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    Language: English

    Published by Springer, 2012

    1461425506 / 9781461425502

    Series: Book 4 of 17 - Springer Series in Computational Neuroscience

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    Taschenbuch. Condition: Neu. Modeling Phase Transitions in the Brain | D. Alistair Steyn-Ross (u. a.) | Taschenbuch | Springer Series in Computational Neuroscience | xxx | Englisch | 2012 | Springer | EAN 9781461425502 | Verantwortliche Person für die EU: Springer Verlag GmbH, Tiergartenstr. 17, 69121 Heidelberg, juergen[dot]hartmann[at]springer[dot]com | Anbieter: preigu.

  • Language: English

    Published by Springer, 2010

    1441907955 / 9781441907950

    Series: Book 4 of 17 - Springer Series in Computational Neuroscience

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    Condition: New. In English.

  • Language: English

    Published by Springer, 2012

    1461425506 / 9781461425502

    Series: Book 4 of 17 - Springer Series in Computational Neuroscience

    • Softcover

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    Condition: New. In English.

  • Language: English

    Published by Springer, 2010

    1441907955 / 9781441907950

    Series: Book 4 of 17 - Springer Series in Computational Neuroscience

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    Condition: New. pp. 336.

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    Paperback. Condition: Brand New. 375 pages. 9.25x6.10x0.76 inches. In Stock.

  • Language: English

    Published by Springer Verlag, 2010

    1441907955 / 9781441907950

    Series: Book 4 of 17 - Springer Series in Computational Neuroscience

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    Hardcover. Condition: Brand New. 350 pages. 9.75x6.50x1.00 inches. In Stock.

  • Language: English

    Published by Springer, 2010

    1441907955 / 9781441907950

    Series: Book 4 of 17 - Springer Series in Computational Neuroscience

    • Hardcover

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    Buch. Condition: Neu. Druck auf Anfrage Neuware - Printed after ordering - Foreword by Walter J. Freeman.The induction of unconsciousness using anesthetic agents demonstrates that the cerebral cortex can operate in two very different behavioral modes: alert and responsive vs. unaware and quiescent. But the states of wakefulness and sleep are not single-neuron properties---they emerge as bulk properties of cooperating populations of neurons, with the switchover between states being similar to the physical change of phase observed when water freezes or ice melts. Some brain-state transitions, such as sleep cycling, anesthetic induction, epileptic seizure, are obvious and detected readily with a few EEG electrodes; others, such as the emergence of gamma rhythms during cognition, or the ultra-slow BOLD rhythms of relaxed free-association, are much more subtle. The unifying theme of this book is the notion that all of these bulk changes in brain behavior can be treated as phase transitions between distinct brain states.Modeling Phase Transitions in the Brain contains chapter contributions from leading researchers who apply state-space methods, network models, and biophysically-motivated continuum approaches to investigate a range of neuroscientifically relevant problems that include analysis of nonstationary EEG time-series; network topologies that limit epileptic spreading; saddle--node bifurcations for anesthesia, sleep-cycling, and the wake--sleep switch; prediction of dynamical and noise-induced spatiotemporal instabilities underlying BOLD, alpha-, and gamma-band Hopf oscillations, gap-junction-moderated Turing structures, and Hopf-Turing interactions leading to cortical waves.

  • Language: English

    Published by Springer, 2012

    1461425506 / 9781461425502

    Series: Book 4 of 17 - Springer Series in Computational Neuroscience

    • Softcover

    Seller: AHA-BUCH GmbH, Einbeck, GermanyAHA-BUCH GmbH

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    Taschenbuch. Condition: Neu. Druck auf Anfrage Neuware - Printed after ordering - Foreword by Walter J. Freeman.The induction of unconsciousness using anesthetic agents demonstrates that the cerebral cortex can operate in two very different behavioral modes: alert and responsive vs. unaware and quiescent. But the states of wakefulness and sleep are not single-neuron properties---they emerge as bulk properties of cooperating populations of neurons, with the switchover between states being similar to the physical change of phase observed when water freezes or ice melts. Some brain-state transitions, such as sleep cycling, anesthetic induction, epileptic seizure, are obvious and detected readily with a few EEG electrodes; others, such as the emergence of gamma rhythms during cognition, or the ultra-slow BOLD rhythms of relaxed free-association, are much more subtle. The unifying theme of this book is the notion that all of these bulk changes in brain behavior can be treated as phase transitions between distinct brain states.Modeling Phase Transitions in the Brain contains chapter contributions from leading researchers who apply state-space methods, network models, and biophysically-motivated continuum approaches to investigate a range of neuroscientifically relevant problems that include analysis of nonstationary EEG time-series; network topologies that limit epileptic spreading; saddle--node bifurcations for anesthesia, sleep-cycling, and the wake--sleep switch; prediction of dynamical and noise-induced spatiotemporal instabilities underlying BOLD, alpha-, and gamma-band Hopf oscillations, gap-junction-moderated Turing structures, and Hopf-Turing interactions leading to cortical waves.

  • Language: English

    Published by Springer, 2010

    1441907955 / 9781441907950

    Series: Book 4 of 17 - Springer Series in Computational Neuroscience

    • Hardcover

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    Hardcover. Condition: Like New. LIKE NEW. SHIPS FROM MULTIPLE LOCATIONS. book.

  • Language: English

    Published by Springer, 2012

    1461425506 / 9781461425502

    Series: Book 4 of 17 - Springer Series in Computational Neuroscience

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  • Language: English

    Published by Springer, 2010

    1441907955 / 9781441907950

    Series: Book 4 of 17 - Springer Series in Computational Neuroscience

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  • Language: English

    Published by Springer New York, 2012

    1461425506 / 9781461425502

    Series: Book 4 of 17 - Springer Series in Computational Neuroscience

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    Condition: New. Dieser Artikel ist ein Print on Demand Artikel und wird nach Ihrer Bestellung fuer Sie gedruckt. Foreword by Walter J. FreemanPresents recent developments in EEG data analysisPlaces cortical modelling in historical contextProvides an overview of the range of modern mass-action continuum approaches used to model cortical function.

  • Language: English

    Published by Springer New York, 2010

    1441907955 / 9781441907950

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    Gebunden. Condition: New. Dieser Artikel ist ein Print on Demand Artikel und wird nach Ihrer Bestellung fuer Sie gedruckt. Foreword by Walter J. FreemanPresents recent developments in EEG data analysisPlaces cortical modelling in historical contextProvides an overview of the range of modern mass-action continuum approaches used to model cortical function.

  • Language: English

    Published by Springer New York Feb 2010, 2010

    1441907955 / 9781441907950

    Series: Book 4 of 17 - Springer Series in Computational Neuroscience

    • Hardcover
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    Buch. Condition: Neu. This item is printed on demand - it takes 3-4 days longer - Neuware - Foreword by Walter J. Freeman.The induction of unconsciousness using anesthetic agents demonstrates that the cerebral cortex can operate in two very different behavioral modes: alert and responsive vs. unaware and quiescent. But the states of wakefulness and sleep are not single-neuron properties---they emerge as bulk properties of cooperating populations of neurons, with the switchover between states being similar to the physical change of phase observed when water freezes or ice melts. Some brain-state transitions, such as sleep cycling, anesthetic induction, epileptic seizure, are obvious and detected readily with a few EEG electrodes; others, such as the emergence of gamma rhythms during cognition, or the ultra-slow BOLD rhythms of relaxed free-association, are much more subtle. The unifying theme of this book is the notion that all of these bulk changes in brain behavior can be treated as phase transitions between distinct brain states.Modeling Phase Transitions in the Brain contains chapter contributions from leading researchers who apply state-space methods, network models, and biophysically-motivated continuum approaches to investigate a range of neuroscientifically relevant problems that include analysis of nonstationary EEG time-series; network topologies that limit epileptic spreading; saddle--node bifurcations for anesthesia, sleep-cycling, and the wake--sleep switch; prediction of dynamical and noise-induced spatiotemporal instabilities underlying BOLD, alpha-, and gamma-band Hopf oscillations, gap-junction-moderated Turing structures, and Hopf-Turing interactions leading to cortical waves. 336 pp. Englisch.

  • Language: English

    Published by Springer New York Mai 2012, 2012

    1461425506 / 9781461425502

    Series: Book 4 of 17 - Springer Series in Computational Neuroscience

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    Taschenbuch. Condition: Neu. This item is printed on demand - it takes 3-4 days longer - Neuware - Foreword by Walter J. Freeman.The induction of unconsciousness using anesthetic agents demonstrates that the cerebral cortex can operate in two very different behavioral modes: alert and responsive vs. unaware and quiescent. But the states of wakefulness and sleep are not single-neuron properties---they emerge as bulk properties of cooperating populations of neurons, with the switchover between states being similar to the physical change of phase observed when water freezes or ice melts. Some brain-state transitions, such as sleep cycling, anesthetic induction, epileptic seizure, are obvious and detected readily with a few EEG electrodes; others, such as the emergence of gamma rhythms during cognition, or the ultra-slow BOLD rhythms of relaxed free-association, are much more subtle. The unifying theme of this book is the notion that all of these bulk changes in brain behavior can be treated as phase transitions between distinct brain states.Modeling Phase Transitions in the Brain contains chapter contributions from leading researchers who apply state-space methods, network models, and biophysically-motivated continuum approaches to investigate a range of neuroscientifically relevant problems that include analysis of nonstationary EEG time-series; network topologies that limit epileptic spreading; saddle--node bifurcations for anesthesia, sleep-cycling, and the wake--sleep switch; prediction of dynamical and noise-induced spatiotemporal instabilities underlying BOLD, alpha-, and gamma-band Hopf oscillations, gap-junction-moderated Turing structures, and Hopf-Turing interactions leading to cortical waves. 336 pp. Englisch.

  • Language: English

    Published by Springer New York, Springer US Feb 2010, 2010

    1441907955 / 9781441907950

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    Buch. Condition: Neu. This item is printed on demand - Print on Demand Titel. Neuware -Foreword by Walter J. Freeman.The induction of unconsciousness using anesthetic agents demonstrates that the cerebral cortex can operate in two very different behavioral modes: alert and responsive vs. unaware and quiescent. But the states of wakefulness and sleep are not single-neuron properties---they emerge as bulk properties of cooperating populations of neurons, with the switchover between states being similar to the physical change of phase observed when water freezes or ice melts. Some brain-state transitions, such as sleep cycling, anesthetic induction, epileptic seizure, are obvious and detected readily with a few EEG electrodes; others, such as the emergence of gamma rhythms during cognition, or the ultra-slow BOLD rhythms of relaxed free-association, are much more subtle. The unifying theme of this book is the notion that all of these bulk changes in brain behavior can be treated as phase transitions between distinct brain states.Modeling Phase Transitions in the Brain contains chapter contributions from leading researchers who apply state-space methods, network models, and biophysically-motivated continuum approaches to investigate a range of neuroscientifically relevant problems that include analysis of nonstationary EEG time-series; network topologies that limit epileptic spreading; saddle--node bifurcations for anesthesia, sleep-cycling, and the wake--sleep switch; prediction of dynamical and noise-induced spatiotemporal instabilities underlying BOLD, alpha-, and gamma-band Hopf oscillations, gap-junction-moderated Turing structures, and Hopf-Turing interactions leading to cortical waves.Springer-Verlag GmbH, Tiergartenstr. 17, 69121 Heidelberg 336 pp. Englisch.

  • Language: English

    Published by Springer New York, Springer Mai 2012, 2012

    1461425506 / 9781461425502

    Series: Book 4 of 17 - Springer Series in Computational Neuroscience

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    Taschenbuch. Condition: Neu. This item is printed on demand - Print on Demand Titel. Neuware -Foreword by Walter J. Freeman.The induction of unconsciousness using anesthetic agents demonstrates that the cerebral cortex can operate in two very different behavioral modes: alert and responsive vs. unaware and quiescent. But the states of wakefulness and sleep are not single-neuron properties---they emerge as bulk properties of cooperating populations of neurons, with the switchover between states being similar to the physical change of phase observed when water freezes or ice melts. Some brain-state transitions, such as sleep cycling, anesthetic induction, epileptic seizure, are obvious and detected readily with a few EEG electrodes; others, such as the emergence of gamma rhythms during cognition, or the ultra-slow BOLD rhythms of relaxed free-association, are much more subtle. The unifying theme of this book is the notion that all of these bulk changes in brain behavior can be treated as phase transitions between distinct brain states.Modeling Phase Transitions in the Brain contains chapter contributions from leading researchers who apply state-space methods, network models, and biophysically-motivated continuum approaches to investigate a range of neuroscientifically relevant problems that include analysis of nonstationary EEG time-series; network topologies that limit epileptic spreading; saddle--node bifurcations for anesthesia, sleep-cycling, and the wake--sleep switch; prediction of dynamical and noise-induced spatiotemporal instabilities underlying BOLD, alpha-, and gamma-band Hopf oscillations, gap-junction-moderated Turing structures, and Hopf-Turing interactions leading to cortical waves.Springer-Verlag GmbH, Tiergartenstr. 17, 69121 Heidelberg 336 pp. Englisch.

  • Language: English

    Published by Springer, 2010

    1441907955 / 9781441907950

    Series: Book 4 of 17 - Springer Series in Computational Neuroscience

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    Condition: New. Print on Demand pp. 336 103 Illus. (24 Col.).

  • Language: English

    Published by Springer, 2010

    1441907955 / 9781441907950

    Series: Book 4 of 17 - Springer Series in Computational Neuroscience

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    Condition: New. PRINT ON DEMAND pp. 336.