the perceptual experience of all possible brains. We argue that Q is a closed pointed cone in an infinite-dimensional separable real topological vector space. This quite technical structure can be explained for the most part in a simple, intuitive way. (...)
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  • Quality spaces: Mental and physical.Joshua Gert - 2017 - Philosophical Psychology 30 (5):525-544.
    Perceptual-role theories of mental qualities hold that we can discover the nature of a being’s mental qualities by investigating that being’s capacity to make perceptual discriminations. Many advocates of perceptual-role theories hold that the best explanation of these capacities is that mental quality spaces are homomorphic to the spaces of the physical properties that they help to discriminate. This paper disputes this thesis on largely empirical grounds, and offers an alternative. The alternative explains interesting patterns in our perception of color (...)
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  • Measures of Consciousness.Elizabeth Irvine - 2013 - Philosophy Compass 8 (3):285-297.
    Consciousness is now a hot topic in both philosophy and the cognitive sciences, yet there is much controversy over how to measure it. First, it is not clear whether biased subjective reports should be taken as adequate for measuring consciousness, or if more objective measures are required. Ways to benefit from the advantages of both these measures in the form of ‘Type 2’ metacognitive measures are under development, but face criticism. Research into neurophysiological measures of consciousness is potentially very valuable, (...)
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  • (1 other version)What is a mathematical structure of conscious experience?Johannes Kleiner & Tim Ludwig - 2024 - Synthese 203 (3):1-23.
    Several promising approaches have been developed to represent conscious experience in terms of mathematical spaces and structures. What is missing, however, is an explicit definition of what a ‘mathematical structure of conscious experience’ is. Here, we propose such a definition. This definition provides a link between the abstract formal entities of mathematics and the concreta of conscious experience; it complements recent approaches that study quality spaces, qualia spaces, or phenomenal spaces; and it provides a general method to identify and investigate (...)
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  • The Mathematical Structure of Integrated Information Theory.Johannes Kleiner & Sean Tull - 2020 - Frontiers in Applied Mathematics and Statistics 6.
    Integrated Information Theory is one of the leading models of consciousness. It aims to describe both the quality and quantity of the conscious experience of a physical system, such as the brain, in a particular state. In this contribution, we propound the mathematical structure of the theory, separating the essentials from auxiliary formal tools. We provide a definition of a generalized IIT which has IIT 3.0 of Tononi et al., as well as the Quantum IIT introduced by Zanardi et al. (...)
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  • Neurophenomenal Structuralism. A Philosophical Agenda for a Structuralist Neuroscience of Consciousness.Holger Lyre - 2022 - Neuroscience of Consciousness 2022 (1).
    The program of “neurophenomenal structuralism” is presented as an agenda for a genuine structuralist neuroscience of consciousness that seeks to understand specific phenomenal experiences as strictly relational affairs. The paper covers a broad range of topics. It starts from considerations about neural change detection and relational coding that motivate a solution of the Newman problem of the brain in terms of spatiotemporal relations. Next, phenomenal quality spaces and their Q-structures are discussed. Neurophenomenal structuralism proclaims a homomorphic mapping of the structures (...)
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  • Brain states matter. A reply to the unfolding argument.Johannes Kleiner - 2020 - Consciousness and Cognition 85:102981.
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  • The Pauli–Jung Conjecture and Its Relatives: A Formally Augmented Outline.Harald Atmanspacher - 2020 - Open Philosophy 3 (1):527-549.
    The dual-aspect monist conjecture launched by Pauli and Jung in the mid-20th century will be couched in somewhat formal terms to characterize it more concisely than by verbal description alone. After some background material situating the Pauli–Jung conjecture among other conceptual approaches to the mind–matter problem, the main body of this paper outlines its general framework of a basic psychophysically neutral reality with its derivative mental and physical aspects and the nature of the correlations that connect these aspects. Some related (...)
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  • Explanatory generalizations, part I: A counterfactual account.James Woodward & Christopher Hitchcock - 2003 - Noûs 37 (1):1–24.
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  • Explanatory generalizations, part II: Plumbing explanatory depth.Christopher Hitchcock & James Woodward - 2003 - Noûs 37 (2):181–199.
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  • Mathematizing phenomenology.Jeffrey Yoshimi - 2007 - Phenomenology and the Cognitive Sciences 6 (3):271-291.
    Husserl is well known for his critique of the “mathematizing tendencies” of modern science, and is particularly emphatic that mathematics and phenomenology are distinct and in some sense incompatible. But Husserl himself uses mathematical methods in phenomenology. In the first half of the paper I give a detailed analysis of this tension, showing how those Husserlian doctrines which seem to speak against application of mathematics to phenomenology do not in fact do so. In the second half of the paper I (...)
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  • The vagueness constraint and the quality space for pain.Daniel Kostic - 2012 - Philosophical Psychology 25 (6):929-939.
    This paper is concerned with a quality space model as an account of the intelligibility of explanation. I argue that descriptions of causal or functional roles (Chalmers Levine, 2001) are not the only basis for intelligible explanations. If we accept that phenomenal concepts refer directly, not via descriptions of causal or functional roles, then it is difficult to find role fillers for the described causal roles. This constitutes a vagueness constraint on the intelligibility of explanation. Thus, I propose to use (...)
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  • Deductive-Nomological vs. Statistical Explanation.G. Hempel, H. Feigl & G. Marxwell - 1967 - Critica 1 (3):120-127.
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  • Dimensions underlying human understanding of the reachable world.Emilie L. Josephs, Martin N. Hebart & Talia Konkle - 2023 - Cognition 234 (C):105368.
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  • Foundations of multidimensional scaling.Richard Beals, David H. Krantz & Amos Tversky - 1968 - Psychological Review 75 (2):127-142.
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  • Consciousness and the structuring property of typical data.Jonathan W. D. Mason - 2013 - Complexity 18 (3):28-37.
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