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  1. Eternity Between Space and Time: From Consciousness to the Cosmos.Ines Testoni, Fabio Scardigli, Andrea Toniolo & Gabriele Gionti S. J. (eds.) - 2024 - De Gruyter.
    Philosophers, theologians, physicists, and psychologists join their efforts to reflect on the crucial issues of limit and infinity, time and eternity, empty space and material space. The volume offers an invaluable contribution to some of the most important issues of our times: questions on God and consciousness are discussed in parallel with quantum theory, black holes, the inflationary universe, the Big Bang, and string theory, from different perspectives and angles, ranging from neuroscience to AI.
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  • The aesthetic experience as a characteristic feature of brain dynamics.Giuseppe Vitiello - 2015 - Aisthesis: Pratiche, Linguaggi E Saperi Dell’Estetico 8 (1):71-89.
    The brain constructs within itself an understanding of its surround which constitutes its own world. This is described as its Double in the frame of the dissipative quantum model of brain, where the perception-action arc in the Merleau-Ponty’s phenomenology of perception finds its formal description. In the dialog with the Double, the continuous attempt to reach the equilibrium shows that the real goal pursued by the brain activity is the aesthetical experience, the most harmonious “to-be-in-the-world” reached through reciprocal actions, the (...)
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  • Brain, Mind, the Arrow of Time and Consciousness.Giuseppe Vitiello - 2024 - In Ines Testoni, Fabio Scardigli, Andrea Toniolo & Gabriele Gionti S. J. (eds.), Eternity Between Space and Time: From Consciousness to the Cosmos. De Gruyter. pp. 149-160.
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  • Book Review. [REVIEW]Tere Vadén - 2006 - Indo-Pacific Journal of Phenomenology 6 (2):1-2.
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  • Emergence, Computation and the Freedom Degree Loss Information Principle in Complex Systems.Ignazio Licata & Gianfranco Minati - 2017 - Foundations of Science 22 (4):863-881.
    We consider processes of emergence within the conceptual framework of the Information Loss principle and the concepts of systems conserving information; systems compressing information; and systems amplifying information. We deal with the supposed incompatibility between emergence and computability tout-court. We distinguish between computational emergence, when computation acquires properties, and emergent computation, when computation emerges as a property. The focus is on emergence processes occurring within computational processes. Violations of Turing-computability such as non-explicitness and incompleteness are intended to represent partially the (...)
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  • Almost‐anywhere theories: Reductionism and universality of emergence.Ignazio Licata - 2010 - Complexity 15 (6):11-19.
  • “Quantum physics and vedanta”: A perspective from Bernard D'Espagnat's scientific realism.Jonathan Duquette - 2011 - Zygon 46 (3):620-638.
    Abstract. In the last decades, several rapprochements have been made between quantum physics and the Advaita Vedānta (AV) school of Hinduism. Theoretical issues such as the role of the observer in measurement and physical interconnectedness have been associated with tenets of AV, generating various critical responses. In this study, I propose to address this encounter in the light of recent works on philosophical implications of quantum physics by the physicist and philosopher of science Bernard d’Espagnat.
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  • Quantum Approaches to Consciousness.Harald Atmanspacher - 2006 - Stanford Encyclopedia of Philosophy.
    It is widely accepted that consciousness or, more generally, mental activity is in some way correlated to the behavior of the material brain. Since quantum theory is the most fundamental theory of matter that is currently available, it is a legitimate question to ask whether quantum theory can help us to understand consciousness. Several approaches answering this question affirmatively, proposed in recent decades, will be surveyed. It will be pointed out that they make different epistemological assumptions, refer to different neurophysiological (...)
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  • Chreods, homeorhesis and biofields: Finding the right path for science.Arran Gare - 2017 - Progress in Biophysics and Molecular Biology 131:61-91.
    C.H. Waddington’s concepts of ‘chreods’ (canalized paths of development) and ‘homeorhesis’ (the tendency to return to a path), each associated with ‘morphogenetic fields’, were conceived by him as a contribution to complexity theory. Subsequent developments in complexity theory have largely ignored Waddington’s work and efforts to advance it. Waddington explained the development of the concept of chreod as the influence on his work of Alfred North Whitehead’s process philosophy, notably, the concept of concrescence as a self-causing process. Processes were recognized (...)
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  • Phenomenal Time and its Biological Correlates.Ram L. P. Vimal & Christopher J. Davia - 2010 - Journal of Consciousness Exploration and Research 1 (5):560-572.
    Our goal is to investigate the biological correlates of the first-person experience of time or phenomenal time. ‘Time’ differs in various domains, such as (i) physical time (e.g., clock time), (ii) biological time, such as the suprachiasmatic nucleus, and (iii) the perceptual rate of time. One psychophysical-measure of the perceptual rate is the critical flicker frequency (CFF), in which a flashing light is perceived as unchanging. Focusing on the inability to detect change, as in CFF, may give us insight into (...)
     
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  • Can quantum analogies help us to understand the process of thought? [2nd ed.].Paavo Pylkkanen - 2014 - Mind and Matter 12 (1):61-91.
    A number of researchers today make an appeal to quantum physics when trying to develop a satisfactory account of the mind, an appeal still felt to be controversial by many. Often these "quantum approaches" try to explain some well-known features of conscious experience (or mental processes more generally), thus using quantum physics to enrich the explanatory framework or explanans used in consciousness studies and cognitive science. This paper considers the less studied question of whether quantum physical intuitions could help us (...)
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  • Can quantum analogies help us to understand the process of thought? [1st ed].Paavo Pylkkänen - 2004 - In Gordon Globus, K. Pribram & G. Vitiello (eds.), Being and Brain. At the Boundary between Science, Philosophy, Language and Arts. Amsterdam: John Benjamins. pp. 165-195.
    A number of researchers today make an appeal to quantum physics when trying to develop a satisfactory account of the mind, an appeal still felt to be controversial by many. Often these "quantum approaches" try to explain some well-known features of conscious experience (or mental processes more generally), thus using quantum physics to enrich the explanatory framework or explanans used in consciousness studies and cognitive science. This paper considers the less studied question of whether quantum physical intuitions could help us (...)
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  • Autonomous Systems and the Place of Biology Among Sciences. Perspectives for an Epistemology of Complex Systems.Leonardo Bich - 2021 - In Gianfranco Minati (ed.), Multiplicity and Interdisciplinarity. Essays in Honor of Eliano Pessa. Springer. pp. 41-57.
    This paper discusses the epistemic status of biology from the standpoint of the systemic approach to living systems based on the notion of biological autonomy. This approach aims to provide an understanding of the distinctive character of biological systems and this paper analyses its theoretical and epistemological dimensions. The paper argues that, considered from this perspective, biological systems are examples of emergent phenomena, that the biological domain exhibits special features with respect to other domains, and that biology as a discipline (...)
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  • Emil du Bois-Reymond's Reflections on Consciousness.Gabriel Finkelstein - 2014 - In Chris Smith Harry Whitaker (ed.), Brain, Mind and Consciousness in the History of Neuroscience. Springer. pp. 163-184.
    The late 19th-century Ignorabimus controversy over the limits of scientific knowledge has often been characterized as proclaiming the end of intellectual progress, and by implication, as plunging Germany into a crisis of pessimism from which Liberalism never recovered. My research supports the opposite interpretation. The initiator of the Ignorabimus controversy, Emil du Bois-Reymond, was a physiologist who worked his whole life against the forces of obscurantism, whether they came from the Catholic and Conservative Right or the scientistic and millenarian Left. (...)
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  • 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 wave function, etc.), (...)
     
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  • The role of expectation in the constitution of subjective musical experience.Elisa Negretto - unknown
    The present study is a theoretical discussion concerning some of the important processes that characterize human perception, which is understood as a fundamental structure of consciousness. The aim is to acquire new insights for a better comprehension of the human experience in the world and the way individual subjects become familiar with their environment. To accomplish this task, the experience of listening to music is analysed due to the widespread acceptance of music as an important aspect of human life. With (...)
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  • Brain-mind operational architectonics: At the boundary between quantum physics and Eastern metaphysics.Andrew And Alexander Fingelkurts, Carlos F. H. Neves & Tarja Kallio-Tamminen - 2019 - Physics of Life Reviews 31:122-133.
    The Operational Architectonics (OA) of brain-mind functioning is a theory that unifies brain and mind through nested and dynamic hierarchy of electromagnetic brain fields. Recently, it has been enriched by concepts from physics like time, space, entropy, and self-organized criticality. This review paper advances OA theory further by delving into the foundations of quantum physics and Eastern metaphysics in relation to mind function. We aim to show that the brain-mind OA is the boundary between and integration point of quantum physics (...)
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  • Consciousness and Cosmos: Building an Ontological Framework.Alfredo Pereira Jr, Chris Nunn, Greg Nixon & Massimo Pregnolato - 2018 - Journal of Consciousness Studies 25 (3-4):181-205.
    Contemporary theories of consciousness are based on widely different concepts of its nature, most or all of which probably embody aspects of the truth about it. Starting with a concept of consciousness indicated by the phrase “the feeling of what happens” (the title of a book by Antonio Damásio), we attempt to build a framework capable of supporting and resolving divergent views. We picture consciousness in terms of Reality experiencing itself from the perspective of cognitive agents. Each conscious experience is (...)
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  • Emergence and Computation at the Edge of Classical and Quantum Systems.Ignazio Licata - 2008 - In World Scientific (ed.), Physics of Emergence and Organization. World Scientific.
    The problem of emergence in physical theories makes necessary to build a general theory of the relationships between the observed system and the observing system. It can be shown that there exists a correspondence between classical systems and computational dynamics according to the Shannon-Turing model. A classical system is an informational closed system with respect to the observer; this characterizes the emergent processes in classical physics as phenomenological emergence. In quantum systems, the analysis based on the computation theory fails. It (...)
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  • Logical openness in cognitive models.Prof Ignazio Licata - 2008 - Epistemologia:177-192.
    It is here proposed an analysis of symbolic and sub-symbolic models for studying cognitive processes, centered on emergence and logical openness notions. The Theory of logical openness connects the Physics of system/environment relationships to the system informational structure. In this theory, cognitive models can be ordered according to a hierarchy of complexity depending on their logical openness degree, and their descriptive limits are correlated to Gödel-Turing Theorems on formal systems. The symbolic models with low logical openness describe cognition by means (...)
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  • Epilogue: Western science, reductionism and eastern perspectives.Arran Gare - 2017 - Progress in Biophysics and Molecular Biology 131:497-499.
    Modern science originated in Western Europe, but its astonishing successes have forced every other civilization in the world to acknowledge and embrace its achievements. It is at the core of modernity and of the globalization of civilization. Consequently, efforts to show that non-Western traditions of thought should be taken seriously within the paradigm of science itself will inevitably provoke skepticism. However, science itself is riven not only by major problems and rival research programs, but by different conceptions about what is (...)
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  • Neural Codes and Fields at the Microscopic, Mesoscopic, Macroscopic and Symbolic Levels.Sean O. Nuallain - 2018 - Cosmos and History 14 (2):129-156.
    This paper makes two self-confessedly ambitious proposals. One is a theory of mind and world with an inventory of possible relations between the two of such generality that sensorimotor behaviour, potentially conscious cognition, and quantum mechanics fall out s special cases. The second is that the variety of neural codes is as multifarious as that of the domains in which mind functions; alternatively put, each cognitive "context" can be viewed as a field. Where cognitive "context" is lacking - a la (...)
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  • Quantum noise, entanglement and chaos in the quantum field theory of mind/brain states.Eliano Pessa & Giuseppe Vitiello - 2003 - Mind and Matter 1 (1):59-79.
    We review the dissipative quantum model of the brain and present recent developments related to the role of entanglement, quantum noise and chaos in the model.
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