Results for 'quantum perception'

975 found
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  1. The Strange Nature of Quantum Perception: To See a Photon, One Must Be a Photon.Steven M. Rosen - 2021 - Journal of Mind and Behavior 42 (3, 4):229-270.
    This paper takes as its point of departure recent research into the possibility that human beings can perceive single photons. In order to appreciate what quantum perception may entail, we first explore several of the leading interpretations of quantum mechanics, then consider an alternative view based on the ontological phenomenology of Maurice Merleau-Ponty and Martin Heidegger. Next, the philosophical analysis is brought into sharper focus by employing a perceptual model, the Necker cube, augmented by the topology of (...)
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  2.  58
    Quantum theory and human perception of the macro-world.Diederik Aerts - 2014 - Frontiers in Psychology 5.
  3. Inner Light Perception as a Quantum Phenomenon-Addressing the Questions of Physical and Critical Realisms, Information and Reduction.Ravi Prakash & Michele Caponigro - unknown
    Subjectivity or the problem of ‘qualia’ tends to make the accessibility and comprehension of psychological events intangible especially for scientific exploration. The issue becomes even more complicated but interesting when one turns towards mystical experiences. Such experiences are different from other psychological phenomena in the sense that they don’t occur to every one, so are difficult to comprehend even for their qualifications of existence. We conducted a qualitative study on one such experience of inner-light perception. This is a common (...)
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  4.  40
    The Heart of an Image: Quantum Superposition and Entanglement in Visual Perception.Jonito Aerts Arguëlles - 2018 - Foundations of Science 23 (4):757-778.
    We analyse the way in which the principle that ‘the whole is greater than the sum of its parts’ manifests itself with phenomena of visual perception. For this investigation we use insights and techniques coming from quantum cognition, and more specifically we are inspired by the correspondence of this principle with the phenomenon of the conjunction effect in human cognition. We identify entities of meaning within artefacts of visual perception and rely on how such entities are modelled (...)
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  5. The Transcendental Role of the Principle of Anticipations of Perception in Quantum Mechanics.Patricia Kauark-Leite - 2009 - In Michel Bitbol, Jean Petitot & Pierre Kerszberg (eds.), CONSTITUTING OBJECTIVITY The Western Ontario Series in Philosophy of Science.
    The aim of this work is to analyse the diffrerences between the formal structure of anticipation of perception in classical and in quantum context. I argue that a transcendental point of view can be supported in quantum context if objectivity is defined by an invariant anticipative structure, which has only a predictive character. The classical objectivity, which defined a set of properties having a descriptive meaning must be abandoned in quantum context. I will focus my analysis (...)
     
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  6.  10
    The Quantum Society: Mind, Physics and a New Social Vision.Danah Zohar & I. N. Marshall - 1994 - William Morrow & Company.
    Draws on analogies beteween quantum reality and the dynamics of self to argue that humans can change their social perceptions, values and behavior.
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  7. QUANTUM RESONANCE WITH THE MIND: A COMPARATIVE ANALYSIS OF BUDDHISM'S EIGHTH CONSCIOUSNESS, QUANTUM HOLOGRAPHY AND JUNG'S COLLECTIVE UNCONSCIOUS.David Leong - manuscript
    This interdisciplinary exploration discusses the intricate conceptual linkages among Buddhism’s Eighth State of Consciousness, Quantum Holography, and the Jungian Collective Unconscious. Central to this study is examining the Eighth Consciousness in Buddhist thought—a realm that transcends the conventional sensory and mental states to connect with a more universal and profound awareness. Drawing parallels, Quantum Holography posits that every part of the universe retains information about the whole, much like a hologram. This notion seemingly mirrors the Jungian concept of (...)
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  8.  79
    Founding Quantum Theory on the Basis of Consciousness.Efstratios Manousakis - 2006 - Foundations of Physics 36 (6):795-838.
    In the present work, quantum theory is founded on the framework of consciousness, in contrast to earlier suggestions that consciousness might be understood starting from quantum theory. The notion of streams of consciousness, usually restricted to conscious beings, is extended to the notion of a Universal/Global stream of conscious flow of ordered events. The streams of conscious events which we experience constitute sub-streams of the Universal stream. Our postulated ontological character of consciousness also consists of an operator which (...)
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  9. Quantum Anthropology: Man, Cultures, and Groups in a Quantum Perspective.Radek Trnka & Radmila Lorencová - 2016 - Charles University Karolinum Press.
    This philosophical anthropology tries to explore the basic categories of man’s being in the worlds using a special quantum meta-ontology that is introduced in the book. Quantum understanding of space and time, consciousness, or empirical/nonempirical reality elicits new questions relating to philosophical concerns such as subjectivity, free will, mind, perception, experience, dialectic, or agency. The authors have developed an inspiring theoretical framework transcending the boundaries of particular disciplines, e.g. quantum philosophy, metaphysics of consciousness, philosophy of mind, (...)
  10. Quantum Mechanical Reality: Entanglement and Decoherence.Avijit Lahiri - manuscript
    We look into the ontology of quantum theory as distinct from that of the classical theory in the sciences. Theories carry with them their own ontology while the metaphysics may remain the same in the background. We follow a broadly Kantian tradition, distinguishing between the noumenal and phenomenal realities where the former is independent of our perception while the latter is assembled from the former by means of fragmentary bits of interpretation. Theories do not tell us how the (...)
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  11. Sensible quantum mechanics: Are probabilities only in the mind?Don N. Page - 1996 - International Journal of Modern Physics D 5:583-96.
    Quantum mechanics may be formulated as Sensible Quantum Mechanics (SQM) so that it contains nothing probabilistic except conscious perceptions. Sets of these perceptions can be deterministically realized with measures given by expectation values of positive-operator-valued awareness operators. Ratios of the measures for these sets of perceptions can be interpreted as frequency- type probabilities for many actually existing sets. These probabilities gener- ally cannot be given by the ordinary quantum “probabilities” for a single set of alternatives. Probabilism, or (...)
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  12. The Quantum Structure of Knowledge.Michel Bitbol - 2011 - Axiomathes 21 (2):357-371.
    This paper analyzes how conflicts of perspective are resolved in the field of the human sciences. Examples of such conflicts are the duality between the actor and spectator standpoints, or the duality of participancy between a form of social life and a socio-anthropological study of it. This type of duality look irreducible, because the conflicting positions express incompatible interests. Yet, the claim of incommensurability is excessive. There exists a level of mental activity at which dialogue and resolution are possible. Reaching (...)
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  13. The Strange Nature of Quantum Entanglement: Can Observers of Entangled Photons Become Entangled With Each Other?Steven M. Rosen - 2023 - Journal of Mind and Behavior 44 (3 and 4):157-170.
    This paper seeks to extend my recent work on quantum perception (Rosen, 2021) to the phenomenon of quantum entanglement. In the first section, I summarize the earlier work, noting how the conventional approach to observing photons is rooted in an objectivist philosophy that serves as an obstacle to probing the underlying quantum reality. In the summary provided, I bring out the intimate relationship between observer and observed in the quantum world, and the need for a (...)
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  14.  78
    A quantum approach to visual consciousness.Nancy J. Woolf & Stuart R. Hameroff - 2001 - Trends in Cognitive Sciences 5 (11):472-478.
    A theoretical approach relying on quantum computation in microtubules within neurons can potentially resolve the enigmatic features of visual consciousness, but raises other questions. For example, how can delicate quantum states, which in the technological realm demand extreme cold and isolation to avoid environmental ‘decoherence’, manage to survive in the warm, wet brain? And if such states could survive within neuronal cell interiors, how could quantum states grow to encompass the whole brain? We present a physiological model (...)
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  15. Exploring Philosophical Implications of Quantum Decoherence.Elise M. Crull - 2013 - Philosophy Compass 8 (9):875-885.
    Quantum decoherence is receiving a great deal of attention today not only in theoretical and experimental physics but also in branches of science as diverse as molecular biology, biochemistry, and even neuropsychology. It is no surprise that it is also beginning to appear in various philosophical debates concerning the fundamental structure of the world. The purpose of this article is primarily to acquaint non-specialists with quantum decoherence and clarify related concepts, and secondly to sketch its possible implications – (...)
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  16.  23
    Perception and Idealism: An Essay on How the World Manifests Itself to Us, and How It (Probably) Is in Itself.Howard Robinson - 2022 - Oxford, GB: Oxford University Press.
    It is a standard feature of modern philosophy, at least from Locke, to tie together the questions of how we perceive the world and what we have reason to think the world is like in itself. This is a natural connection, because the questions of how we perceive it, and what kind of conception of it we can best form on the basis of that mode of perception, are obviously intimately linked. Part I of this volume defends the sense-datum (...)
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  17. Mind, Brain and the Quantum: The Compound "I".Michael Lockwood - 1989 - New York, NY, USA: Oxford University Press.
  18. A quantum physical argument for panpsychism.Shan Gao - 2013 - Journal of Consciousness Studies 20 (1-2):59-70.
    It has been widely thought that consciousness has no causal efficacy in the physical world. However, this may be not the case. In this paper, we show that a conscious being can distinguish definite perceptions and their quantum superpositions, while a physical measuring system without consciousness cannot distinguish such nonorthogonal quantum states. The possible existence of this distinct quantum physical effect of consciousness may have interesting implications for the science of consciousness. In particular, it suggests that consciousness (...)
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  19. Quantum Resonance & Consciousness.Contzen Pereira - 2015 - Journal of Metaphysics and Connected Consciousness 2.
    Resonance can trigger of a series of quantum events and therefore induce several changes related to consciousness at micro as well as macro level within a living system. Therapeutic effects have been observed in several religious meditative and healing practices, which use resonance in the form of chanting and prayers. A living system may have many resonant frequencies due to their degrees of freedom, where each can vibrate as a harmonic oscillator supporting the progression of vibrations as waves that (...)
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  20.  25
    Mind, quantum, and free will: the birth of physics in the sensuous cosmos.Peter Ells - 2022 - Alresford, Hampshire: Collective Ink.
    The mind-body problem is the ultimate intractable enigma. How can we - being complex physical systems - have multicoloured experiences, and make conscious choices? This book proposes that all fundamental constituents of the universe are agents, which perceive one another, and freely act according to their percepts. Contemporary science can be explained in entirely mentalistic terms. This is consistent with many interpretations of quantum mechanics, such as GRW and Roger Penrose’s OR theory.
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  21. Making quantum theory compatible with realism.GianCarlo Ghirardi - 2002 - Foundations of Science 7 (1-2):11-47.
    After a brief account of theway quantum theory deals with naturalprocesses, the crucial problem that such atheory meets, the measurement or, better, themacro-objectification problem is discussed.The embarrassing aspects of the occurrence ofentangled states involving macroscopic systemsare analyzed in details. The famous example ofSchroedinger's cat is presented and it ispointed out how the combined interplay of thesuperposition principle and the ensuingentanglement raises some serious difficultiesin working out a satisfactory quantum worldview, agreeing with our definiteperceptions. The orthodox solution to themacro-objectification (...)
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  22.  87
    Quantum mechanical coherence, resonance, and mind.Henry P. Stapp - unknown
    Norbert Wiener and J.B.S. Haldane suggested during the early thirties that the profound changes in our conception of matter entailed by quantum theory opens the way for our thoughts, and other experiential or mind-like qualities, to play a role in nature that is causally interactive and effective, rather than purely epiphenomenal, as required by classical mechanics. The mathematical basis of this suggestion is described here, and it is then shown how, by giving mind this efficacious role in natural process, (...)
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  23. A Quantum Theory of Felt Duration.Carla Merino-Rajme - 2014 - Analytic Philosophy 55 (3):239-275.
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  24.  14
    Relative Quantum Time.Leon Loveridge & Takayuki Miyadera - 2019 - Foundations of Physics 49 (6):549-560.
    The need for a time-shift invariant formulation of quantum theory arises from fundamental symmetry principles as well as heuristic cosmological considerations. Such a description then leaves open the question of how to reconcile global invariance with the perception of change, locally. By introducing relative time observables, we are able to make rigorous the Page–Wootters conditional probability formalism to show how local Heisenberg evolution is compatible with global invariance.
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  25.  73
    Bergson, perception and Gibson.Stephen E. Robbins - 2000 - Journal of Consciousness Studies 7 (5):23-45.
    Bergson's 1896 theory of perception/memory assumed a framework anticipating the quantum revolution in physics, the still unrealized implications of this framework contributing to the large neglect of Bergson today. The basics of his model are explored, including the physical concepts he advanced before the crisis in classical physics, his concept of perception as ‘virtual action’ with its relativistic implications, and his unique explication of the subject/object relationship. All form the basis for his solution to the ‘hard’ problem. (...)
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  26.  70
    Pluralism and anarchism in quantum physics: Paul Feyerabend's writings on quantum physics in relation to his general philosophy of science.Marij van Strien - 2020 - Studies in History and Philosophy of Science Part A 80:72-81.
    This paper aims to show that the development of Feyerabend’s philosophical ideas in the 1950s and 1960s largely took place in the context of debates on quantum mechanics. In particular, he developed his influential arguments for pluralism in science in discussions with the quantum physicist David Bohm, who had developed an alternative approach to quantum physics which (in Feyerabend’s perception) was met with a dogmatic dismissal by some of the leading quantum physicists. I argue that (...)
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  27. Composite Time Concept for Quantum Mechanics and Bio-Psychology.Franz Klaus Jansen - 2018 - Philosophy Study 8 (2):49-66.
    Time has multiple aspects and is difficult to define as one unique entity, which therefore led to multiple interpretations in physics and philosophy. However, if the perception of time is considered as a composite time concept, it can be decomposed into basic invariable components for the perception of progressive and support-fixed time and into secondary components with possible association to unit-defined time or tense. Progressive time corresponds to Bergson’s definition of duration without boundaries, which cannot be divided for (...)
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  28.  23
    Narratives of quantum theory in the age of quantum technologies.Alexei Grinbaum - 2017 - Ethics and Information Technology 19 (4):295-306.
    Quantum technologies can be presented to the public with or without introducing a strange trait of quantum theory responsible for their non-classical efficiency. Traditionally the message was centered on the superposition principle, while entanglement and properties such as contextuality have been gaining ground recently. A less theoretical approach is focused on simple protocols that enable technological applications. It results in a pragmatic narrative built with the help of the resource paradigm and principle-based reconstructions. I discuss the advantages and (...)
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  29.  58
    Quantum Meaning.Richard Healey - 2014 - The Harvard Review of Philosophy 20:45-61.
    On a pragmatist view of quantum theory, a quantum state has the role of advising physically situated agents rather than representing the condition of physical systems. The advice concerns the cognitive significance of a magnitude claim S: σ has, locating the value of magnitude Q on system σ in set Δ of real numbers. The quantum state offers advice both on the content of a magnitude claim S and on its credibility, provided it has enough content. The (...)
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  30.  50
    Reality in quantum mechanics.Henry Margenau - 1949 - Philosophy of Science 16 (4):287-302.
    The philosophy of quantum mechanics has often been conceived by physicists as a collection of dogmas concerning what can be measured, observed and known. To this branch of dialectics the present paper does not attempt to contribute, chiefly because it is written from the conviction that no part of science, nor any philosophy, can safely predict what may be feasible or knowable. Rather, this brief essay endeavors to expose the epistemology of quantum physics in a way which allows (...)
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  31. Non-Local Correlations in Therapeutic Settings? A Qualitative Study on the Basis of Weak Quantum Theory and the Model of Pragmatic Information.Anja Matschuck - 2011 - Axiomathes 21 (2):249-261.
    Weak Quantum Theory (WQT) and the Model of Pragmatic Information (MPI) are two psychophysical concepts developed on the basis of quantum physics. The present study contributes to their empirical examination. The issue of the study is whether WQT and MPI can not only explain ‘psi’-phenomena theoretically but also prove to be consistent with the empirical phenomenology of extrasensory perception (ESP). From the main statements of both models, 33 deductions for psychic readings are derived. Psychic readings are defined (...)
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  32. The gestalt problem in quantum theory: Generation of molecular shape by the environment. [REVIEW]Anton Amann - 1993 - Synthese 97 (1):125 - 156.
    Quantum systems have a holistic structure, which implies that they cannot be divided into parts. In order tocreate (sub)objects like individual substances, molecules, nuclei, etc., in a universal whole, the Einstein-Podolsky-Rosen correlations between all the subentities, e.g. all the molecules in a substance, must be suppressed by perceptual and mental processes.Here the particular problems ofGestalt (shape)perception are compared with the attempts toattribute a shape to a quantum mechanical system like a molecule. Gestalt perception and quantum (...)
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  33.  87
    Contexts, Systems and Modalities: A New Ontology for Quantum Mechanics.Alexia Auffèves & Philippe Grangier - 2016 - Foundations of Physics 46 (2):121-137.
    In this article we present a possible way to make usual quantum mechanics fully compatible with physical realism, defined as the statement that the goal of physics is to study entities of the natural world, existing independently from any particular observer’s perception, and obeying universal and intelligible rules. Rather than elaborating on the quantum formalism itself, we propose a new quantum ontology, where physical properties are attributed jointly to the system, and to the context in which (...)
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  34.  98
    Spacetime quantum probabilities, relativized descriptions, and popperian propensities. Part I: Spacetime quantum probabilities. [REVIEW]Mioara Mugur-Schächter - 1991 - Foundations of Physics 21 (12):1387-1449.
    An integrated view concerning the probabilistic organization of quantum mechanics is obtained by systematic confrontation of the Kolmogorov formulation of the abstract theory of probabilities, with the quantum mechanical representationand its factual counterparts. Because these factual counterparts possess a peculiar spacetime structure stemming from the operations by which the observer produces the studied states (operations of state preparation) and the qualifications of these (operations of measurement), the approach brings forth “probability trees,” complex constructs with treelike spacetime support.Though it (...)
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  35.  63
    Love-in-idleness: Quantum entanglement dreamscapes.Clarissa Ribeiro & Milena Szafir - 2012 - Technoetic Arts 9 (2-3):293-300.
    Despite the entangled universe cannot be considered merely as an enormously complex system, as it is reactive to actions and observations, references on quantum entanglement in living systems may help find ways in which quantum effects can move from the microscopic to the macroscopic, in realms where the mind/brain behave as a quantum object and is sensitive to the dynamic state of the entire universe. Taking up vision from a synaesthetic perspective as a perfusion of senses, and (...)
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  36. Biological utilization of quantum nonlocality.Brian D. Josephson & Fotini Pallikari-Viras - 1991 - Foundations of Physics 21 (2):197-207.
    The perception of reality by biosystems is based on different, and in certain respects more effective, principles than those utilized by the more formal procedures of science. As a result, what appears as random pattern to the scientific method can be meaningful pattern to a living organism. The existence of this complementary perception of reality makes possible in principle effective use by organisms of the direct interconnections between spatially separated objects shown to exist in the work of J. (...)
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  37. A Model of the Quantum-Classical and Mind-Brain Connections, and of the Role of The Quantum Zeno Effect in the Physical Implementation of Conscious Intent.Henry P. Stapp - unknown
    A simple exactly solvable model is given of the dynamical coupling between a person’s classically described perceptions and that person’s quantum mechanically described brain. The model is based jointly upon von Neumann’s theory of measurements and the empirical findings of close connections between conscious intentions and synchronous oscillations in well separated parts of the brain. A quantum-Zeno-effect-based mechanism is described that allows conscious intentions to influence brain activity in a functionally appropriate way. The robustness of this mechanism in (...)
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  38. Complementarity in bistable perception.Harald Atmanspacher - unknown
    The idea of complementarity already appears in William James’ (1890a, p. 206) Principles of Psychology in the chapter on “the relations of minds to other things”. Later, in 1927, Niels Bohr introduced complementarity as a fundamental concept in quantum mechanics. It refers to properties (observables) that a system cannot have simultaneously, and which cannot be simultaneously measured with arbitrarily high accuracy. Yet, in the context of classical physics they would both be needed for an exhaustive description of the system.
     
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  39.  31
    Mental, behavioural and physiological nonlocal correlations within the Generalized Quantum Theory framework.Harald Walach, Patrizio Tressoldi & Luciano Pederzoli - 2016 - Axiomathes 26 (3):313-328.
    Generalized Quantum Theory seeks to explain and predict quantum-like phenomena in areas usually outside the scope of quantum physics, such as biology and psychology. It draws on fundamental theories and uses the algebraic formalism of quantum theory that is used in the study of observable physical matter such as photons, electrons, etc. In contrast to quantum theory proper, GQT is a very generalized form that does not allow for the full application of formalism. For instance (...)
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  40. Visual search and quantum mechanics: a neuropsychological basis of Kant's creative imagination.Uri Fidelman - 2005 - Journal of Mind and Behavior 26 (1-2):23-33.
    This study analyzes the triple relation between cognitive biological psychology, philosophy and quantum mechanics. It discusses the findings of Treisman according to which there exists a pre-conscious cerebral mechanism that manipulates the sensory input and transfers it to our consciousness only after correcting it to suit our logic and expectations. This experimental finding was predicted two centuries ago by Kant. It is observed that during the primary pre-conscious level of perception the macroscopic physical world is not perceived as (...)
     
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  41.  65
    Epistemic Primacy vs. Ontological Elusiveness of Spatial Extension: Is There an Evolutionary Role for the Quantum?Massimo Pauri - 2011 - Foundations of Physics 41 (11):1677-1702.
    A critical re-examination of the history of the concepts of space (including spacetime of general relativity and relativistic quantum field theory) reveals a basic ontological elusiveness of spatial extension, while, at the same time, highlighting the fact that its epistemic primacy seems to be unavoidably imposed on us (as stated by A.Einstein “giving up the extensional continuum … is like to breathe in airless space”). On the other hand, Planck’s discovery of the atomization of action leads to the fundamental (...)
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  42. The Expressional Limits of Formal Language in the Notion of Quantum Observation.Stathis Livadas - 2012 - Axiomathes 22 (1):147-169.
    In this article I deal with the notion of observation, from a phenomenologically motivated point of view, and its representation mainly by means of the formal language of quantum mechanics. In doing so, I have taken the notion of observation in two diverse contexts. In one context as a notion related with objects of a logical-mathematical theory taken as registered facts of phenomenological perception ( Wahrnehmung ) inasmuch as this phenomenological idea can also be linked with a process (...)
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  43. Time, consciousness, and quantum events in fundamental space-time geometry.Stuart R. Hameroff - 2003 - In R. Buccheri (ed.), The Nature of Time: Geometry, Physics and Perception. pp. 77-89.
    1. Introduction: The problems of time and consciousness What is time? St. Augustine remarked that when no one asked him, he knew what time was; however when someone asked him, he did not. Is time a process which flows? Is time a dimension in which processes occur? Does time actually exist? The notion that time is a process which "flows" directionally may be illusory (the "myth of passage") for if time did flow it would do so in some medium or (...)
     
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  44. Cognitive Time Scales in a Necker-Zeno Model for Bistable Perception.H. Atmanspacher - 2008 - Open Cybernetics and Systemics Journal:234-251.
    1 – Institute for Frontier Areas of Psychology and Mental Health, Wilhelmstr. 3a, 79098 Freiburg, Germany 2 – Parmenides Center, Via Mellini 26-28, 57031 Capoliveri, Italy 3 – Department of Ophtalmology, University of Freiburg, Killianstr. 5, 79106 Freiburg, Germany 4 – Institute of Physics, University of Freiburg, Hermann- Herder -Str. 3, 79104 Freiburg, GermanyThe “Necker-Zeno model”, a model for bistable perception inspired by the quantum Zeno effect, was previously used to relate three basic time scales of cognitive relevance (...)
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  45. Chaotic neuron dynamics, synchronization, and feature binding: Quantum aspects.F. Tito Arecchi - 2003 - Mind and Matter 1 (1):15-43.
    A central issue of cognitive neuroscience is to understand how a large collection of coupled neurons combines external signals with internal memories into new coherent patterns of meaning. An external stimulus localized at some input spreads over a large assembly of coupled neurons, building up a collective state univocally corresponding to the stimulus. Thus, the synchronization of spike trains of many individual neurons is the basis of a coherent perception. Based on recent investigations of homoclinic chaotic systems and their (...)
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  46. Chaotic Neuron Dynamics, Synchronization, and Feature Binding: Quantum Aspects.Tito Arecchi - 2003 - Mind and Matter 1 (1):15-43.
    A central issue of cognitive neuroscience is to understand how a large collection of coupled neurons combines external signals with internal memories into new coherent patterns of meaning. An external stimulus localized at some input spreads over a large assembly of coupled neurons, building up a collective state univocally corresponding to the stimulus. Thus, the synchronization of spike trains of many individual neurons is the basis of a coherent perception. Based on recent investigations of homoclinic chaotic systems and their (...)
     
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  47.  50
    Self, cognition, qualia, and world in quantum brain dynamics.Gordon G. Globus - 1998 - Journal of Consciousness Studies 5 (1):34-52.
    If the brain has a level of quantum functioning that permits superposition of possibilities and nonlocal control of states, then new answers to the problem of the consciousness/brain relation become available. My discussion is based on Yasue and co-workers’ account of a quantum field theory of brain functioning, called ‘quantum brain dynamics’. In the framework developed each person can properly state: ‘I am nonlocal control and my meanings are control variables.’ Cognition is identified with a conjugate reality (...)
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  48. From Mind to Matter: How Bergson Anticipated Quantum Ideas.Joël Dolbeault - 2012 - Mind and Matter 10 (1):25-45.
    In his book Matter and Memory of 1896, Bergson anticipated the quantum conception of matter: the idea that particles have a holistic nature, that matter is not substantial, that the movement and the position of a body cannot be determined simultaneously, and that physical processes do not obey a strict necessity. Surprisingly, he drew these conclusions from a reflection about the relation between mind and matter, in particular from his idea that perception is a relative coincidence of mind (...)
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  49.  83
    Conventions in Relativity Theory and Quantum Mechanics.Svozil Karl - 2002 - Foundations of Physics 32 (4):479-502.
    The conventionalistic aspects of physical world perception are reviewed with an emphasis on the constancy of the speed of light in relativity theory and the irreversibility of measurements in quantum mechanics. An appendix contains a complete proof of Alexandrov's theorem using mainly methods of affine geometry.
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  50.  30
    Cpu Or Self-reference: Discerning Between Cognitive Science and Quantum Functionalist Models of Mentation.Kim Mccarthy & Amit Goswami - 1993 - Journal of Mind and Behavior 14 (1):13-26.
    The quantum functionalist model of mentation provides an explanation of conscious and unconscious perception without the postulation of a central processing unit . Based on Goswami's idealist interpretation of quantum mechanics, the quantum model posits a dual quantum/classical system for the mind-brain with which consciousness is linked via self-reference. A comparative analysis of word-sense disambiguation data is conducted with a cognitive science model derived from the Posner and Snyder facilitation and inhibition and the Rummelhart, McClelland, (...)
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