Results for 'Brain dynamics'

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  1.  52
    Self-Projection: Hugo Münsterberg on Empathy and Oscillation in Cinema Spectatorship.Robert Michael Brain - 2012 - Science in Context 25 (3):329-353.
    ArgumentThis essay considers the metaphors of projection in Hugo Münsterberg's theory of cinema spectatorship. Münsterberg (1863–1916), a German born and educated professor of psychology at Harvard University, turned his attention to cinema only a few years before his untimely death at the age of fifty-three. But he brought to the new medium certain lasting preoccupations. This account begins with the contention that Münsterberg's intervention in the cinema discussion pursued his well-established strategy of pitting a laboratory model against a clinical one, (...)
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  2.  27
    Laying the Foundations for a Theory of Consciousness: The Significance of Critical Brain Dynamics for the Formation of Conscious States.Joachim Keppler - 2024 - Frontiers in Human Neuroscience 18:1379191.
    Empirical evidence indicates that conscious states, distinguished by the presence of phenomenal qualities, are closely linked to synchronized neural activity patterns whose dynamical characteristics can be attributed to self-organized criticality and phase transitions. These findings imply that insight into the mechanism by which the brain controls phase transitions will provide a deeper understanding of the fundamental mechanism by which the brain manages to transcend the threshold of consciousness. This article aims to show that the initiation of phase transitions (...)
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  3. Quantum brain dynamics and consciousness.Friedrich Beck - 2001 - In P. Loockvane (ed.), The Physical Nature of Consciousness. John Benjamins.
  4. Brain dynamics underlying the nonlinear threshold for access to consciousness.Antoine Del Cul, Sylvain Baillet & Stanislas Dehaene - 2007 - Public Library of Science, Biology 5 (10):e260.
  5. Quantum Brain Dynamics and Consciousness: An Introduction.Marj Jibu & Kunio Yasue - 1995 - Philadelphia: John Benjamins. Edited by Kunio Yasue.
  6. Nonlinear brain dynamics and intention according to Aquinas.Walter Freeman - 2008 - Mind and Matter 6 (2):207-234.
    We humans and other animals continuously construct and main- tain our grasp of the world by using astonishingly small snippets of sensory information. Recent studies in nonlinear brain dynamics have shown how this occurs: brains imagine possible futures and seek and use sensory stimulation to select among them as guides for chosen actions. On the one hand the scientific explanation of the dynamics is inaccessible to most of us. On the other hand the philosophical foundation from which (...)
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  7.  32
    The brain dynamics of linguistic computation.Elliot Murphy - 2015 - Frontiers in Psychology 6.
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  8.  9
    The brain dynamics of trust decisions and outcome evaluation in narcissists.Fengbo Guo, Ziyang Yang, Tengfei Liu & Li Gu - 2022 - Frontiers in Psychology 13.
    Individuals with narcissism are, by definition, self-centered, focus on self-benefit, and demonstrate less prosocial behaviors. Trusting strangers is risky, as it can result in exploitation and non-reciprocation. Thus, the trust may be antagonistic to narcissism. However, how narcissists make the choice to trust remains to be elucidated. The current study examined 44 participants playing as trustors in one-shot trust games, and their electroencephalograms were recorded. Individuals high in narcissism exhibited less trust toward strangers, especially following gaining feedback for their trust. (...)
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  9. Brain dynamics: Modeling the whole brain in action.J. J. Wright - 2000 - In Evian Gordon (ed.), Integrative Neuroscience. Harwood Academic Publishers.
     
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  10. Quantum brain dynamics and quantum field theory.Y. Takahashi & M. Jibu - 2004 - In Gordon G. Globus, Karl H. Pribram & Giuseppe Vitiello (eds.), Brain and Being. John Benjamins.
  11. Quantum brain dynamics and quantum field theory.Marj Jibu & Kunio Yasue - 2004 - In Gordon G. Globus, Karl H. Pribram & Giuseppe Vitiello (eds.), Brain and Being. John Benjamins.
  12.  16
    Human Brain Dynamics Reflect the Correctness and Presentation Modality of Physics Concept Memory Retrieval.Chih-Ping Liang, Hsiao-Ching She, Li-Yu Huang, Wen-Chi Chou, Sheng-Chang Chen & Tzyy-Ping Jung - 2020 - Frontiers in Human Neuroscience 14.
  13.  28
    Oscillatory Brain Dynamics during Sentence Reading: A Fixation-Related Spectral Perturbation Analysis.Lorenzo Vignali, Nicole A. Himmelstoss, Stefan Hawelka, Fabio Richlan & Florian Hutzler - 2016 - Frontiers in Human Neuroscience 10.
  14. Guiding the study of brain dynamics by using first- person data: Synchrony patterns correlate with ongoing conscious states during a simple visual task.Antoine Lutz, Jacques Martinerie, Jean-Philippe Lachaux & Francisco J. Varela - 2002 - Proceedings of the National Academy of Sciences of the Usa 99 (3):1586-1591.
    Laboratoire de Neurosciences Cognitives et Imagerie Ce´re´brale (LENA), Hoˆpital de La Salpeˆtrie`re, Centre National de la Recherche Scientifique (CNRS).
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  15.  13
    Freeman's Nonlinear Brain Dynamics and Consciousness.M. Mannino & S. L. Bressler - 2018 - Journal of Consciousness Studies 25 (1-2):64-88.
    Walter Freeman's theory of nonlinear neurodynamics has had a major impact on brain dynamics in modern cognitive neuroscience. Steven Bressler's theory of neurocognitive networks follows from Freeman's work, and his empirical evidence for the coordination of cortical areas by phase-coupled beta rhythms in large-scale cognitive brain networks supports Freeman's ideas on nonlinear brain dynamics. Bressler's work, taking Freeman's concepts into the realm of cognitive neurodynamics, also supports Scott Kelso's theory of metastability in coordination dynamics. (...)
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  16.  34
    Orbitofrontal Lesion Alters Brain Dynamics of Emotion-Attention and Emotion-Cognitive Control Interaction in Humans.Venla Kuusinen, Elena Cesnaite, Jari Peräkylä, Keith H. Ogawa & Kaisa M. Hartikainen - 2018 - Frontiers in Human Neuroscience 12.
  17.  4
    Effector-Specific Characterization of Brain Dynamics in Manual vs. Oculomotor Go/NoGo Tasks.Marie Simonet, Paolo Ruggeri & Jérôme Barral - 2020 - Frontiers in Human Neuroscience 14.
    Motor inhibitory control, the ability to suppress unwanted actions, has been previously shown to rely on domain-general IC processes that are involved in a wide range of IC tasks. Nevertheless, the existence of effector-specific regions and activation patterns that would differentiate manual vs. oculomotor response inhibition remains unknown. In this study, we investigated the brain dynamics supporting these two response effectors with the same IC task paradigm. We examined the behavioral performance and electrophysiological activity in a group of (...)
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  18.  19
    Developing testable theories of brain dynamics: The global mode theory and experimental falsification.J. J. Wright - 2000 - Behavioral and Brain Sciences 23 (3):414-415.
    The development of theories of global cortical dynamics, using linear wave theory, owes much to the pioneering work of Nunez. His work leads to clear predictions on relations of brain size, axonal conduction velocity, and the frequencies of the cerebral rhythms. These predictions do not appear to be fulfilled, but their falsification constrains the range of parameters applicable in further formulations.
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  19.  29
    Multiscale modeling of brain dynamics depends upon approximations at each scale.J. J. Wright & D. T. J. Liley - 1996 - Behavioral and Brain Sciences 19 (2):310-320.
    We outline fresh findings that show that our macroscopic electrocorticographic (ECoG) simulations can account for synchronous multiunit pulse oscillations at separate, simultaneously activated cortical sites and the associated gamma-band ECoG activity. We clarify our views on the approximations of dynamic class applicable to neural events at macroscopic and microscopic scales, and the analogies drawn to classes of ANN behaviour. We accept the need to introduce memory processes and detailed anatomical and physiological information into any future developments of our simulations. On (...)
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  20.  14
    Mathematical description of brain dynamics in perception and action.John S. Nicolis & Ichiro Tsuda - 1999 - Journal of Consciousness Studies 6 (11-12):11-12.
    A given but otherwise random environmental time series impinging on the input of a certain biological processor passes through with overwhelming probability practically undetected. A very small percentage of environmental stimuli, though, is ‘captured’ by the processor's nonlinear dissipative operator as initial conditions, and is ‘processed’ as solutions of its dynamics. The processor, then, is in such cases instrumental in compressing or abstracting those stimuli, thereby making the external world to collapse from a previous regime of a ‘pure state’ (...)
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  21.  40
    Dissipative quantum brain dynamics.Giuseppe Vitiello - 2002 - In Kunio Yasue, Marj Jibu & Tarcisio Della Senta (eds.), No Matter, Never Mind: Proceedings of Toward a Science of Consciousness: Fundamental Approaches (Tokyo '99). John Benjamins. pp. 43-61.
  22.  39
    Walking through Architectural Spaces: The Impact of Interior Forms on Human Brain Dynamics.Maryam Banaei, Javad Hatami, Abbas Yazdanfar & Klaus Gramann - 2017 - Frontiers in Human Neuroscience 11:289961.
    Neuroarchitecture uses neuroscientific tools to better understand architectural design and its impact on human perception and subjective experience. The form or shape of the built environment is fundamental to architectural design, but not many studies have shown the impact of different forms on the inhabitants’ emotions. This study investigated the neurophysiological correlates of different interior forms on the perceivers’ affective state and the accompanying brain activity. To understand the impact of naturalistic three-dimensional (3D) architectural forms, it is essential to (...)
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  23. The complementary brain: From brain dynamics to conscious experiences.Stephen Grossberg - 2004 - In Christian Kaernbach, Erich Schroger & Hermann Müller (eds.), Psychophysics Beyond Sensation: Laws and Invariants of Human Cognition. Psychology Press. pp. 417-449.
  24.  45
    Mixed-system brain dynamics: Neural memory as a macroscopic ordered state. [REVIEW]C. I. J. M. Stuart, Y. Takahashi & H. Umezawa - 1979 - Foundations of Physics 9 (3-4):301-327.
    The paper reviews the current situation regarding a new theory of brain dynamics put forward by the authors in an earlier publication. Motivation for the theory is discussed in terms of two issues: the long-standing problem of accounting for the stability and nonlocal properties of memory, and the experimental and theoretical evidence against the classical theory of brain action. It is shown that the new theory provides an explanation and a conceptually unifying framework for phenomena of (...) action that resist classical explanation. Further independent experiments provide strong additional support for the theory. The fact that this theory incorporates quantum mechanisms in an essential way is considered to be of wide scientific interest in view of the unique status of the brain in relation to the physical, biological, and mental orders in nature. (shrink)
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  25.  11
    Spatio-Temporal Brain Dynamic Differences in Fluid Intelligence.Nadja Tschentscher & Paul Sauseng - 2022 - Frontiers in Human Neuroscience 16.
    Human fluid intelligence is closely linked to the sequential solving of complex problems. It has been associated with a distributed cognitive control or multiple-demand network, comprising regions of lateral frontal, insular, dorsomedial frontal, and parietal cortex. Previous neuroimaging research suggests that the MD network may orchestrate the allocation of attentional resources to individual parts of a complex task: in a complex target detection task with multiple independent rules, applied one at a time, reduced response to rule-critical events across the MD (...)
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  26.  15
    Consciousness and quantum brain dynamics.Gordon Globus - 2006 - In J. Tuszynski (ed.), The Emerging Physics of Consciousness. Springer Verlag. pp. 371--385.
  27. Dual mode quantum brain dynamics and its application to the Riemann Hypothesis.G. Globus - 2004 - In Gordon G. Globus, Karl H. Pribram & Giuseppe Vitiello (eds.), Brain and Being. John Benjamins.
     
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  28.  30
    Ontological implications of quantum brain dynamics.Gordon G. Globus - 2002 - In Kunio Yasue, Marj Jibu & Tarcisio Della Senta (eds.), No Matter, Never Mind. John Benjamins. pp. 33--137.
  29.  11
    Thinking together quantum brain dynamics and postmodernism.Gordon Globus - 2001 - In P. Van Loocke (ed.), The Physical Nature of Consciousness. John Benjamins. pp. 29--175.
  30.  23
    Network and Multilayer Network Approaches to Understanding Human Brain Dynamics.Sarah Feldt Muldoon & Danielle S. Bassett - 2016 - Philosophy of Science 83 (5):710-720.
    Network neuroscience provides a systems approach to the study of the brain and enables the examination of interactions measured at different temporal and spatial scales. We review current methods to quantify the structure of brain networks and compare that structure across different clinical cohorts, cognitive states, and subjects. We further introduce the emerging mathematical concept of multilayer networks and describe the advantages of this approach to model changing brain dynamics over time. We conclude by offering several (...)
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  31.  65
    First-person approaches in neuroscience of consciousness: Brain dynamics correlate with the intention to act.Han-Gue Jo, Marc Wittmann, Tilmann Lhündrup Borghardt, Thilo Hinterberger & Stefan Schmidt - 2014 - Consciousness and Cognition 26:105-116.
    The belief in free will has been frequently challenged since Benjamin Libet published his famous experiment in 1983. Although Libet’s experiment is highly dependent upon subjective reports, no study has been conducted that focused on a first-person or introspective perspective of the task. We took a neurophenomenological approach in an N = 1 study providing reliable and valid measures of the first-person perspective in conjunction with brain dynamics. We found that a larger readiness potential is attributable to more (...)
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  32. Neurophenomenology - integrating subjective experience and brain dynamics in the neuroscience of consciousness.Antoine Lutz & Evan Thompson - 2003 - Journal of Consciousness Studies 10 (9-10):31-52.
    The paper presents a research programme for the neuroscience of consciousness called 'neurophenomenology' and illustrates it with a recent pilot study . At a theoretical level, neurophenomenology pursues an embodied and large-scale dynamical approach to the neurophysiology of consciousness . At a methodological level, the neurophenomenological strategy is to make rigorous and extensive use of first-person data about subjective experience as a heuristic to describe and quantify the large-scale neurodynamics of consciousness . The paper focuses on neurophenomenology in relation to (...)
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  33.  7
    The Self-Embodying Mind: Process, Brain Dynamics, and the Conscious Present.Jason W. Brown - 2002 - Midpoint Trade Books.
    This superbly written and finery argued philosophical essay has potentially revolutionary importance for understanding "human consciousness, " and its author has accordingly been celebrated by the likes of Oliver Sachs and Karl Pribram. Showing the relevance of neuropathology for understanding the unifying processes behind perception, memory, and language, Jason Brown offers an exciting new approach to the mind/brain problem, freely crossing the boundaries of neurophysiology, psychology, and philosophy of mind. Hard science and the study of the nature of mind (...)
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  34.  27
    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 (...)
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  35.  98
    Timing in cognition and EEG brain dynamics: Discreteness versus continuity.Andrew A. Fingelkurts & Alexander A. Fingelkurts - 2006 - Cognitive Processing 7 (3):135-162.
    This article provides an overview of recent developments in solving the timing problem (discreteness vs. continuity) in cognitive neuroscience. Both theoretical and empirical studies have been considered, with an emphasis on the framework of Operational Architectonics (OA) of brain functioning (Fingelkurts and Fingelkurts, 2001, 2005). This framework explores the temporal structure of information flow and interarea interactions within the network of functional neuronal populations by examining topographic sharp transition processes in the scalp EEG, on the millisecond scale. We conclude, (...)
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  36.  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 (...)
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  37.  62
    Local-global interactions and the role of mesoscopic (intermediate-range) elements in brain dynamics.Walter J. Freeman & Robert Kozma - 2000 - Behavioral and Brain Sciences 23 (3):401-401.
    A unifing theory of spatiotemporal brain dynamics should incorporate multiple spatial and temporal scales. Between the microscopic (local) and macroscopic (global) components proposed by Nunez, mesoscopic (intermediate-range) elements should be integral parts of models. The corresponding mathematical formalism requires tools of nonlinear dynamics and the use of aperiodic (chaotic) attractors. Some relations between local-mesoscopic and mesoscopic-global components are outlined.
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  38. Quantum Closures and Disclosures: Thinking-Together Postphenomenology and Quantum Brain Dynamics.Gordon G. Globus - 2003 - John Benjamins.
    CHAPTER Heidegger and the Quantum Brain In any case the orientation to "I" and " consciousness" and re-presentation ...
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  39.  22
    The Independent and Shared Mechanisms of Intrinsic Brain Dynamics: Insights From Bistable Perception.Teng Cao, Lan Wang, Zhouyuan Sun, Stephen A. Engel & Sheng He - 2018 - Frontiers in Psychology 9.
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  40. Magic without magic: Meaning of quantum brain dynamics.Marj Jibu & Kunio Yasue - 1997 - Journal of Mind and Behavior 18 (2-3):205-228.
    A theoretical framework called "Quantum Brain Dynamics" to describe long range ordered dynamics of the quantum system of electromagnetic field and water dipole field in the brain is proposed as a revival of the original idea developed by Umezawa in the early 1960s. Based on Umezawa’s world view of quantum field theory, the manifestation of long range ordered dynamics is a macroscopic object of quantum origin, and so it reveals the existence of specific macroscopic objects (...)
     
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  41.  48
    Toward a new cognitive neuroscience: modeling natural brain dynamics.Klaus Gramann, Tzyy-Ping Jung, Daniel P. Ferris, Chin-Teng Lin & Scott Makeig - 2014 - Frontiers in Human Neuroscience 8.
  42.  76
    Noise-driven attractor landscapes for perception by mesoscopic brain dynamics.Walter J. Freeman - 2001 - Behavioral and Brain Sciences 24 (5):816-817.
    Tsuda offers advanced concepts to model brain functions, includ-ing “chaotic itinerancy,” “attractor ruins,” “singular-continuous nowhere-differentiable attractors,” “Cantor coding,” “multi-Milnor attractor systems,” and “dynamically generated noise.” References to physiological descriptions of attractor landscapes governing activity over cortical fields maintained by millions of action potentials may facilitate their application in future experimental designs and data analyses.
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  43.  14
    A Systematic Review of Electrophysiological Findings in Binge-Purge Eating Disorders: A Window Into Brain Dynamics.Joao C. Hiluy, Isabel A. David, Adriana F. C. Daquer, Monica Duchesne, Eliane Volchan & Jose C. Appolinario - 2021 - Frontiers in Psychology 12.
    Binge-purge eating disorders, such as bulimia nervosa and binge eating disorder, may share some neurobiological features. Electroencephalography is a non-invasive measurement modality that may aid in research and diagnosis of BP-ED. We conducted a systematic review of the literature on EEG findings in BP-ED, seeking to summarize and analyze the current evidence, as well as identify shortcomings and gaps to inform new perspectives for future studies. Following PRISMA Statement recommendations, the PubMed, Embase, and Web of Science databases were searched using (...)
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  44.  19
    Unifying cell assembly theory with observations of brain dynamics.R. Miller - 1999 - Behavioral and Brain Sciences 22 (2):297-298.
    Empirical evidence suggests that high frequency electrographic activity is involved in active representation of meaningful entities in the cortex. Theoretical work suggests that distributed cell assemblies also represent meaningful entities. However, we are still some way from understanding how these two are related. This commentary also makes suggestions for further investigation of the neural basis of language at the level of both words and sentence planning.
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  45.  20
    A contemporary research topic: manipulative approaches to human brain dynamics.Keiichi Kitajo, Takashi Hanakawa, Risto J. Ilmoniemi & Carlo Miniussi - 2015 - Frontiers in Human Neuroscience 9.
  46. Cognition, self and observation in quantum brain dynamics.G. Globus - 1995 - In P. Pyllkkänen & P. Pyllkkö (eds.), New Directions in Cognitive Science. Finnish Society for Artificial Intelligence.
  47. Developmental Dynamic Dysphasia: Are Bilateral Brain Abnormalities a Signature of Inefficient Neural Plasticity?Marcelo L. Berthier, Guadalupe Dávila, María José Torres-Prioris, Ignacio Moreno-Torres, Jordi Clarimón, Oriol Dols-Icardo, María J. Postigo, Victoria Fernández, Lisa Edelkraut, Lorena Moreno-Campos, Diana Molina-Sánchez, Paloma Solo de Zaldivar & Diana López-Barroso - 2020 - Frontiers in Human Neuroscience 14:478142.
    The acquisition and evolution of speech production, discourse and communication can be negatively impacted by brain malformations. We describe, for the first time, a case of developmental dynamic dysphasia (DDD) in a right-handed adolescent boy (subject D) with cortical malformations involving language-eloquent regions (inferior frontal gyrus) in both the left and the right hemispheres. Language evaluation revealed a markedly reduced verbal output affecting phonemic and semantic fluency, phrase and sentence generation and verbal communication in everyday life. Auditory comprehension, repetition, (...)
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  48.  72
    Dynamic cooperation and competition between brain systems during cognitive control.Luca Cocchi, Andrew Zalesky, Alex Fornito & Jason B. Mattingley - 2013 - Trends in Cognitive Sciences 17 (10):493-501.
  49.  98
    Phenomenology, dynamical neural networks and brain function.Donald Borrett, Sean D. Kelly & Hon Kwan - 2000 - Philosophical Psychology 13 (2):213-228.
    Current cognitive science models of perception and action assume that the objects that we move toward and perceive are represented as determinate in our experience of them. A proper phenomenology of perception and action, however, shows that we experience objects indeterminately when we are perceiving them or moving toward them. This indeterminacy, as it relates to simple movement and perception, is captured in the proposed phenomenologically based recurrent network models of brain function. These models provide a possible foundation from (...)
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  50. Globus, G.(2003). Quantum closures and disclosures: Thinking-together postphenomenology and quantum brain dynamics. Erdenheim. [REVIEW]R. D. Ellis - 2004 - Journal of Phenomenological Psychology 35 (1):142-146.
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