Results for 'neuronal assemblies'

973 found
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  1.  76
    Neuronal assemblies: Necessity, signature, and detectability.Wolf Singer, Andreas K. Engel, A. Kreiter, M. Munk & P. R. Roelfsema - 1997 - Trends in Cognitive Sciences 1 (7):252-60.
  2.  46
    Semantic typing via neuronal assemblies.Martin Kurthen - 1999 - Behavioral and Brain Sciences 22 (2):296-297.
    One of the main aspects of a neurobiological theory of language is the problem of meaning (or semantic content) in the brain. A full explanation of meaning requires a combined approach to semantic typing and the semantic success of cerebral states or processes. Pulvermüller presents his Hebbian model of language in the brain (HML) as an account of semantic success. If his proposal turns out to be viable, however, it may also promote a theory of semantic typing.
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  3. The significance of causally coupled, stable neuronal assemblies for the psychological time arrow.Harald Atmanspacher - manuscript
    Stable neuronal assemblies are generally regarded as neural correlates of mental representations. Their temporal sequence corresponds to the experience of a direction of time, sometimes called the psychological time arrow. We show that the stability of particular, biophysically motivated models of neuronal assemblies, called coupled map lattices, is supported by causal interactions among neurons and obstructed by non-causal or anti-causal interactions among neurons. This surprising relation between causality and stability suggests that those neuronal assemblies (...)
     
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  4.  4
    Compartmentalized signaling in the soma: Coordination of electrical and protein kinase A signaling at neuronal ER‐plasma membrane junctions.Nicholas C. Vierra - 2024 - Bioessays 46 (11):2400126.
    Neuronal information processing depends on converting membrane depolarizations into compartmentalized biochemical signals that can modify neuronal activity and structure. However, our understanding of how neurons translate electrical signals into specific biochemical responses remains limited, especially in the soma where gene expression and ion channel function are crucial for neuronal activity. Here, I emphasize the importance of physically compartmentalizing action potential‐triggered biochemical reactions within the soma. Emerging evidence suggests that somatic endoplasmic reticulum–plasma membrane (ER‐PM) junctions are specialized organelles (...)
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  5. Neuronal dynamics and conscious experience: An example of reciprocal causation before epileptic seizures. [REVIEW]Michel Le Van Quyen & Claire Petitmengin - 2002 - Phenomenology and the Cognitive Sciences 1 (2):169-180.
    Neurophenomenology (Varela 1996) is not only philosophical but also empirical and experimental. Our purpose in this article is to illustrate concretely the efficiency of this approach in the field of neuroscience and, more precisely here, in epileptology. A number of recent observations have indicated that epileptic seizures do not arise suddenly simply as the effect of random fluctuations of brain activity, but require a process of pre-seizure changes that start long before. This has been reported at two different levels of (...)
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  6. Toward operational architectonics of consciousness: basic evidence from patients with severe cerebral injuries.Andrew A. Fingelkurts, Alexander A. Fingelkurts, Sergio Bagnato, Cristina Boccagni & Giuseppe Galardi - 2012 - Cognitive Processing 13 (2):111-131.
    Although several studies propose that the integrity of neuronal assemblies may underlie a phenomenon referred to as awareness, none of the known studies have explicitly investigated dynamics and functional interactions among neuronal assemblies as a function of consciousness expression. In order to address this question EEG operational architectonics analysis (Fingelkurts and Fingelkurts, 2001, 2008) was conducted in patients in minimally conscious (MCS) and vegetative states (VS) to study the dynamics of neuronal assemblies and operational (...)
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  7.  52
    Evolutionary origin of synapses and neurons - Bridging the gap.Pawel Burkhardt & Simon G. Sprecher - 2017 - Bioessays 39 (10):1700024.
    The evolutionary origin of synapses and neurons is an enigmatic subject that inspires much debate. Non-bilaterian metazoans, both with and without neurons and their closest relatives already contain many components of the molecular toolkits for synapse functions. The origin of these components and their assembly into ancient synaptic signaling machineries are particularly important in light of recent findings on the phylogeny of non-bilaterian metazoans. The evolution of synapses and neurons are often discussed only from a metazoan perspective leaving a considerable (...)
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  8.  67
    Determinants of ignition times: Topographies of cell assemblies and the activation delays they imply.Friedemann Pulvermüller & Bettina Mohr - 2004 - Behavioral and Brain Sciences 27 (2):308-311.
    The cell assembly model of language posits that words are laid down in the cortex by discrete sets of neurons distributed over specific parts of the brain. The strong internal links of these “word webs” may not only bind articulatory and acoustic knowledge of a lexical item, they may also link word and meaning; for example, by connecting neuron populations related to word forms to those of actions and perceptions to which the words refer. Therefore, the cortical activation elicited by (...)
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  9.  29
    Identifying roles for neurotransmission in circuit assembly: insights gained from multiple model systems and experimental approaches.Adam Bleckert & Rachel Ol Wong - 2011 - Bioessays 33 (1):61-72.
  10.  49
    Conscious emotional experience emerges as a function of multilevel, appraisal-driven response synchronization.Didier Grandjean, David Sander & Klaus R. Scherer - 2008 - Consciousness and Cognition 17 (2):484-495.
    In this paper we discuss the issue of the processes potentially underlying the emergence of emotional consciousness in the light of theoretical considerations and empirical evidence. First, we argue that componential emotion models, and specifically the Component Process Model , may be better able to account for the emergence of feelings than basic emotion or dimensional models. Second, we advance the hypothesis that consciousness of emotional reactions emerges when lower levels of processing are not sufficient to cope with the event (...)
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  11.  14
    Phosphorylation Hypothesis of Sleep.Koji L. Ode & Hiroki R. Ueda - 2020 - Frontiers in Psychology 11.
    Sleep is a fundamental property conserved across species. The homeostatic induction of sleep indicates the presence of a mechanism that is progressively activated by the awake state and that induces sleep. Several lines of evidence support that such function, namely, sleep need, lies in the neuronal assemblies rather than specific brain regions and circuits. However, the molecular mechanism underlying the dynamics of sleep need is still unclear. This review aims to summarize recent studies mainly in rodents indicating that (...)
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  12.  95
    Making Complexity Simpler: Multivariability and Metastability in the Brain.Andrew And Alexander Fingelkurts - 2004 - International Journal of Neuroscience 114 (7):843 - 862.
    This article provides a retrospective, current and prospective overview on developments in brain research and neuroscience. Both theoretical and empirical studies are considered, with emphasis in the concept of multivariability and metastability in the brain. In this new view on the human brain, the potential multivariability of the neuronal networks appears to be far from continuous in time, but confined by the dynamics of short-term local and global metastable brain states. The article closes by suggesting some of the implications (...)
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  13.  23
    A Geometric Milieu Inside the Brain.Arturo Tozzi, Alexander Yurkin & James F. Peters - 2022 - Foundations of Science 27 (4):1477-1488.
    The brain, rather than being homogeneous, displays an almost infinite topological genus, since it is punctured with a high number of “cavities”. We might think to the brain as a sponge equipped with countless, uniformly placed, holes. Here we show how these holes, termed topological vortexes, stand for nesting, non-concentric brain signal cycles resulting from the activity of inhibitory neurons. Such inhibitory spike activity is inversely correlated with its counterpart, i.e., the excitatory spike activity propagating throughout the whole brain tissue. (...)
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  14.  98
    Emerging from an unresponsive wakefulness syndrome: Brain plasticity has to cross a threshold level.Sergio Bagnato, Cristina Boccagni, Antonino Sant'Angelo, Alexander A. Fingelkurts, Andrew A. Fingelkurts & Giuseppe Galardi - 2013 - Neuroscience and Biobehavioral Reviews 37 (10):2721-2736.
    Unresponsive wakefulness syndrome (UWS, previously known as vegetative state) occurs after patients survive a severe brain injury. Patients suffering from UWS have lost awareness of themselves and of the external environment and do not retain any trace of their subjective experience. Current data demonstrate that neuronal functions subtending consciousness are not completely reset in UWS; however, they are reduced below the threshold required to experience consciousness. The critical factor that determines whether patients will recover consciousness is the distance of (...)
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  15. Meeting the brain on its own terms.Philipp Haueis - 2014 - Frontiers in Human Neuroscience 815 (8):86890.
    In contemporary human brain mapping, it is commonly assumed that the “mind is what the brain does”. Based on that assumption, task-based imaging studies of the last three decades measured differences in brain activity that are thought to reflect the exercise of human mental capacities (e.g., perception, attention, memory). With the advancement of resting state studies, tractography and graph theory in the last decade, however, it became possible to study human brain connectivity without relying on cognitive tasks or constructs. It (...)
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  16. Complexity Reality and Scientific Realism.Avijit Lahiri - manuscript
    We introduce the notion of complexity, first at an intuitive level and then in relatively more concrete terms, explaining the various characteristic features of complex systems with examples. There exists a vast literature on complexity, and our exposition is intended to be an elementary introduction, meant for a broad audience. -/- Briefly, a complex system is one whose description involves a hierarchy of levels, where each level is made of a large number of components interacting among themselves. The time evolution (...)
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  17.  85
    Information Flow in the Brain: Ordered Sequences of Metastable States.Andrew A. Fingelkurts & Alexander A. Fingelkurts - 2017 - Information 8 (1):22.
    In this brief overview paper, we analyse information flow in the brain. Although Shannon’s information concept, in its pure algebraic form, has made a number of valuable contributions to neuroscience, information dynamics within the brain is not fully captured by its classical description. These additional dynamics consist of self-organisation, interplay of stability/instability, timing of sequential processing, coordination of multiple sequential streams, circular causality between bottom-up and top-down operations, and information creation. Importantly, all of these processes are dynamic, hierarchically nested and (...)
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  18.  92
    The Chief Role of Frontal Operational Module of the Brain Default Mode Network in the Potential Recovery of Consciousness from the Vegetative State: A Preliminary Comparison of Three Case Reports.Andrew A. Fingelkurts, Alexander A. Fingelkurts, Sergio Bagnato, Cristina Boccagni & Giuseppe Galardi - 2016 - The Open Neuroimaging Journal 10:41-51.
    It has been argued that complex subjective sense of self is linked to the brain default-mode network (DMN). Recent discovery of heterogeneity between distinct subnets (or operational modules - OMs) of the DMN leads to a reconceptualization of its role for the experiential sense of self. Considering the recent proposition that the frontal DMN OM is responsible for the first-person perspective and the sense of agency, while the posterior DMN OMs are linked to the continuity of ‘I’ experience (including autobiographical (...)
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  19.  46
    The Hebbian synapse: Progenitor of consciousness.Willard Miranker - 2005 - Mind and Matter 3 (2):87-102.
    A dualistic approach to consciousness is presented that employs Hebbian synaptic dynamics and the basic notion of measurement in science to bridge the so-called explanatory gap between first-person consciousness and third-person science. Unconscious processing by neural circuitry characterizes (i) the neuron as a measuring instrument and (ii) the neural signal as the quantity to be measured. Hebbian synaptic dynamics, effectuating the storage of information, implements the role of an observer of a measurement outcome. The approach extends physical renormalization techniques, as (...)
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  20.  90
    Unconsciousness.Hans Flohr - 2006 - Best Practice and Research Clinical Anaesthesiology 20 (1):11-22.
    This paper reviews a theory on the physiological conditions of consciousness. The theory consists of four hypotheses: (1) The occurrence of states of consciousness depends on the formation of higher-order representations that represent the internal state of the brain itself. (2) Higher-order representations are instantiated by the spatio-temporal activity pattern of large-scale neuronal assemblies. (3) The N-methyl-D-aspartate (NMDA) synapse plays a crucial role in the generation of conscious states by implementing the binding mechanism that the brain uses to (...)
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  21.  60
    Towards an integrative theory of consciousness: Part 1 (Neurobiological and cognitive models).A. Sousa - 2013 - Mens Sana Monographs 11 (1):100.
    The study of consciousness is poised today at interesting crossroads. There has been a surge of research into various neurobiological underpinnings of consciousness in the past decade. The present article looks at the theories regarding this complex phenomenon, especially the ones that neurobiology, cognitive neuroscience and cognitive psychology have to offer. We will first discuss the origin and etymology of word consciousness and its usage. Neurobiological correlates of consciousness are discussed with structures like the ascending reticular activating system, the amygdala, (...)
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  22.  73
    Actual physical potentiality for consciousness.Andrew And Alexander Fingelkurts - 2018 - American Journal of Bioethics Neuroscience 9 (1):24-25.
    Dr. Vukov analyzing patients with disorders of consciousness, proposed that medical well-regarded policy recommendations cannot be justified by looking solely to patients’ actual levels of consciousness (minimally conscious state – MCS versus vegetative state – VS), but that they can be justified by looking to patients’ potential for consciousness. One objective way to estimate this potential (actual physical possibility) is to consider a neurophysiologically informed strategy. Ideally such strategy would utilize objective brain activity markers of consciousness/unconsciousness. The Operational Architectonics (OA) (...)
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  23.  20
    Towards a Methodological Scheme-Interpretation.Hans Lenk - 2018 - Aufklärung 5 (2):11-20.
    Any kind of knowledge, cognition, perception, and action is necessarily shaped by activation of "schemata". Any interpretation is schema activation. Schemata are epistemologically speaking "structural" activation patterns which are psychologically and neurologically speaking accommodated, adapted, "learned" by activating neuronal assemblies. Six levels of interpretative schema activations are outlined from invariable primary "interpretations" through conventional, classificatory and justificatory as well as meta-interpretations. Constitutive schema interpretations are unavoidable. Many philosophical problems will have to be reformulated or reinterpreted along these lines.
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  24. On Biological and Cognitive Neuroscience.Daniel Stoljar & Ian Gold - 1998 - Mind and Language 13 (1):110-131.
    Many philosophers and neuroscientists defend a view we express with the slogan that mental science is neuroscience. We argue that there are two ways of interpreting this view, depending on what is meant by ‘neuroscience’. On one interpretation, the view is that mental science is cognitive neuroscience, where this is the science that integrates psychology with the biology of the brain. On another interpretation, the view is that mental science is biological neuroscience, where this is the investigation concerned with the (...)
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  25.  44
    Outline of Systematic Schema Interpretation.Hans Lenk - 2000 - The Proceedings of the Twentieth World Congress of Philosophy 8:121-132.
    Any sort of cognition, perception, and action is necessarily shaped by (re)activation of “schemata.” Any interpretation is schema (re)activation. Schemata are epistemologically speaking “structural” activation patterns which are psychologically and neurologically speaking accommodated, adapted, “learned” by co- and re-activating neuronal assemblies. Six levels of interpretative schema activations (schema interpretations) are outlined from invariable primary “interpretations” through conventional, classificatory, and justificatory, as well as meta-interpretations. Constitutive schema interpretations are unavoidable. Many philosophical problems will have to be reformulated or reinterpreted (...)
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  26.  51
    Towards an integrative theory of consciousness: Part 1 (Neurobiological and cognitive models).Avinash De Sousa - 2013 - Mens Sana Monographs 11 (1):100.
    The study of consciousness is poised today at interesting crossroads. There has been a surge of research into various neurobiological underpinnings of consciousness in the past decade. The present article looks at the theories regarding this complex phenomenon, especially the ones that neurobiology, cognitive neuroscience and cognitive psychology have to offer. We will first discuss the origin and etymology of word consciousness and its usage. Neurobiological correlates of consciousness are discussed with structures like the ascending reticular activating system, the amygdala, (...)
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  27.  66
    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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  28.  77
    Words in the brain's language. PulvermÜ & Friedemann Ller - 1999 - Behavioral and Brain Sciences 22 (2):253-279.
    If the cortex is an associative memory, strongly connected cell assemblies will form when neurons in different cortical areas are frequently active at the same time. The cortical distributions of these assemblies must be a consequence of where in the cortex correlated neuronal activity occurred during learning. An assembly can be considered a functional unit exhibiting activity states such as full activation (“ignition”) after appropriate sensory stimulation (possibly related to perception) and continuous reverberation of excitation within the (...)
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  29.  32
    SMN and Gemins: 'We are family' … or are we?Ruben J. Cauchi - 2010 - Bioessays 32 (12):1077-1089.
    Gemins 2–8 and Unr‐interacting protein (UNRIP) are intimate partners of the survival motor neuron (SMN) protein, which is the determining factor for the neuromuscular disorder spinal muscular atrophy (SMA). The most documented role of SMN, Gemins and UNRIP occurs within the large macromolecular SMN complex and involves the cytoplasmic assembly of spliceosomal uridine‐rich small nuclear ribonucleoproteins (UsnRNPs), a housekeeping process critical in all cells. Several reports detailing alternative functions for SMN in either motor neurons or skeletal muscles may, however, hold (...)
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  30. Mind and Brain States.Inês Hipólito - 2015 - Epistemology and Philosophy of Science 44 (2):102-111.
    With neurons emergence, life alters itself in a remarkable way. This embodied neurons become carriers of signals, and processing devices: it begins an inexorable progression of functional complexity, from increasingly drawn behaviors to the mind and eventually to consciousness [Damasio, 2010]. In which moment has awareness arisen in the history of life? The emergence of human consciousness is associated with evolutionary developments in brain, behavior and mind, which ultimately lead to the creation of culture, a radical novelty in natural history. (...)
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  31.  96
    Mind as a nested operational architectonics of the brain.Andrew A. Fingelkurts & Alexander A. Fingelkurts - 2012 - Physics of Life Reviews 9 (1):49-50.
    The target paper of Dr. Feinberg is a testimony to an admirable scholarship and deep thoughtfulness. This paper develops a general theoretical framework of nested hierarchy in the brain that allows production of mind with consciousness. The difference between non-nested and nested hierarchies is the following. In a non-nested hierarchy the entities at higher levels of the hierarchy are physically independent from the entities at lower levels and there is strong constraint of higher upon lower levels. In a nested hierarchy, (...)
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  32.  68
    How the Hippocampus Represents Memories: Making Sense of Memory Allocation Studies.Thiago F. A. França & José M. Monserrat - 2018 - Bioessays 40 (11):800068.
    In recent years there has been a wealth of studies investigating how memories are allocated in the hippocampus. Some of those studies showed that it is possible to manipulate the identity of neurons recruited to represent a given memory without affecting the memory's behavioral expression. Those findings raised questions about how the hippocampus represents memories, with some researchers arguing that hippocampal neurons do not represent fixed stimuli. Herein, an alternative hypothesis is argued. Neurons in high‐order brain regions can be tuned (...)
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  33.  86
    Present moment, past, and future: mental kaleidoscope.Andrew A. Fingelkurts & Alexander A. Fingelkurts - 2014 - Frontiers Psychology 5:395.
    It is the every person's daily phenomenal experience that conscious states represent their contents as occurring now. Following Droege (2009) we could state that consciousness has a peculiar affinity for presence. Some researchers even argue that conscious awareness necessarily demands that mental content is somehow held “frozen” within a discrete progressive present moment. Thus, phenomenal content seems to be minimally conscious if it is integrated into a single and coherent model of reality during a “virtual window” of presence.
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  34.  60
    Long-Term (Six Years) Clinical Outcome Discrimination of Patients in the Vegetative State Could be Achieved Based on the Operational Architectonics EEG Analysis: A Pilot Feasibility Study.Andrew A. Fingelkurts, Alexander A. Fingelkurts, Sergio Bagnato, Cristina Boccagni & Giuseppe Galardi - 2016 - The Open Neuroimaging Journal 10:69-79.
    Electroencephalogram (EEG) recordings are increasingly used to evaluate patients with disorders of consciousness (DOC) or assess their prognosis outcome in the short-term perspective. However, there is a lack of information concerning the effectiveness of EEG in classifying long-term (many years) outcome in chronic DOC patients. Here we tested whether EEG operational architectonics parameters (geared towards consciousness phenomenon detection rather than neurophysiological processes) could be useful for distinguishing a very long-term (6 years) clinical outcome of DOC patients whose EEGs were registered (...)
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  35.  52
    Brain space and time in mental disorders: Paradigm shift in biological psychiatry.Andrew And Alexander Fingelkurts - 2019 - International Journal of Psychiatry in Medicine 54 (1):53-63.
    Contemporary psychiatry faces serious challenges because it has failed to incorporate accumulated knowledge from basic neuroscience, neurophilosophy, and brain–mind relation studies. As a consequence, it has limited explanatory power, and effective treatment options are hard to come by. A new conceptual framework for understanding mental health based on underlying neurobiological spatial-temporal mechanisms of mental disorders (already gained by the experimental studies) is beginning to emerge.
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  36. The Astonishing Hypothesis: The Scientific Search for the Soul.Francis Crick - 1994 - Scribners.
    [opening paragraph] -- Clark: The `astonishing hypothesis' which you put forward in your book, and which you obviously feel is very controversial, is that `You, your joys and sorrows, your memories and ambitions, your sense of personal identity and free will are, in fact, no more than the behaviour of a vast assembly of nerve cells. As Lewis Carroll's Alice might have phrased it: `You're nothing but a pack of neurons'.' But it seems to me that this is not so (...)
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  37. Temporal binding, binocular rivalry, and consciousness.Andreas K. Engel, Pascal Fries, Peter König, Michael Brecht & Wolf Singer - 1999 - Consciousness and Cognition 8 (2):128-51.
    Cognitive functions like perception, memory, language, or consciousness are based on highly parallel and distributed information processing by the brain. One of the major unresolved questions is how information can be integrated and how coherent representational states can be established in the distributed neuronal systems subserving these functions. It has been suggested that this so-called ''binding problem'' may be solved in the temporal domain. The hypothesis is that synchronization of neuronal discharges can serve for the integration of distributed (...)
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  38.  77
    The Hebbian paradigm reintegrated: Local reverberations as internal representations.Daniel J. Amit - 1995 - Behavioral and Brain Sciences 18 (4):617-626.
    The neurophysiological evidence from the Miyashita group's experiments on monkeys as well as cognitive experience common to us all suggests that local neuronal spike rate distributions might persist in the absence of their eliciting stimulus. In Hebb's cell-assembly theory, learning dynamics stabilize such self-maintaining reverberations. Quasi-quantitive modeling of the experimental data on internal representations in association-cortex modules identifies the reverberations (delay spike activity) as the internal code (representation). This leads to cognitive and neurophysiological predictions, many following directly from the (...)
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  39. Chaotic Neuron Dynamics, Synchronization, and Feature Binding: Quantum Aspects.Tito Arecchi - 2003 - Mind and Matter 1 (1):15-43.
    A central issue of cognitive neuroscience is to understand how a large collection of coupled neurons combines external signals with internal memories into new coherent patterns of meaning. An external stimulus localized at some input spreads over a large assembly of coupled neurons, building up a collective state univocally corresponding to the stimulus. Thus, the synchronization of spike trains of many individual neurons is the basis of a coherent perception. Based on recent investigations of homoclinic chaotic systems and their synchronization, (...)
     
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  40. Brain as a Complex System and the Emergence of Mind.Sahana Rajan - 2017 - Dissertation,
    The relationship between brain and mind has been extensively explored through the developments within neuroscience over the last decade. However, the ontological status of mind has remained fairly problematic due to the inability to explain all features of the mind through the brain. This inability has been considered largely due to partial knowledge of the brain. It is claimed that once we gain complete knowledge of the brain, all features of the mind would be explained adequately. However, a challenge to (...)
     
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  41.  59
    Consciousness and cognition may be mediated by multiple independent coherent ensembles.E. Roy John, Paul Easton & Robert Isenhart - 1997 - Consciousness and Cognition 6 (1):3-39.
    Short-term or working memory provides temporary storage of information in the brain after an experience and is associated with conscious awareness. Neurons sensitive to the multiple stimulus attributes comprising an experience are distributed within many brain regions. Such distributed cell assemblies, activated by an event, are the most plausible system to represent the WM of that event. Studies with a variety of imaging technologies have implicated widespread brain regions in the mediation of WM for different categories of information. Each (...)
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  42.  22
    Mechanisms and molecules in motor neuron specification and axon pathfinding.John Jacob, Adam Hacker & Sarah Guthrie - 2001 - Bioessays 23 (7):582-595.
    The vertebrate nervous system performs the most complex functions of any organ system. This feat is mediated by dedicated assemblies of neurons that must be precisely connected to one another and to peripheral tissues during embryonic development. Motor neurons, which innervate muscle and regulate autonomic functions, form an integral part of this neural circuitry. The first part of this review describes the remarkable progress in our understanding of motor neuron differentiation, which is arguably the best understood model of (...) differentiation to date. During development, the coordinate actions of inductive signals from adjacent non‐neural tissues initiate the differentiation of distinct motor neuron subclasses, with specific projection patterns, at stereotypical locations within the neural tube. Underlying this specialisation is the expression of specific homeodomain proteins, which act combinatorially to confer motor neurons with both their generic and subtype‐specific properties. Ensuring that specific motor neuron subtypes innervate the correct target structure, however, requires precise motor axon guidance mechanisms. The second half of this review focuses on how distinct motor neuron subtypes pursue highly specific projection patterns by responding differentially to spatially discrete attractive and repulsive molecular cues. The tight link between motor neuron specification and axon pathfinding appears to be established by the dominant role of homeodomain proteins in dictating the ways that navigating motor axons interpret the plethora of guidance cues impinging on growth cones. BioEssays 23:582–595, 2001. © 2001 John Wiley & Sons, Inc. (shrink)
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  43.  42
    The architecture of polarized cell growth: The unique status of elongating plant cells.František Baluška, Przemysław Wojtaszek, Dieter Volkmann & Peter Barlow - 2003 - Bioessays 25 (6):569-576.
    Polarity is an inherent feature of almost all prokaryotic and eukaryotic cells. In most eukaryotic cells, growth polarity is due to the assembly of actin‐based growing domains at particular locations on the cell periphery. A contrasting scenario is that growth polarity results from the establishment of non‐growing domains, which are actively maintained at opposite end‐poles of the cell. This latter mode of growth is common in rod‐shaped bacteria and, surprisingly, also in the majority of plant cells, which elongate along the (...)
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  44.  50
    Interplay Between Scientific Theories and Researches on the Diseases of the Nervous System in the Nineteenth-Century, Paris.Jean-Gaël Barbara - 2009 - Medicine Studies 1 (4):339-352.
    In this paper, my aim is to understand the origin of experimental and scientific models of pathogeny of the diseases of the nervous system in the Salpêtrière (Paris). I will analyse the role of the contexts of cell theory, microscopy and the advances in histological techniques in the creation of various pathogenic models, based on the concept of the cell, the Wallerian degeneration and the neurone concept. I argue that, as medicine and pathology remain autonomous in their methods and goals, (...)
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  45.  31
    Integration of function in the nervous system — a new theory.John Dempsher - 1979 - Acta Biotheoretica 28 (4):283-302.
    A new theory of synaptic function in the nervous system (Dempsher, 1978) is applied to the simplest system for integration of function in the nervous system. This system includes a sensory and motor neuron and three synaptic regions associated with those two neurons; a receptor region, an interneuronal spinal synaptic region linking the two neurons, and an effector region.Information is first received and processed at the receptor region. The processing consists of five components:1. A highly selective mechanism which allows only (...)
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    Instrumentalism in psychology.William Seager - 1990 - International Studies in the Philosophy of Science 4 (2):191 – 203.
    Abstract I aim to examine two questions. First, whether ‘folk psychology’ is a kind of theory and, second, more seriously, how are we to understand the system of principles of folk psychology. As to the first, there is a confusion between ‘theory’ and ‘science’. Much of the debate ignores the differences between these, and I argue that whereas folk psychology cannot be called a science there are grounds for calling it a theory. On the more serious question of interpretation, I (...)
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  47. 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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  48. Hallucinations: Synchronisation of thalamocortical oscillations underconstrained by sensory input.P. R. - 2003 - Consciousness and Cognition 12 (3):413-451.
    What we perceive is the product of an intrinsic process and not part of external physical reality. This notion is consistent with the philosophical position of transcendental idealism but also agrees with physiological findings on the thalamocortical system. -Frequency rhythms of discharge activity from thalamic and cortical neurons are facilitated by cholinergic arousal and resonate in thalamocortical networks, thereby transiently forming assemblies of coherent oscillations under constraints of sensory input and prefrontal attentional mechanisms. Perception and conscious experience may be (...)
     
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  49.  67
    Five Clarifications about Cultural Evolution.Liane Gabora - 2011 - Journal of Cognition and Culture 11 (1-2):61-83.
    This paper reviews and clarifies five misunderstandings about cultural evolution identified by Henrich et al.. First, cultural representations are neither discrete nor continuous; they are distributed across neurons that respond to microfeatures. This enables associations to be made, and cultural change to be generated. Second, ‘replicator dynamics’ do not ensure natural selection. The replicator notion does not capture the distinction between actively interpreted self-assembly code and passively copied self-description, which leads to a fundamental principle of natural selection: inherited information is (...)
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  50. The Role of Conscious Attention in Perception: Immanuel Kant, Alonzo Church, and Neuroscience.Hermann G. W. Burchard - 2011 - Foundations of Science 16 (1):67-99.
    Impressions, energy radiated by phenomena in the momentary environmental scene, enter sensory neurons, creating in afferent nerves a data stream. Following Kant, by our inner sense the mind perceives its own thoughts as it ties together sense data into an internalized scene. The mind, residing in the brain, logically a Language Machine, processes and stores items as coded grammatical entities. Kantian synthetic unity in the linguistic brain is able to deliver our experience of the scene as we appear to see (...)
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