Results for 'electrical brain fields '

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  1. Electric Brain Fields and Memory Traces: Wittgenstein and Gestalt Psychology.Michel Hark - 1995 - Philosophical Investigations 18 (2):113-138.
  2.  3
    Electrical Brain Activity and Its Functional Connectivity in the Physical Execution of Modern Jazz Dance.Johanna Wind, Fabian Horst, Nikolas Rizzi, Alexander John & Wolfgang I. Schöllhorn - 2020 - Frontiers in Psychology 11.
    Besides the pure pleasure of watching a dance performance, dance as a whole-body movement is becoming increasingly popular for health-related interventions. However, the science-based evidence for improvements in health or well-being through dance is still ambiguous and little is known about the underlying neurophysiological mechanisms. This may be partly related to the fact that previous studies mostly examined the neurophysiological effects of imagination and observation of dance rather than the physical execution itself. The objective of this pilot study was to (...)
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  3.  9
    In vivo Measurements of Electric Fields During Cranial Electrical Stimulation in the Human Brain.Minmin Wang, Tao Feng, Hongjie Jiang, Junming Zhu, Wuwei Feng, Pratik Y. Chhatbar, Jianmin Zhang & Shaomin Zhang - 2022 - Frontiers in Human Neuroscience 16.
    Cranial electrical stimulation has been applied at various current levels in both adults and children with neurological conditions with seemingly promising but somewhat inconsistent results. Stimulation-induced spatial electric fields within a specific brain region are likely a significant contributing factor for the biological effects. Although several simulation models have been used to predict EF distributions in the brain, these models actually have not been validated by in vivo CES-induced EF measurements in the live human brain. (...)
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  4.  17
    Field theories of mind and brain.Jeff Yoshimi - 2004 - In Lester Embree (ed.), Gurwitsch's Relevancy for Cognitive Science. Springer. pp. 111--129.
    Aron Gurwitsch’s Gestalt-inspired “field theory of consciousness” was introduced in the same period as Wolfgang Köhler’s theory of “electrical brain fields.” I consider parallels between these theories, drawing on results that have emerged in the last five years. First, I consider the claim that fields of consciousness supervene on electromagnetic fields in the brain, then I outline Gurwitsch’s field theory of consciousness, and finally I consider how the structures described by Gurwitsch might relate to (...)
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  5. Source localization of brain electric field frequency bands during conscious, spontaneous visual imagery and abstract thought.Daniel Lehmann, B. Henggler, M. Koukkan & M. Michel - 1993 - Cognitive Brain Research 1:203-20.
  6.  18
    Indeed, not really a brain disorder: Implications for reductionist accounts of addiction.Matt Field, Nick Heather & Reinout W. Wiers - 2019 - Behavioral and Brain Sciences 42.
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  7.  9
    The pulse of modernism: physiological aesthetics in Fin-de-Siècle Europe.Robert Michael Brain - 2015 - Seattle: University of Washington Press.
    Robert Brain traces the origins of artistic modernism to specific technologies of perception developed in late-nineteenth-century laboratories. Brain argues that the thriving fin-de-siècle field of “physiological aesthetics,” which sought physiological explanations for the capacity to appreciate beauty and art, changed the way poets, artists, and musicians worked and brought a dramatic transformation to the idea of art itself.
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  8.  22
    The unified electrical field.William A. MacKay - 2003 - Behavioral and Brain Sciences 26 (4):419-420.
    The electrophysiological perspective presents an electrical field that is continuous throughout the body, with an intense focus of dynamically structured patterns at the cephalic end. That there is indeed an isomorphic mapping between the detailed holistic patterns in this field and in perception (at some level) seems certain. Temporal binding, however, may be a greater challenge than spatial binding.
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  9. Synchronous firing and its influence on the brain's electromagnetic field: Evidence for an electromagnetic field theory of consciousness.J. McFadden - 2002 - Journal of Consciousness Studies 9 (4):23-50.
    The human brain consists of approximately 100 billion electrically active neurones that generate an endogenous electromagnetic field, whose role in neuronal computing has not been fully examined. The source, magnitude and likely influence of the brain's endogenous em field are here considered. An estimate of the strength and magnitude of the brain's em field is gained from theoretical considerations, brain scanning and microelectrode data. An estimate of the likely influence of the brain's em field is (...)
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  10.  26
    Explaining classical conditioning: Phenomenological unity conceals mechanistic diversity.Chris Fields - 1989 - Behavioral and Brain Sciences 12 (1):141-142.
  11.  11
    Better models of the evolution of cooperation through situated cognition.Archie Fields - 2021 - Biology and Philosophy 36 (4):1-19.
    A number of philosophers :171–187, 2011; Arnold 2011, in Ethics Politics XV:101–138, 2013) have argued that agent-based, evolutionary game theory models of the evolution of cooperation fail to provide satisfying explanations of cooperation because they are too disconnected from actual biology. I show how these criticisms can be answered by employing modeling approaches from the situated cognition research program that allow for more biologically detailed models. Using cases drawn from recent situated cognition modeling research, I show how agent-based models of (...)
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  12.  43
    Intentionality is a red herring.Chris Fields & Eric Dietrich - 1987 - Behavioral and Brain Sciences 10 (4):756.
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  13.  11
    Affordance perception and the Y-magnocellular pathway.Chris Fields - 1989 - Behavioral and Brain Sciences 12 (3):403-404.
  14.  17
    Pain is sufficient to activate the endorphin-mediated analgesia system.Howard L. Fields - 1980 - Behavioral and Brain Sciences 3 (2):308-308.
  15.  7
    Scale-free architectures support representational diversity.Chris Fields & James F. Glazebrook - 2020 - Behavioral and Brain Sciences 43.
    Gilead et al. propose an ontology of abstract representations based on folk-psychological conceptions of cognitive architecture. There is, however, no evidence that the experience of cognition reveals the architecture of cognition. Scale-free architectural models propose that cognition has the same computational architecture from sub-cellular to whole-organism scales. This scale-free architecture supports representations with diverse functions and levels of abstraction.
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  16.  42
    Language, speech, tools and writing. A cultural imperative.Sue Savage-Rumbaugh, William M. Fields & Jared P. Taglialatela - 2001 - Journal of Consciousness Studies 8 (5-7):5-7.
    Culture can be said to be about the business of 'self-replication'. From the moment of conception, it impresses its patterns and rhythms on the developing, infinitely plastic neuronal substrate of the fetal organism. It shapes this substrate to become preferentially sensitive to its patterns and thus to seek to replicate them as an adult. This process of neural shaping continues throughout life as the capacity of the brain to reorganize itself according to the uses to which it addresses itself (...)
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  17.  35
    Different vulnerabilities for addiction may contribute to the same phenomena and some additional interactions.Andrew James Goudie, Matt Field & Jon Cole - 2008 - Behavioral and Brain Sciences 31 (4):445-446.
    The framework for addiction offered by the target article can perhaps be simplified into fewer, more basic, vulnerabilities. covers a number of vulnerabilities, not just enhanced delay discounting. Real-world drug-use decisions involve both delay and probability discounting. The motivational salience of, and attentional bias for, drug cues may be related to a number of vulnerabilities. Interactions among vulnerabilities are of significance and complicate the application of this framework.
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  18.  41
    Some assumptions underlying Smolensky's treatment of connectionism.Eric Dietrich & Chris Fields - 1988 - Behavioral and Brain Sciences 11 (1):29-31.
  19. A field theory of consciousness.E. Roy John - 2001 - Consciousness and Cognition 10 (2):184-213.
    This article summarizes a variety of current as well as previous research in support of a new theory of consciousness. Evidence has been steadily accumulating that information about a stimulus complex is distributed to many neuronal populations dispersed throughout the brain and is represented by the departure from randomness of the temporal pattern of neural discharges within these large ensembles. Zero phase lag synchronization occurs between discharges of neurons in different brain regions and is enhanced by presentation of (...)
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  20.  40
    Electric flesh - the electromagnetic medium.Alan Dunning & Paul Woodrow - 2005 - Technoetic Arts 3 (3):155-168.
    This paper discusses the work of the Einstein's Brain Project and its representations of a dynamic world through the production of technologically sustained realities and recursive cognitive systems examining bio-electrical fields. These augmented realities combine the languages of art, science and technology, and the new structures of hypermorphism - the ever morphing, ever changing object, and the parallaxic remix - the ever moving contextual eye -to reveal the invisible elements of biological existence and the dynamics of living (...)
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  21.  29
    The “benefit” of Pavlovian conditioning – performance models, hidden costs, and innovation.Graham C. L. Davey & Andy P. Field - 2000 - Behavioral and Brain Sciences 23 (2):253-254.
    A proper evaluation of the biological significance of Pavlovian conditioning requires consideration of performance mechanisms. Domjan et al.'s definition of net benefit is simplistic, and their model promotes convergence in behaviour, ignoring the possibility of innovation.
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  22.  27
    Pavlovian perceptions and primate realities.Frank E. Poirier & Michelle Field - 2000 - Behavioral and Brain Sciences 23 (2):262-262.
    The extent to which Pavlovian feed-forward mechanisms operate in primates is debatable. Monkeys and apes are long-lived, usually gregarious, and intelligent animals reliant on learned behavior. Learning occurs during play, mother-infant interactions, and grooming. We address these situations, and are hesitant to accept Domjan et al.'s reliance on Pavlovian conditioning as a major operant in primates.
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  23.  56
    Maps of surface distributions of electrical activity in spectrally derived receptive fields of the rat's somatosensory cortex.S. King Joseph, Xie Mix, Zheng Bibo & H. Pribram Karl - 2000 - Brain and Mind 1 (3):327-349.
    This study describes the results of experiments motivated by an attempt to understand spectral processing in the cerebral cortex (DeValois and DeValois, 1988; Pribram, 1971, 1991). This level of inquiry concerns processing within a restricted cortical area rather than that by which spatially separate circuits become synchronized during certain behavioral and experiential processes. We recorded neural responses for 55 locations in the somatosensory (barrel) cortex of the rat to various combinations of spatial frequency (texture) and temporal frequency stimulation of their (...)
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  24.  32
    Handbook of Brain Theory and Neural Networks.Michael A. Arbib (ed.) - 1995 - MIT Press.
    Choice Outstanding Academic Title, 1996. In hundreds of articles by experts from around the world, and in overviews and "road maps" prepared by the editor, The Handbook of Brain Theory and Neural Networkscharts the immense progress made in recent years in many specific areas related to two great questions: How does the brain work? and How can we build intelligent machines? While many books have appeared on limited aspects of one subfield or another of brain theory and (...)
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  25. Controlled and uncontrolled English for ontology editing.Brian Donohue, Douglas Kutach, Robert Ganger, Ron Rudnicki, Tien Pham, Geeth de Mel, Dave Braines & Barry Smith - 2015 - Semantic Technology for Intelligence, Defense and Security 1523:74-81.
    Ontologies formally represent reality in a way that limits ambiguity and facilitates automated reasoning and data fusion, but is often daunting to the non-technical user. Thus, many researchers have endeavored to hide the formal syntax and semantics of ontologies behind the constructs of Controlled Natural Languages (CNLs), which retain the formal properties of ontologies while simultaneously presenting that information in a comprehensible natural language format. In this paper, we build upon previous work in this field by evaluating prospects of implementing (...)
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  26. The phenomenology of Deep Brain Stimulation-induced changes in Obsessive-Compulsive Disorder patients: An enactive affordance-based model.Sanneke de Haan, Erik Rietveld, Martin Stokhof & Damiaan Denys - 2013 - Frontiers in Human Neuroscience 7:1-14.
    People suffering from Obsessive-Compulsive Disorder (OCD) do things they do not want to do, and/or they think things they do not want to think. In about 10 percent of OCD patients, none of the available treatment options is effective. A small group of these patients is currently being treated with deep brain stimulation (DBS). Deep brain stimulation involves the implantation of electrodes in the brain. These electrodes give a continuous electrical pulse to the brain area (...)
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  27. 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 (...)
     
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  28.  47
    Nonaddictive instrumental drug use: Theoretical strengths and weaknesses.Andrew J. Goudie, Matthew J. Gullo, Abigail K. Rose, Paul Christiansen, Jonathan C. Cole, Matt Field & Harry Sumnall - 2011 - Behavioral and Brain Sciences 34 (6):314-315.
    The potential to instrumentalize drug use based upon the detection of very many different drug states undoubtedly exists, and such states may play a role in psychiatric and many other drug uses. Nevertheless, nonaddictive drug use is potentially more parsimoniously explained in terms of sensation seeking/impulsivity and drug expectations. Cultural factors also play a major role in nonaddictive drug use.
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  29.  46
    The brain basis of a "consciousness monitor": Scientific and medical significance.Bernard J. Baars - 2001 - Consciousness and Cognition 10 (2):159-164.
    Surgical patients under anesthesia can wake up unpredictably and be exposed to intense, traumatic pain. Current medical techniques cannot maintain depth of anesthesia at a perfectly stable and safe level; the depth of unconsciousness may change from moment to moment. Without an effective consciousness monitor anesthesiologists may not be able to adjust dosages in time to protect patients from pain. An estimated 40,000 to 200,000 midoperative awakenings may occur in the United States annually. E. R. John and coauthors present the (...)
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  30.  17
    Fields or firings? Comparing the spike code and the electromagnetic field hypothesis.Tam Hunt & Mostyn W. Jones - 2023 - Frontiers in Psychology 14 (1029715.):1-14.
    Where is consciousness? Neurobiological theories of consciousness look primarily to synaptic firing and “spike codes” as the physical substrate of consciousness, although the specific mechanisms of consciousness remain unknown. Synaptic firing results from electrochemical processes in neuron axons and dendrites. All neurons also produce electromagnetic (EM) fields due to various mechanisms, including the electric potential created by transmembrane ion flows, known as “local field potentials,” but there are also more meso-scale and macro-scale EM fields present in the (...). The functional role of these EM fields has long been a source of debate. We suggest that these fields, in both their local and global forms, may be the primary seat of consciousness, working as a gestalt with synaptic firing and other aspects of neuroanatomy to produce the marvelous complexity of minds. We call this assertion the “electromagnetic field hypothesis.” The neuroanatomy of the brain produces the local and global EM fields but these fields are not identical with the anatomy of the brain. These fields are produced by, but not identical with, the brain, in the same manner that twigs and leaves are produced by a tree’s branches and trunk but are not the same as the branches and trunk. As such, the EM fields represent the more granular, both spatially and temporally, aspects of the brain’s structure and functioning than the neuroanatomy of the brain. The brain’s various EM fields seem to be more sensitive to small changes than the neuroanatomy of the brain. We discuss issues with the spike code approach as well as the various lines of evidence supporting our argument that the brain’s EM fields may be the primary seat of consciousness. This evidence (which occupies most of the paper) suggests that oscillating neural EM fields may make firing in neural circuits oscillate, and these oscillating circuits. may help unify and guide conscious cognition. (shrink)
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  31.  18
    Intertheoretic identification and mind-brain reductionism.Mark Crooks - 2002 - Journal of Mind and Behavior 23 (3):193-222.
    A recurrent candidate for exemplification of intertheoretic reduction, put forward over past decades within philosophy of science, is the proposition "pitch is identical with sound-frequency." Paul Churchland revives this nominal ontological reduction, placing it beside others as "lightning is an electrical discharge," and "heat is high kinetic energy." Yet no matter whether frequency is considered physically or merely semantically, there is no conceivable format in which such an identity is viable. An analysis of objective qualia said to represent the (...)
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  32.  60
    How could brain imaging not tell us about consciousness?Bernard J. Baars - 2001 - Journal of Consciousness Studies 8 (3):24-29.
    Revonsuo argues that current brain imaging methods do not allow us to ‘discover’ consciousness. While all observational methods in science have limitations, consciousness is such a massive and pervasive phenomenon that we cannot fail to observe its effects at every level of brain organization: molecular, cellular, electrical, anatomical, metabolic, and even the ‘higher levels of electrophysiological organization that are crucial for the empirical discovery and theoretical explanation of consciousness’ . Indeed, the first major discovery in that respect (...)
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  33.  10
    Intracranial electrical brain stimulation as an approach to studying the (dis)continuum of memory experiential phenomena.Jonathan Curot, Anaïs Servais & Emmanuel J. Barbeau - 2023 - Behavioral and Brain Sciences 46:e362.
    Déjà vu and involuntary autobiographical memories (IAM) can be induced by intracranial electric brain stimulation in epileptic patients, sometimes in the same individual. We suggest that there may be different types of IAM which should be taken into account and provide several ideas to test the hypothesis of a continuity between IAM and déjà vu phenomena.
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  34.  6
    A preclinical study of deep brain stimulation in the ventral tegmental area for alleviating positive psychotic-like behaviors in mice.Chen Lu, Yifan Feng, Hongxia Li, Zilong Gao, Xiaona Zhu & Ji Hu - 2022 - Frontiers in Human Neuroscience 16.
    Deep brain stimulation is a clinical intervention for the treatment of movement disorders. It has also been applied to the treatment of psychiatric disorders such as depression, anorexia nervosa, obsessive-compulsive disorder, and schizophrenia. Psychiatric disorders including schizophrenia, bipolar disorder, and major depression can lead to psychosis, which can cause patients to lose touch with reality. The ventral tegmental area, located near the midline of the midbrain, is an important region involved in psychosis. However, the clinical application of electrical (...)
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  35.  29
    Hearts don't love and brains don't pump: Neocortical dynamic correlates of conscious experience.Paul Nunez & R. Nunez - 2007 - Journal of Consciousness Studies 14 (8):20-34.
    Human brains exhibit complex dynamic behaviour measured by external recordings of electric (EEG) and magnetic fields (MEG). These data reveal synaptic field oscillations in neocortex at millisecond temporal and centimetre spatial scales. We suggest that the neural networks underlying behaviour and cognition may be viewed as embedded in these synaptic action fields, analogous to social networks embedded in a culture. These synaptic fields may facilitate the binding of disparate networks to produce a behaviour and consciousness that appears (...)
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  36.  8
    Consciousness, Emotional Self-Regulation and the Brain. Advances in Consciousness Research.Mario Beauregard (ed.) - 2004 - John Benjamins.
    During the last decade, the study of emotional self-regulation has blossomed in a variety of sub-disciplines belonging to either psychology (developmental, clinical) or the neurosciences (cognitive and affective). Consciousness, Emotional Self-Regulation and the Brain gives an overview of the current state of this relatively new scientific field. Several areas are examined by some of the leading theorists and researchers in this emerging domain. Most chapters seek to either present theoretical and developmental perspectives about emotional self-regulation (and dysregulation), provide cutting (...)
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  37. Please Mind the Gap: How To Podcast Your Brain.Karen Spaceinvaders - 2011 - Continent 1 (2):76-77.
    continent. 1.2 (2011): 76-77. Please click to listen to the mp3 files of deep brain recordings of individual brain cells, the smallest unit of the brain, in a whole, intact living brain. Each brain region’s cells possess an electrical signature. During recordings electrical signals are transformed into sound to facilitate auditory identification of cells during a process called “mapping.” Subthalamic nucleus by continent Cortex by continent Mapping is an important step in successfully identifying (...)
     
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  38.  53
    Placing Pure Experience of Eastern Tradition into the Neurophysiology of Western Tradition.Andrew And Alexander Fingelkurts - 2019 - Cognitive Neurodynamics 13 (1):121-123.
    While the presence or absence of consciousness plays the central role in the moral/ethical decisions when dealing with patients with disorders of consciousness (DOC), recently it is criticized as not adequate due to number of reasons, among which are the lack of the uniform definition of consciousness and consequently uncertainty of diagnostic criteria for it, as well as irrelevance of some forms of consciousness for determining a patient’s interests and wishes. In her article, Dr. Specker Sullivan reexamined the meaning of (...)
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  39.  30
    The Importance of Reading Naturally: Evidence From Combined Recordings of Eye Movements and Electric Brain Potentials.Metzner Paul, von der Malsburg Titus, Vasishth Shravan & Rösler Frank - 2017 - Cognitive Science 41 (S6):1232-1263.
    How important is the ability to freely control eye movements for reading comprehension? And how does the parser make use of this freedom? We investigated these questions using coregistration of eye movements and event‐related brain potentials (ERPs) while participants read either freely or in a computer‐controlled word‐by‐word format (also known as RSVP). Word‐by‐word presentation and natural reading both elicited qualitatively similar ERP effects in response to syntactic and semantic violations (N400 and P600 effects). Comprehension was better in free reading (...)
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  40.  49
    Re-establishing the merits of electrical brain stimulation.Michel Desmurget, Zheng Song, Carmine Mottolese & Angela Sirigu - 2013 - Trends in Cognitive Sciences 17 (9):442-449.
  41.  40
    Early effects of semantic meaning on electrical brain activity.Wolfgang Skrandies - 1999 - Behavioral and Brain Sciences 22 (2):301-302.
    When words are read, the visual cortex is activated, independent of whether visual or motor associations are elicited. This word-evoked brain activity is significantly influenced by semantic meaning. Such effects occur very early after stimulus presentation (at latencies between 80 and 130 msec), indicating that semantic meaning activates different neuronal assemblies in the human visual cortex when words are processed.
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  42.  4
    Update on the Use of Transcranial Electrical Brain Stimulation to Manage Acute and Chronic COVID-19 Symptoms.Giuseppina Pilloni, Marom Bikson, Bashar W. Badran, Mark S. George, Steven A. Kautz, Alexandre Hideki Okano, Abrahão Fontes Baptista & Leigh E. Charvet - 2020 - Frontiers in Human Neuroscience 14.
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  43.  46
    Multi-Scale Computational Models for Electrical Brain Stimulation.Hyeon Seo & Sung C. Jun - 2017 - Frontiers in Human Neuroscience 11.
  44. Brain electrical traits of logical validity.F. Salto - 2021 - Scientific Reports 11 (7892).
    Neuroscience has studied deductive reasoning over the last 20 years under the assumption that deductive inferences are not only de jure but also de facto distinct from other forms of inference. The objective of this research is to verify if logically valid deductions leave any cerebral electrical trait that is distinct from the trait left by non-valid deductions. 23 subjects with an average age of 20.35 years were registered with MEG and placed into a two conditions paradigm (100 trials (...)
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  45. Brain electrical activity and subjective experience during altered states of consciousness: Ganzfeld and hypnagogic states.Jirí Wackerman, Peter Pütz, Simone Büchi, Inge Strauch & Dietrich Lehmann - 2002 - International Journal of Psychophysiology 46 (2):123-146.
  46.  90
    Motor Cognition: What Actions Tell the Self.Marc Jeannerod - 2006 - Oxford University Press.
    Our ability to acknowledge and recognise our own identity - our 'self' - is a characteristic doubtless unique to humans. Where does this feeling come from? How does the combination of neurophysiological processes coupled with our interaction with the outside world construct this coherent identity? We know that our social interactions contribute via the eyes, ears etc. However, our self is not only influenced by our senses. It is also influenced by the actions we perform and those we see others (...)
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  47.  78
    Brain organization for language from the perspective of electrical stimulation mapping.George A. Ojemann - 1983 - Behavioral and Brain Sciences 6 (2):189-206.
  48.  59
    Frontal brain electrical activity distinguishes valence and intensity of musical emotions.Louis A. Schmidt & Laurel J. Trainor - 2001 - Cognition and Emotion 15 (4):487-500.
  49.  44
    Electric Field in a Gravitational Field.Amos Harpaz - 2007 - Foundations of Physics 37 (4-5):763-772.
    The potential of a static electric charge located in a Schwarzschild gravitational field is given by Linet. The expressions for the field lines derived from this potential are calculated by numerical integration and drawn for different locations of the static charge in the gravitational field. The field lines calculated for a charge located very close to the central mass can be compared to those calculated by Hanni–Ruffini. Maxwell equations are used to analyze the dynamics of the falling electric field in (...)
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  50.  24
    Brain electric microstates and momentary conscious mind states as building blocks of spontaneous thinking: I.Daniel Lehmann, W. K. Strik, B. Henggeler & T. Koenig - 1998 - Visual Imagery and Abstract Thoughts. International Journal of Psychophysiology 29:1-11.
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