Results for '"I"brain'

983 found
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  1. OOlO-0277/94/$07.00 0 1994-Elsevier Science BV All rights reserved.J. Alegria, D. Archangeli, W. Badecker, R. Battison, D. Bekerian, I. Biederman, P. Bloom, L. Bonatti, M. Braine & P. Bryant - 1994 - Cognition 52:81-82.
     
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  2.  13
    The brain is an information processing device.I. Assumption - 1991 - In Andrei Gorea (ed.), Representations of Vision: Trends and Tacit Assumptions in Vision Research. Cambridge University Press. pp. 305.
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  3.  48
    Debating Brain Drain: May Governments Restrict Emigration?Gillian Brock & Michael I. Blake - 2014 - Oup Usa.
    Many of the most skilled and educated citizens of developing countries choose to emigrate. How may those societies respond to these facts? May they ever legitimately prevent the emigration of their citizens? Gillian Brock and Michael Blake debate these questions, and offer distinct arguments about the morality of emigration.
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  4.  25
    Speech and Music Acoustics, Rhythms of the Brain and their Impact on the Ability to Accept Information.I. V. Pavlov & V. M. Tsaplev - 2020 - Дискурс 6 (1):96-105.
    Introduction. A radical tendency in modern approaches to understanding the mechanisms of the brain is the tendency of some scientists to believe that the brain is a receptor capable of capturing thoughts; the nature of the occurrence of the thoughts themselves, however, is not to be clarified. However, speech expressing thoughts is undoubtedly the result of the work of the brain, so studies of the frequency structure of speech can be the basis for considering the material structure of the brain (...)
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  5.  11
    Brain and Mind.D. I. Dubrovskii - 1969 - Russian Studies in Philosophy 8 (1):67-86.
    Recently there has been noticeable, in the writings of some philosophers , efforts to proclaim the psychophysiological problem to be a vestige of the old Naturphilosophie. Such tendencies are in conflict with those branches of natural science that concentrate their efforts upon investigating the functions of the brain. Therefore one has to subject such trends to detailed critical examination.
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  6.  18
    Brain Pioneers and Moral Entanglement: An Argument for Post‐trial Responsibilities in Neural‐Device Trials.Sara Goering, Andrew I. Brown & Eran Klein - 2024 - Hastings Center Report 54 (1):24-33.
    We argue that in implanted neurotechnology research, participants and researchers experience what Henry Richardson has called “moral entanglement.” Participants partially entrust researchers with access to their brains and thus to information that would otherwise be private, leading to created intimacies and special obligations of beneficence for researchers and research funding agencies. One of these obligations, we argue, is about continued access to beneficial technology once a trial ends. We make the case for moral entanglement in this context through exploration of (...)
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  7.  16
    Dynamic Office Environments Improve Brain Activity and Attentional Performance Mediated by Increased Motor Activity.Diana Henz & Wolfgang I. Schöllhorn - 2019 - Frontiers in Human Neuroscience 13.
  8.  30
    Genes and experience shape brain networks of conscious control.Michael I. Posner - 2005 - In Steven Laureys (ed.), The Boundaries of Consciousness: Neurobiology and Neuropathology. Elsevier.
  9.  19
    Mining Time-Resolved Functional Brain Graphs to an EEG-Based Chronnectomic Brain Aged Index.Stavros I. Dimitriadis & Christos I. Salis - 2017 - Frontiers in Human Neuroscience 11.
  10.  22
    Mind and the Brain.V. I. Kuptsov & S. V. Kuptsova - 1987 - Russian Studies in Philosophy 26 (1):66-87.
    On November 19, 1985, a seminar on the topic "Mind and the Brain: Philosophical Aspects" was held at the M. V. Lomonosov State University at Moscow. It was organized by the journal Philosophical Sciences [Filosofskie nauki], the Division on Scientific Method and the Philosophical Problems of Natural Science of the Philosophical Society of the USSR, the administration of the "Knowledge" [Znanie] Society of the RSFSR, and the Department of Philosophy of the Natural Science Faculties of Moscow State University. Over three (...)
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  11. Predicting Events Without Miracle Neurons: Towards a Sober Consideration of Brain Data.R. I. Schubotz - 2008 - Constructivist Foundations 4 (1):25-26.
    Open peer commentary on the target article “How and Why the Brain Lays the Foundations for a Conscious Self” by Martin V. Butz. Excerpt: Surprisingly, the paper entirely neglects the issue of the dynamic properties of our environment. Focusing on (static, inanimate) objects only, it fails to acknowledge that anticipation becomes especially relevant when things around us change without being under our control: this is when we are forced to adapt quickly to new circumstances. To estimate as precisely as necessary (...)
     
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  12.  36
    Brain changes in development and aging.Fergus I. M. Craik & Ellen Bialystok - 2006 - Trends in Cognitive Sciences 10 (3):131-138.
  13.  24
    (1 other version)Language and the primate brain.Martin I. Sereno - 1991 - Cognitive Science 500:015.
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  14.  23
    Enhancing Brain Connectivity With Infra-Low Frequency Neurofeedback During Aging: A Pilot Study.Olga R. Dobrushina, Larisa A. Dobrynina, Galina A. Arina, Elena I. Kremneva, Evgenia S. Novikova, Mariia V. Gubanova, Ekaterina V. Pechenkova, Anastasia D. Suslina, Vlada V. Aristova, Viktoriya V. Trubitsyna & Marina V. Krotenkova - 2022 - Frontiers in Human Neuroscience 16.
    Aging is associated with decreased functional connectivity in the main brain networks, which can underlie changes in cognitive and emotional processing. Neurofeedback is a promising non-pharmacological approach for the enhancement of brain connectivity. Previously, we showed that a single session of infra-low frequency neurofeedback results in increased connectivity between sensory processing networks in healthy young adults. In the current pilot study, we aimed to evaluate the possibility of enhancing brain connectivity during aging with the use of infra-low frequency neurofeedback. Nine (...)
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  15. Soznanie i refleks.Ė. Sh Aĭrapetʹi︠a︡nt︠s︡, D. A. Biri︠u︡kov & V. N. Chernigovskiĭ (eds.) - 1966 - Moskva: Izd-vo "Nauka,".
     
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  16.  32
    The social brain hypothesis : an evolutionary perspective on the neurobiology of social behaviour.Susanne Shultz & R. I. M. Dunbar - 2012 - In Sarah Richmond, Geraint Rees & Sarah J. L. Edwards (eds.), I know what you're thinking: brain imaging and mental privacy. Oxford: Oxford University Press.
  17.  29
    Efficacy and Brain Imaging Correlates of an Immersive Motor Imagery BCI-Driven VR System for Upper Limb Motor Rehabilitation: A Clinical Case Report.Athanasios Vourvopoulos, Carolina Jorge, Rodolfo Abreu, Patrícia Figueiredo, Jean-Claude Fernandes & Sergi Bermúdez I. Badia - 2019 - Frontiers in Human Neuroscience 13:460149.
    To maximize brain plasticity after stroke, several rehabilitation strategies have been explored, including the use of intensive motor training, motor imagery, and action observation. Growing evidence of the positive impact of virtual reality (VR) techniques on recovery following stroke has been shown. However, most VR tools are designed to exploit active movement, and hence patients with low level of motor control cannot fully benefit from them. Consequently, the idea of directly training the central nervous system has been promoted by utilizing (...)
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  18.  16
    Unsettling `body image': Anorexic body narratives and the materialization of the `body imaginary'.Josephine Brain - 2002 - Feminist Theory 3 (2):151-168.
    This article critiques contemporary feminist theory's frequent ocularcentric readings of the anorexic body as a surface of cultural inscription or as a paradigmatic sign of the female body's alienation through sexual difference. In an initial speculative attempt to find a theoretical framework that might sustain a more generative and embodied account of anorexia, I read anorexia through Butler's theory of gender as psychic `incorporation' because she problematizes an interior/exterior topography of the subject. This Butlerian framework proves problematic because, by establishing (...)
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  19.  12
    Social Brain Matters: Stances on the Neurobiology of Social Cognition.Oscar Vilarroya & Francesc Forn I. Argimon - 2007 - Rodopi.
    This book examines philosophical and scientific implications of Neodarwinism relative to recent empirical data. It develops explanations of social behavior and cognition through analysis of mental capabilities and consideration of ethical issues. It includes debate within cognitive science among explanations of social and moral phenomena from philosophy, evolutionary and cognitive psychology, neurobiology, linguistics, and computer science. Cognitive Science (CS) provides an original corpus of scholarly work that makes explicit the import of cognitive-science research for philosophical analysis. Topics include the nature, (...)
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  20.  63
    (1 other version)This Is Your Brain on Human Rights: Moral Enhancement and Human Rights.I. Glenn Cohen - 2015 - Law and Ethics of Human Rights 9 (1):1-41.
  21. Fractals of Brain, Fractals of Mind: In Search of a Symmetry Bond.E. MacCormac & Maxim I. Stamenov (eds.) - 1996 - John Benjamins.
     
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  22.  68
    Brain death in islamic ethico-legal deliberation: Challenges for applied islamic bioethics.Aasim I. Padela, Ahsan Arozullah & Ebrahim Moosa - 2011 - Bioethics 27 (3):132-139.
    Since the 1980s, Islamic scholars and medical experts have used the tools of Islamic law to formulate ethico-legal opinions on brain death. These assessments have varied in their determinations and remain controversial. Some juridical councils such as the Organization of Islamic Conferences' Islamic Fiqh Academy (OIC-IFA) equate brain death with cardiopulmonary death, while others such as the Islamic Organization of Medical Sciences (IOMS) analogize brain death to an intermediate state between life and death. Still other councils have repudiated the notion (...)
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  23.  49
    The Divine Undergirding Of Human Knowing.Brain T. Trainor - 2010 - Philosophy and Theology 22 (1-2):205-234.
    Plato held that the Agathon (Being itself in its font) is the source or ‘common cause’ both of being(s) and of our understanding, both of the world (cosmos) and of our intellectual grasp thereof, both of the world beyond us (objectivity) that yet includes us and of the world of our inner thoughts (subjectivity) that yet stretches out to embrace the entire universe. This divine presupposition, found ‘philosophically’ in Plato and ‘religiously’ in Augustine’s doctrine of divine illumination, is that God (...)
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  24.  58
    On some claims aboutif-then.Martin D. S. Braine - 1979 - Linguistics and Philosophy 3 (1):35 - 47.
    The paper has sought to show two things. One is that the apparent variety of Stalnaker and Lewis's counterexamples is misleading. Several of their examples are quite unsatisfactory because they depend on unguarded language behavior. There is in fact only one type of counterexample that is worth serious discussion, and that has the form of Barense's.For Barense's example, I try to show that it fails as a counterexample to transitivity because one of the premisses is false within the context of (...)
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  25.  74
    Brain disease or moral condition? Wrong question.Thomas I. Cochrane - 2007 - American Journal of Bioethics 7 (1):24 – 25.
    The author comments on the article “The neurobiology of addition: Implications for voluntary control of behavior,‘ by S. E. Hyman. The author agrees with Hyman that debate persists whether addiction is a brain disease or a moral condition. The author suggests that even if we understand the neurobiology of addiction, it will make sense to seek accountability from the addict and to modify his behavior. He also suggests that no facts about neurobiology will change these moral requirements. Accession Number: 24077917; (...)
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  26.  57
    Brain Mechanisms of Cognitive Skills.Michael I. Posner, Gregory J. DiGirolamo & Diego Fernandez-Duque - 1997 - Consciousness and Cognition 6 (2-3):267-290.
    This article examines the anatomy and circuitry of skills that, like reading, calculating, recognizing, or remembering, are common abilities of humans. While the anatomical areas active are unique to each skill there are features common to all tasks. For example, all skills produce activation of a small number of widely separated neural areas that appear necessary to perform the task. These neural areas relate to internal codes that may not be observed by any external behavior nor be reportable by the (...)
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  27.  32
    Does Brain Research Make Reading Another’s Thoughts Possible?David I. Dubrovsky - 2018 - Russian Studies in Philosophy 56 (1):18-28.
    This article defends an affirmative answer to the question indicated in its title using an approach to the Mind-Brain problem developed by the author. Thought reading is possible through deciphering the brain’s neurodynamic code for a given phenomenon of subjective reality. During the past two decades, significant results in that regard have been achieved in the area of neuroscience called “brain reading.” Using examples of these results, the author examines the problem of deciphering the brain’s codes for mental phenomena, the (...)
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  28.  31
    High-Performance Bioinstrumentation for Real-Time Neuroelectrochemical Traumatic Brain Injury Monitoring.Konstantinos I. Papadimitriou, Chu Wang, Michelle L. Rogers, Sally A. N. Gowers, Chi L. Leong, Martyn G. Boutelle & Emmanuel M. Drakakis - 2016 - Frontiers in Human Neuroscience 10.
  29. Neural circuits for self-awareness: Evolutionary origins and implementation in the human brain.George I. Viamontes, Bernard D. Beitman, Claudia T. Viamontes & Jorge A. Viamontes - 2004 - In Bernard D. Beitman & Jyotsna Nair (eds.), Self-Awareness Deficits in Psychiatric Patients: Neurobiology, Assessment, and Treatment. W.W.Norton. pp. 24-111.
  30.  15
    EEG Brain Activity in Dynamic Health Qigong Training: Same Effects for Mental Practice and Physical Training?Diana Henz & Wolfgang I. Schöllhorn - 2017 - Frontiers in Psychology 8.
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  31. (1 other version)Consciousness and the Brain: A Scientific and Philosophical Inquiry.G. G. Globus, G. Maxwell & I. Savodnik - 1976 - British Journal for the Philosophy of Science 29 (1):61-68.
  32.  95
    Mirror Neurons and the Evolution of Brain and Language.Maxim I. Stamenov & Vittorio Gallese (eds.) - 2002 - John Benjamins.
    Selected contributions to the symposium on "Mirror neurons and the evolution of brain and language" held on July 5-8, 2000 in Delmenhorst, Germany.
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  33.  5
    (1 other version)Schizophrenia and Common Sense, Hipólito, I., Gonçalves, J., Pereira, J. (eds.). SpringerNature, Mind-Brain Studies.I. Hipolito, Jorge Goncalves & João G. Pereira (eds.) - 2018 - Springer.
    Schizophrenia is usually described as a fragmentation of subjective experience and the impossibility to engage in meaningful cultural and intersubjective practices. Although the term schizophrenia is less than 100 years old, madness is generally believed to have accompanied mankind through its historical and cultural ontogeny. What does it mean to be “mad”? The failure to adopt social practices or to internalize cultural values of common sense? Despite the vast amount of literature and research, it seems that the study of schizophrenia (...)
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  34. Doroga k sebe.I︠U︡r Loz - 1900 - Nʹi︠u︡-Ĭork: Izd-vo "I︠A︡".
    -- kn. 2. Materinskai͡a ėtika-nasha edinstvennai͡a nadezhda -- kn. 4, ch. 2. Ėnergeticheskai͡a diagnostika materialisticheskikh znaniĭ -- kn. 5. Ėnergogenez (ėnergetizm,, neproblema zhizni) -- kn. 6, ch. 1-2; ch. 4. Zametki ėnergetista o religii materializma -- kn. 8, ch. 1. Zhivitelʹnyi̐ rodnik ėnergetizma.
     
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  35.  30
    Eduard I. Kolchinskii. Так вспоминается … [So I Remember …]. 572 pp., figs., bibl., index. St. Petersburg: Nestor-History, 2014. P̶1,380. [REVIEW]Stephen Brain - 2016 - Isis 107 (3):679-680.
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  36.  99
    The neurological approach to the problem of perception.W. Russell Brain - 1946 - Philosophy 21 (July):133-146.
    I much appreciate the honour of being invited to deliver the first Manson lecture, which, its founder has laid down, is to be devoted to the consideration of some subject of common interest to philosophy and medicine. I cannot think of anything which better fulfils that condition than the neurological approach to the problem of perception. The neurologist holds the bridge between body and mind. Every day he meets with examples of disordered perception and he learns from observing the effects (...)
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  37. "I" and the brain.Béatrice Longuenesse - 2012 - Psychological Research 2012 (76):220-28.
    Many philosophers as well as many biological psychologists think that recent experiments in neuropsychology have definitively discredited any notion of freedom of the will. I argue that the arguments mounted against the concept of freedom of the will in the name of natural causal determinism are valuable but not new, and that they leave intact a concept of freedom of the will that is compatible with causal determinism. After explaining this concept, I argue that it is interestingly related to our (...)
     
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  38.  15
    Connectivity in deep brain stimulation for self-injurious behavior: multiple targets for a common network?Petra Heiden, Daniel Tim Weigel, Ricardo Loução, Christina Hamisch, Enes M. Gündüz, Maximilian I. Ruge, Jens Kuhn, Veerle Visser-Vandewalle & Pablo Andrade - 2022 - Frontiers in Human Neuroscience 16.
    Self-injurious behavior is associated with diverse psychiatric conditions. Sometimes, SIB is the most dominant symptom, severely restricting the psychosocial functioning and quality of life of the patients and inhibiting appropriate patient care. In severe cases, it can lead to permanent physical injuries or even death. Primary therapy consists of medical treatment and if implementable, behavioral therapy. For patients with severe SIB refractory to conventional therapy, neuromodulation can be considered as a last recourse. In scientific literature, several successful lesioning and deep (...)
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  39. A discussion of the mind-brain problem.K. R. Popper, B. I. B. Lindahl & P. Århem - 1993 - Theoretical Medicine 14 (2):167-180.
    In this paper Popper formulates and discusses a new aspect of the theory of mind. This theory is partly based on his earlier developed interactionistic theory. It takes as its point of departure the observation that mind and physical forces have several properties in common, at least the following six: both are located, unextended, incorporeal, capable of acting on bodies, dependent upon body, capable of being influenced by bodies. Other properties such as intensity and extension in time may be added. (...)
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  40.  21
    Editorial: Brain-Computer Interfaces and Augmented/Virtual Reality.Felix Putze, Athanasios Vourvopoulos, Anatole Lécuyer, Dean Krusienski, Sergi Bermúdez I. Badia, Timothy Mullen & Christian Herff - 2020 - Frontiers in Human Neuroscience 14.
  41.  16
    Long-Term Planning and Prediction: Visiting a Construction Site in the Human Brain.Ricarda I. Schubotz - 2011 - In Welsch Wolfgang, Singer Wolf & Wunder Andre (eds.), Interdisciplinary Anthropology. Springer. pp. 79--104.
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  42.  26
    The “initial” brain concept: Its uses and misuses.Ilya I. Glezer, Myron S. Jacobs & Peter J. Morgane - 1988 - Behavioral and Brain Sciences 11 (1):106-116.
    We review the evidence for the concept of the “initial” or prototype brain. We outline four possible modes of brain evolution suggested by our new findings on the evolutionary status of the dolphin brain. The four modes involve various forms of deviation from and conformity to the hypothesized initial brain type. These include examples of conservative evolution, progressive evolution, and combinations of the two in which features of one or the other become dominant. The four types of neocortical organization in (...)
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  43. From Biological to Religious Evolution.I. I. I. Rolston - unknown
    The focus immediately shifted to cognitive psychology, to the cybernetic brain, with its neural genius for mental (or "spirited") experience. The ideational powers of the..
     
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  44. (1 other version)Music and emotion: perceptual determinants, immediacy, and isolation after brain damage.I. Peretz - 1998 - Cognition 68 (2):111-141.
  45.  21
    Reelin: A novel extracellular matrix protein involved in brain lamination.Elena I. Rugarli & Andrea Ballabio - 1995 - Bioessays 17 (10):832-834.
    Normal development of the nervous system is achieved through an elaborate program of guided neuronal migration and axonal growth. In the last few years, a flood of research has dissected the molecular bases of these phenomena, and several cell‐surface and extracellular matrix molecules, which are implicated in neuronal and axonal targeting processes, have been recognized. Taking this knowledge a step further, a recent paper by Tom Curran's group(1) reports the molecular cloning of the gene deleted in the autosomal recessive mouse (...)
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  46.  37
    Consciousness, behavioural patterns and the direction of biological evolution: Implications for the mind-brain problem.B. I. B. Lindahl - 2001 - In Paavo Pylkkänen & Tere Vadén (eds.), Dimensions of Conscious Experience. John Benjamins. pp. 73-99.
  47. Julius Rocca. Galen on the Brain. Anatomical Knowledge and Physiological Speculatwn in the Second Century AD.I. Johnston - 2004 - Early Science and Medicine 9 (4):360-361.
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  48. The road to oneself.I︠U︡r Loz - 1994 - New York: Pub. House "︠I︡A".
    Bk. 3. Religion and generic nature of man (energetistic analysis of religion).
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  49.  42
    Objects tell us what action we can expect: dissociating brain areas for retrieval and exploitation of action knowledge during action observation in fMRI.Ricarda I. Schubotz, Moritz F. Wurm, Marco K. Wittmann & D. Yves von Cramon - 2014 - Frontiers in Psychology 5:83326.
    Objects are reminiscent of actions often performed with them: knife and apple remind us on peeling the apple or cutting it. Mnemonic representations of object-related actions (action codes) evoked by the sight of an object may constrain and hence facilitate recognition of unrolling actions. The present fMRI study investigated if and how action codes influence brain activation during action observation. The average number of action codes (NAC) of 51 sets of objects was rated by a group of n = 24 (...)
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  50. The hippocampus: hub of brain network communication for memory.Francesco P. Battaglia, Karim Benchenane, Anton Sirota, Cyriel M. A. Pennartz & Sidney I. Wiener - 2011 - Trends in Cognitive Sciences 15 (7):310-318.
    A complex brain network, centered on the hippocampus, supports episodic memories throughout their lifetimes. Classically, upon memory encoding during active behavior, hippocampal activity is dominated by theta oscillations (6-10Hz). During inactivity, hippocampal neurons burst synchronously, constituting sharp waves, which can propagate to other structures, theoretically supporting memory consolidation. This 'two-stage' model has been updated by new data from high-density electrophysiological recordings in animals that shed light on how information is encoded and exchanged between hippocampus, neocortex and subcortical structures such as (...)
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