Results for 'Quantum measurement, Quantum neuroscience, Physical Effects of Conscious Effort'

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  1.  21
    Mind, Brain, and Neuroscience.Henry P. Stapp - 2014 - Cosmos and History 10 (1):227-231.
    Quantum mechanics as conceived by Niels Bohr and formulated in rigorous terms by John von Neumann is expressed as quantum neuroscience: a description of the relationship between certain conscious experiences of an observer that are described in terms of the concepts of classical physics and neural processes that are described in terms of the concepts of quantum physics. The theory is applied to recent neuroscience data to determine the rapidity of the observer's probing actions that is (...)
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  2. 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 (...)
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  3.  56
    Quantum information in neural systems.Danko D. Georgiev - 2021 - Symmetry 13 (5):773.
    Identifying the physiological processes in the central nervous system that underlie our conscious experiences has been at the forefront of cognitive neuroscience. While the principles of classical physics were long found to be unaccommodating for a causally effective consciousness, the inherent indeterminism of quantum physics, together with its characteristic dichotomy between quantum states and quantum observables, provides a fertile ground for the physical modeling of consciousness. Here, we utilize the Schrödinger equation, together with the Planck-Einstein (...)
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  4. Quantum Theories of Consciousness.Paavo Pylkkänen - 2018 - In Rocco J. Gennaro (ed.), Routledge Handbook of Consciousness. New York: Routledge. pp. 216-231.
    This paper provides a brief introduction to quantum theory and the proceeds to discuss the different ways in which the relationship between quantum theory and mind/consciousness is seen in some of the main alternative interpretations of quantum theory namely by Bohr; von Neumann; Penrose: Everett; and Bohm and Hiley. It briefly considers how qualia might be explained in a quantum framework, and makes a connection to research on quantum biology, quantum cognition and quantum (...)
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  5. Quantum mechanical theories of consciousness.Henry P. Stapp - 2007 - In Max Velmans & Susan Schneider (eds.), The Blackwell Companion to Consciousness. New York: Wiley-Blackwell. pp. 300--312.
    Quantum mechanical theories of consciousness are contrasted to classical ones. A key difference is that the quantum laws are fundamentally psychophysical and provide an explanation of the causal effect of conscious effort on neural processes, while the laws of classical physics, being purely physical, cannot. The quantum approach provides causal explanations, deduced from the laws of physics, of correlations found in psychology and in neuropsychology.
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  6. A quantum theory of consciousness.Shan Gao - 2007 - Minds and Machines 18 (1):39-52.
    The relationship between quantum collapse and consciousness is reconsidered under the assumption that quantum collapse is an objective dynamical process. We argue that the conscious observer can have a distinct role from the physical measuring device during the process of quantum collapse owing to the intrinsic nature of consciousness; the conscious observer can know whether he is in a definite state or a quantum superposition of definite states, while the physical measuring device (...)
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  7.  71
    A quantum state model of consciousness.W. L. Miranker - 2002 - Journal of Consciousness Studies 9 (3):3-14.
    We introduce a quantum state representation of the information being processed in neuronal structures. The movement of information from one such structure to a second is characterized as a measurement of the first structure by the second. The value of such a measurement is an observable property of matter. The associated collapsed quantum state, a dual encoding of that measurement, is a non-observable property of matter. The quantum measurement collapse process itself is shown to be a form (...)
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  8.  16
    The Neurology of Consciousness: Cognitive Neuroscience and Neuropathology edited by Steven Laureys and Giulio Tononi.Edward F. Kelly - 2012 - Journal of Scientific Exploration 26 (3).
    This information-packed volume, without doubt a landmark event in the developing neuroscientific study of consciousness, deserves the attention of anyone interested in this subject. It is a sequel and companion to an earlier collection, The Boundaries of Consciousness: Neurobiology and Neuropathology, also edited by Steven Laureys (2005), which contains the proceedings of a 2004 conference sponsored by the Association for the Scientific Study of Consciousness (ASSC). Published initially as a special issue of Progress in Brain Research (volume 150), Boundaries has (...)
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  9. Between Physics and Metaphysics: A Discussion of the Status of Mind in Quantum Mechanics.Raoni Arroyo & Jonas Arenhart - 2019 - In J. Acacio de Barros & Carlos Montemayor (eds.), Quanta and Mind: Essays on the Connection Between Quantum Mechanics and Consciousness. Springer Verlag. pp. 31-42.
    We discuss the ‘Consciousness Causes Collapse Hypothesis’ (CCCH), the interpretation of quantum mechanics according to which consciousness solves the measurement problem. At first, it seems that the very hypothesis that consciousness causally acts over matter counts as a reductio of CCCH. However, CCCH won’t go so easily. In this paper we attempt to bring new light to the discussion. We distinguish the ontology of the interpretation (the positing of a causally efficacious consciousness as part of the furniture of reality) (...)
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  10. Evidence of Macroscopic Quantum Phenomena and Conscious Reality Selection.Cynthia Sue Larson - 2014 - Cosmos and History 10 (1):34-47.
    The purpose of this paper is to present an overview of emergent examples of macroscopic quantum phenomena. While quantum theory asserts that such quantum behaviors as superposition, entanglement, and coherence are possible for all objects, assumptions that quantum processes operate exclusively within the quantum realm have contributed to on-going bias toward presumed primacy of classical physics in the macroscopic realm. Non-trivial quantum macroscopic effects are now recognized in the fields of biology, quantum (...)
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  11. Quantum physics in neuroscience and psychology: a neurophysical model of mind–brain interaction.Jeffrey M. Schwartz, Henry P. Stapp & Mario Beauregard - 2005 - Philosophical Transactions of the Royal Society B 360:1309-1327.
    Neuropsychological research on the neural basis of behaviour generally posits that brain mechanisms will ultimately suffice to explain all psychologically described phenomena. This assumption stems from the idea that the brain is made up entirely of material particles and fields, and that all causal mechanisms relevant to neuroscience can therefore be formulated solely in terms of properties of these elements. Thus, terms having intrinsic mentalistic and/or experiential content (e.g. ‘feeling’, ‘knowing’ and ‘effort’) are not included as primary causal factors. (...)
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  12. The action of consciousness and the uncertainty principle.Jean E. Burns - 2012 - Journal of Nonlocality 1 (1).
    The term action of consciousness is used to refer to an influence, such as psychokinesis or free will, that produces an effect on matter that is correlated to mental intention, but not completely determined by physical conditions. Such an action could not conserve energy. But in that case, one wonders why, when highly accurate measurements are done, occasions of non-conserved energy (generated perhaps by unconscious PK) are not detected. A possible explanation is that actions of consciousness take place within (...)
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  13.  25
    The Role of Quantum Mechanics in Understanding the Phenomenon of Consciousness.Igor V. Cherepanov & Черепанов Игорь Владимирович - 2022 - RUDN Journal of Philosophy 26 (4):770-789.
    The article analyzes the effectiveness of quantum theories of mental experience in relation to two ontological problems - the problem of the existence of consciousness in the material world and the problem of the interaction of consciousness and body. A critical analysis of the quantum theories of consciousness by Penrose-Hameroff, M. Tegmark, G. Stapp, M. Fischer and M.B. Mensky shows that they fail to fully explain how complex physical systems generate mental experience without violating the principle of (...)
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  14. Orchestrated objective reduction of quantum coherence in brain microtubules: The "orch OR" model for consciousness.Roger Penrose & Stuart Hameroff - 1996 - Mathematics and Computers in Simulation 40:453-480.
    Features of consciousness difficult to understand in terms of conventional neuroscience have evoked application of quantum theory, which describes the fundamental behavior of matter and energy. In this paper we propose that aspects of quantum theory (e.g. quantum coherence) and of a newly proposed physical phenomenon of quantum wave function "self-collapse"(objective reduction: OR -Penrose, 1994) are essential for consciousness, and occur in cytoskeletal microtubules and other structures within each of the brain's neurons. The particular characteristics (...)
     
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  15.  50
    Can Quantum Physics Help Solve the Hard Problem of Consciousness?C. Simon - 2019 - Journal of Consciousness Studies 26 (5-6):204-218.
    The hard problem of consciousness is the question how subjective experience arises from brain matter. I suggest that quantum physics may be part of the answer. The simultaneous unity and complexity of subjective experience is very difficult to understand from a classical physics perspective. In contrast, quantum entanglement is naturally both complex and holistic. Building on recent remarkable progress in quantum technology and neuroscience, I propose a concrete hypothesis as a basis for further investigation, namely that subjective (...)
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  16. Quantum physics in neuroscience and psychology: A neurophysical model of mind €“brain interaction.Henry P. Stapp - 2005 - Philosophical Transactions-Royal Society of London. Biological Sciences 360 (1458):1309-1327.
    Neuropsychological research on the neural basis of behaviour generally posits that brain mechanisms will ultimately suffice to explain all psychologically described phenomena. This assumption stems from the idea that the brain is made up entirely of material particles and fields, and that all causal mechanisms relevant to neuroscience can therefore be formulated solely in terms of properties of these elements. Thus, terms having intrinsic mentalistic and/or experiential content (e.g. ‘feeling’, ‘knowing’ and ‘effort’) are not included as primary causal factors. (...)
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  17.  68
    Consciousness and Quantum Mechanics.Shan Gao (ed.) - 2022 - Oxford University Press, Usa.
    Consciousness and quantum mechanics are two great mysteries of our time--and recently scholars have postulated a deeper connection between them. Exploring this possible connection can be fruitful: an analysis of the conscious mind and psychophysical connection can be indispensable in understanding quantum mechanics and solving the notorious measurement problem, and there is also likely some kind of intimate connection between quantum mechanics--the most fundamental theory of the physical world--and our efforts to explain, naturalistically, the phenomenon (...)
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  18.  11
    The Effect of Perceived Effort on Reward Valuation: Taking the Reward Positivity (RewP) to Dissonance Theory.Eddie Harmon-Jones, Daniel Clarke, Katharina Paul & Cindy Harmon-Jones - 2020 - Frontiers in Human Neuroscience 14:515788.
    The present research was designed to test whether the subjective experience of more effort related to more reward valuation as measured by a neural response. This prediction was derived from the theory of cognitive dissonance and its effort justification paradigm. Young adult participants (n = 82) engaged in multiple trails of a low or high effort task that resulted in a loss or reward on each trial. Neural responses to the reward (loss) cue were measured using EEG, (...)
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  19. Relativistic Implications for Physical Copies of Conscious States.Andrew Knight - manuscript
    The possibility of algorithmic consciousness depends on the assumption that conscious states can be copied or repeated by sufficiently duplicating their underlying physical states, leading to a variety of paradoxes, including the problems of duplication, teleportation, simulation, self-location, the Boltzmann brain, and Wigner’s Friend. In an effort to further elucidate the physical nature of consciousness, I challenge these assumptions by analyzing the implications of special relativity on evolutions of identical copies of a mental state, particularly the (...)
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  20. Quantum Theory and the Role of Mind in Nature.Henry P. Stapp - 2001 - Foundations of Physics 31 (10):1465-1499.
    Orthodox Copenhagen quantum theory renounces the quest to understand the reality in which we are imbedded, and settles for practical rules describing connections between our observations. Many physicist have regarded this renunciation of our effort describe nature herself as premature, and John von Neumann reformulated quantum theory as a theory of an evolving objective universe interacting with human consciousness. This interaction is associated both in Copenhagen quantum theory and in von Neumann quantum theory with a (...)
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  21. 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, (...)
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  22.  34
    Quantum Measures on Finite Effect Algebras with the Riesz Decomposition Properties.Aili Yang & Yongjian Xie - 2014 - Foundations of Physics 44 (10):1009-1037.
    One kind of generalized measures called quantum measures on finite effect algebras, which fulfil the grade-2 additive sum rule, is considered. One basis of vector space of quantum measures on a finite effect algebra with the Riesz decomposition property (RDP for short) is given. It is proved that any diagonally positive symmetric signed measure \(\lambda \) on the tensor product \(E\otimes E\) can determine a quantum measure \(\mu \) on a finite effect algebra \(E\) with the RDP (...)
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  23.  60
    The Physical Nature of Consciousness.P. Van Loocke (ed.) - 2001 - John Benjamins.
    Stuart Hameroff opens with an extended and updated exposition of the Penrose/Hameroff Orch-OR model, and subsequently addresses recent criticisms of quantum approaches to the brain. Evan Walker presents his view on consciousness from the perspective of a new approach to the integration of quantum theory and relativity. Friedrich Beck elaborates on the Beck/Eccles quantum approach to consciousness. Karl Pribram puts the holographic view on consciousness in perspective of his life long work. Peter Marcer and Edgar Mitchell explain (...)
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  24. Quantum theory and the relation between the conscious mind and the physical world.Euan J. Squires - 1993 - Synthese 97 (1):109-23.
    The measurement problem of quantum theory is discussed, and the difficulty of trying to solve it within the confines of a local, Lorentz-invariant physics is emphasised. This leads to the obvious suggestion to seek a solution beyond physics, in particular, by introducing the concept of consciousness. The resulting dualistic model, in the natural form suggested by quantum theory, is shown to differ in several respects from the classical model of Descartes, and to suggest solutions to some of the (...)
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  25. Zeno Goes to Copenhagen: A Dilemma for Measurement-Collapse Interpretations of Quantum Mechanics.David J. Chalmers & Kelvin J. McQueen - 2023 - In M. C. Kafatos, D. Banerji & D. C. Struppa (eds.), Quantum and Consciousness Revisited. DK Publisher.
    A familiar interpretation of quantum mechanics (one of a number of views sometimes labeled the "Copenhagen interpretation'"), takes its empirical apparatus at face value, holding that the quantum wave function evolves by the Schrödinger equation except on certain occasions of measurement, when it collapses into a new state according to the Born rule. This interpretation is widely rejected, primarily because it faces the measurement problem: "measurement" is too imprecise for use in a fundamental physical theory. We argue (...)
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  26. A critical review of Wigner's work on the conceptual foundations of quantum theory.Hans Primas & Michael Esfeld - unknown
    Review of "The Collected Works of Eugene Paul Wigner", Volume I, III, and VI. Excerpt from the Conclusions: Many of Wigner’s papers on mathematical physics are great classics. Most famous is his work on group representations which is of lasting value for a proper mathematical foundation of quantum theory. The modern development of quantum theory (which is not reflected in Wigner’s work) is in an essential way a representation theory (e.g. representations of kinematical groups, or representations of C*-algebras). (...)
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  27.  44
    Tranquillity's Secret.James M. Corrigan - 2023 - Medium.
    Tranquillity’s Secret Presents A New Understanding Of The World And Ourselves, And A Forgotten Meditation Technique That Protects You From Traumatic Harm. There Is A Way Of Seeing The World Different. -/- My goal in this book is two-fold: to introduce a revolutionary paradigm for understanding ourselves and the world; and to explain an ancient meditation technique that brought me to the insights upon which it is founded. This technique appears in different forms in the extant spiritual and religious traditions (...)
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  28.  18
    What if consciousness is not an emergent property of the brain? Observational and empirical challenges to materialistic models.Helané Wahbeh, Dean Radin, Cedric Cannard & Arnaud Delorme - 2022 - Frontiers in Psychology 13.
    The nature of consciousness is considered one of science’s most perplexing and persistent mysteries. We all know the subjective experience of consciousness, but where does it arise? What is its purpose? What are its full capacities? The assumption within today’s neuroscience is that all aspects of consciousness arise solely from interactions among neurons in the brain. However, the origin and mechanisms of qualia are not understood. David Chalmers coined the term “the hard problem” to describe the difficulties in elucidating the (...)
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  29. A phenomenological solution to the measurement problem? Husserl and the foundations of quantum mechanics.Steven French - 2002 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 33 (3):467-491.
    The London and Bauer monograph occupies a central place in the debate concerning the quantum measurement problem. Gavroglu has previously noted the influence of Husserlian phenomenology on London's scientific work. However, he has not explored the full extent of this influence in the monograph itself. I begin this paper by outlining the important role played by the monograph in the debate. In effect, it acted as a kind of 'lens' through which the standard, or Copenhagen, 'solution' to the measurement (...)
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  30. Why quantum correlates of consciousness are fine, but not enough.Ruediger Vaas - 2001 - Informacao E Cognicao 3 (1):64-107.
    The existence of quantum correlates of consciousness (QCC) is doubtful from a scientific perspective. But even if their existence were verified, philosophical problems would remain. On the other hand, there could be more to QCC than meets the sceptic's eye: • QCC might be useful or even necessary for a better understanding of conscious experience or quantum physics or both. The main reasons for this are: the measurement problem (the nature of observation, the mysterious collapse of the (...)
     
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  31. Characteristics of consciousness in collapse-type quantum mind theories.Imants Baruss - 2008 - Journal of Mind and Behavior 29 (3):257-267.
    The purpose of this paper is to look at some of the apparent characteristics of consciousness in theories in which consciousness is said to play a role in the collapse of the state vector. In particular, these reflections are based primarily on the work of three theorists: Amit Goswami, Henry Stapp, and Evan Harris Walker. Upon looking at such theories, three characteristics of consciousness become apparent. The first is a volitional aspect of the mind that needs to be distinguished from (...)
     
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  32.  70
    Quantum measurement and the program for the unity of science.David C. Scharf - 1989 - Philosophy of Science 56 (4):601-623.
    It is quite extraordinary, philosophically speaking, that according to the orthodox interpretation: (a) quantum mechanics is a complete and comprehensive theory of microphysics, and yet (b) the role of measurement, in quantum mechanics, cannot be analyzed in terms of the collective effects of the microphysical particles making up the apparatus. It follows that, if the orthodox interpretation is correct, the measurement apparatus and its quantum physical effects cannot be accounted for microreductively. This is significant (...)
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  33.  80
    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 (...)
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  34.  21
    Question of Consciousness: to Quantum Mechanics for the Answers.Ivan A. Karpenko - 2014 - Studia Humana 3 (3):16-28.
    The article presents the possible role of consciousness in quantum-mechanical description of physical reality. The widely spread interpretations of quantum phenomena are considered as indicating the apparent connection between conscious processes and the properties of the microcosm. The reasons for discrepancies between the results of observations of the microcosm and macrocosm and the potential association of consciousness with these reasons are closely investigated. The mentioned connection is meant to be interpreted in the sense that the probable (...)
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  35. Quantum theory and the brain.Matthew Donald - unknown
    A human brain operates as a pattern of switching. An abstract definition of a quantum mechanical switch is given which allows for the continual random fluctuations in the warm wet environment of the brain. Among several switch-like entities in the brain, we choose to focus on the sodium channel proteins. After explaining what these are, we analyse the ways in which our definition of a quantum switch can be satisfied by portions of such proteins. We calculate the perturbing (...)
     
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  36. Quantum interactive dualism: An alternative to materialism.Henry P. Stapp - 2005 - Zygon 41 (3):599-615.
    René Descartes proposed an interactive dualism that posits an interaction between the mind of a human being and some of the matter located in his or her brain. Isaac Newton subsequently formulated a physical theory based exclusively on the material/physical part of Descartes’ ontology. Newton’s theory enforced the principle of the causal closure of the physical, and the classical physics that grew out of it enforces this same principle. This classical theory purports to give, in principle, a (...)
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  37. Quantum interactive dualism - an alternative to materialism.Henry P. Stapp - 2005 - Journal of Consciousness Studies 12 (11):43-58.
    _René Descartes proposed an interactive dualism that posits an interaction between the_ _mind of a human being and some of the matter located in his or her brain. Isaac Newton_ _subsequently formulated a physical theory based exclusively on the material/physical_ _part of Descartes’ ontology. Newton’s theory enforced the principle of the causal closure_ _of the physical, and the classical physics that grew out of it enforces this same principle._ _This classical theory purports to give, in principle, a complete (...)
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  38.  5
    Effects of Physical and Mental Fatigue on Postural Sway and Cortical Activity in Healthy Young Adults.Arnd Gebel, Aglaja Busch, Christine Stelzel, Tibor Hortobágyi & Urs Granacher - 2022 - Frontiers in Human Neuroscience 16.
    Physical fatigue negatively affects postural control, resulting in impaired balance performance in young and older adults. Similar effects on postural control can be observed for mental fatigue mainly in older adults. Controversial results exist for young adults. There is a void in the literature on the effects of fatigue on balance and cortical activity. Therefore, this study aimed to examine the acute effects of PF and MF on postural sway and cortical activity. Fifteen healthy young adults (...)
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  39. Consciousness, situations, and the measurement problem of quantum mechanics.Michel Bitbol - unknown
    There are two versions of the putative connection between consciousness and the measurement problem of quantum mechanics : consciousness as the cause of state vector reduction, and state vector reduction as the physical basis of consciousness. In this article, these controversial ideas are neither accepted uncritically, nor rejected from the outset in the name of some prejudice about objective knowledge. Instead, their origin is sought in our most cherished (but disputable) beliefs about the place of mind and consciousness (...)
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  40.  37
    On the Possibility to Combine the Order Effect with Sequential Reproducibility for Quantum Measurements.Irina Basieva & Andrei Khrennikov - 2015 - Foundations of Physics 45 (10):1379-1393.
    In this paper we study the problem of a possibility to use quantum observables to describe a possible combination of the order effect with sequential reproducibility for quantum measurements. By the order effect we mean a dependence of probability distributions on the order of measurements. We consider two types of the sequential reproducibility: adjacent reproducibility ) and separated reproducibility). The first one is reproducibility with probability 1 of a result of measurement of some observable A measured twice, one (...)
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  41.  18
    The physicist inside the ambiguous room: an argument against the need of consciousness in the quantum mechanical measurement process.Carlo Roselli - 2022 - Foundations of Physics 52 (2):1-12.
    The aim of this paper is to invalidate the hypothesis that human consciousness is necessary in the quantum measurement process. In order to achieve this target, I propose a considerable modification of the Schrödinger’s cat and the Dead-Alive Physicist thought experiments, called “PIAR”, short for “Physicist Inside the Ambiguous Room”. A specific strategy has enabled me to plan the experiment in such a way as to logically justify the inconsistency of the above hypothesis and to oblige its supporters to (...)
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  42.  29
    The Quantum Concept of Consciousness: For or Against?Victor N. Knyazev & Galina V. Parshikova - 2023 - RUDN Journal of Philosophy 27 (4):901-914.
    The study examines a problematic hypothesis of possible approaches to identifying the quantum physical foundations of the functioning of consciousness. The authors proceed from the fact that in modern conditions, not a single science, nor all sciences taken together, gives a final answer to the question of the “mechanism” of the origin of thought. However, this does not mean at all that research in this direction needs to be stopped. The authors express confidence that modern and subsequent research (...)
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  43.  9
    The Effects of Physical Exercise on Cognition: How Heart Rate Variability Can Predict Cognitive Performances.Giovanna Sannino, Ivanoe De Falco, Giuseppe De Pietro & Saverio Stranges - 2020 - Frontiers in Human Neuroscience 14.
    Objectives: Investigate and identify the relationship between physical exercise and cognitive performance measured by using different cognitive tests taken from Cambridge Brain Science.Methods: Thirty subjects, divided into two groups, undergo twelve cognitive tests from CBS. A comparison between the pre- and post-exercise results in terms of cognitive performance differences is carried out. Regression analysis between Heart Rate Variability features and CBS tests results is performed.Results: In most CBS tests, there is an improvement, or at least a confirmation, of the (...)
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  44. Causal potency of consciousness in the physical world.Danko D. Georgiev - 2024 - International Journal of Modern Physics B 38 (19):2450256.
    The evolution of the human mind through natural selection mandates that our conscious experiences are causally potent in order to leave a tangible impact upon the surrounding physical world. Any attempt to construct a functional theory of the conscious mind within the framework of classical physics, however, inevitably leads to causally impotent conscious experiences in direct contradiction to evolution theory. Here, we derive several rigorous theorems that identify the origin of the latter impasse in the mathematical (...)
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  45.  31
    Quantum measurements, sequential and latent.Robert H. Dicke - 1989 - Foundations of Physics 19 (4):385-395.
    The results of a hypothetical experiment requiring a sequence of quantum measurements are obtained retrospectively, after the experiment has been completed, from a single reading of an “apparatus register.” The experiment is carried out reversibly and Schrödinger's equation is satisfied until the terminal reading of the register. The technique is illustrated using a feasible method of measuring photon spin as the quantum “object” observable and using the photon energy as the “apparatus register.” The technique is used to discuss (...)
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  46. A theory of neurophysics and quantum neuroscience: Implications for brain function and the limits of consciousness.M. A. Persinger & S. A. Koren - 2007 - International Journal of Neuroscience 117 (2):157-175.
  47. Inner privacy of conscious experiences and quantum information.Danko D. Georgiev - 2020 - Biosystems 187:104051.
    The human mind is constituted by inner, subjective, private, first-person conscious experiences that cannot be measured with physical devices or observed from an external, objective, public, third-person perspective. The qualitative, phenomenal nature of conscious experiences also cannot be communicated to others in the form of a message composed of classical bits of information. Because in a classical world everything physical is observable and communicable, it is a daunting task to explain how an empirically unobservable, incommunicable consciousness (...)
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  48.  66
    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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  49.  30
    Environment, consciousness, and quantum measurement.Donald Bedford & Derek Wang - 1976 - Foundations of Physics 6 (5):599-605.
    It is shown that (a) the conscious observer plays no essential part in the measurement process, and (b) environmental perturbations of whatever kind fail to account for the evolution of systems into “mixtures” or “dynamically decoupled” systems.
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  50. On Elitzur's discussion of the impact of consciousness on the physical world.Douglas M. Snyder - 1990 - Journal of Mind and Behavior 297 (2):297-302.
    Elitzur maintains that in quantum mechanical measurement consciousness does not have a significant impact on the physical world. His thesis is refuted through an elaboration of Schrödinger's gedankenexperiment called the cat paradox. The generally conservative tone of Elitzur's article as regards the involvement of consciousness in the physical world is discussed. Through discussing the conservation of energy and the second law of thermodynamics much differently than did Elitzur, it is shown how the involvement of human cognition in (...)
     
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