Self-organized criticality as a fundamental property of neural systems

scientific article

Self-organized criticality as a fundamental property of neural systems is …
instance of (P31):
scholarly articleQ13442814
review articleQ7318358

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P356DOI10.3389/FNSYS.2014.00166
P953full work available at URLhttp://journal.frontiersin.org/article/10.3389/fnsys.2014.00166/abstract
P932PMC publication ID4171833
P698PubMed publication ID25294989
P5875ResearchGate publication ID266626997

P2093author name stringThilo Gross
Janina Hesse
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Subsampling effects in neuronal avalanche distributions recorded in vivoQ33436085
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Can power-law scaling and neuronal avalanches arise from stochastic dynamics?Q33531812
Avalanches in a stochastic model of spiking neuronsQ33632261
Adaptive self-organization in a realistic neural network model.Q48249055
Power-law distribution of phase-locking intervals does not imply critical interactionQ48265353
Self-organized criticality and scale-free properties in emergent functional neural networks.Q48344202
A new hypothesis for sleep: tuning for criticality.Q48410541
Inverted-U profile of dopamine-NMDA-mediated spontaneous avalanche recurrence in superficial layers of rat prefrontal cortex.Q48456321
Self-organized critical neural networks.Q48470130
Critical branching captures activity in living neural networks and maximizes the number of metastable States.Q48958214
Phase transitions towards criticality in a neural system with adaptive interactions.Q50352777
Power-Law Distributions in Empirical DataQ50377899
Universal critical dynamics in high resolution neuronal avalanche data.Q50490294
Real-time computation at the edge of chaos in recurrent neural networks.Q51636596
Aberrant neuronal avalanches in cortical tissue removed from juvenile epilepsy patients.Q51637580
Neuronal avalanches are diverse and precise activity patterns that are stable for many hours in cortical slice cultures.Q51667080
Topological evolution of dynamical networks: global criticality from local dynamics.Q52073936
Power laws, Pareto distributions and Zipf's lawQ55898849
Computation at the edge of chaos: Phase transitions and emergent computationQ56269308
Avalanche dynamics in a pile of riceQ56428963
How self-organized criticality works: A unified mean-field pictureQ56428965
Epileptic seizures: Quakes of the brain?Q57111808
Emerging Meso- and Macroscales from Synchronization of Adaptive NetworksQ59393029
Scale-free networks as preasymptotic regimes of superlinear preferential attachmentQ59939641
Chaos or noise: difficulties of a distinctionQ73215598
Multiscaled randomness: A possible source of 1/f noise in biologyQ78079451
Does the 1/f frequency scaling of brain signals reflect self-organized critical states?Q79202317
Scale-invariant neuronal avalanche dynamics and the cut-off in size distributionsQ33754410
Self-organized criticality in developing neuronal networksQ33769742
Spike avalanches in vivo suggest a driven, slightly subcritical brain state.Q33796435
Long-range temporal correlations and scaling behavior in human brain oscillations.Q33931692
Neurobiologically realistic determinants of self-organized criticality in networks of spiking neuronsQ33932783
Failure of adaptive self-organized criticality during epileptic seizure attacksQ34126217
EEG microstate sequences in healthy humans at rest reveal scale-free dynamicsQ34141774
Brain networks maintain a scale-free organization across consciousness, anesthesia, and recovery: evidence for adaptive reconfigurationQ34233621
Statistical properties of avalanches in networksQ34419834
Neuronal avalanches in spontaneous activity in vivoQ34430292
Adaptive reconfiguration of fractal small-world human brain functional networksQ34589600
Neuronal avalanches differ from wakefulness to deep sleep--evidence from intracranial depth recordings in humansQ34649475
Information capacity and transmission are maximized in balanced cortical networks with neuronal avalanches.Q34864832
Early-warning signals for critical transitionsQ35001007
Maximal variability of phase synchrony in cortical networks with neuronal avalanchesQ35871155
Avalanche Analysis from Multielectrode Ensemble Recordings in Cat, Monkey, and Human Cerebral Cortex during Wakefulness and SleepQ36193799
Neuronal long-range temporal correlations and avalanche dynamics are correlated with behavioral scaling lawsQ36653898
Neuronal avalanches organize as nested theta- and beta/gamma-oscillations during development of cortical layer 2/3Q36677167
Neuronal avalanches in the resting MEG of the human brainQ36880031
The criticality hypothesis: how local cortical networks might optimize information processingQ36900654
An open hypothesis: is epilepsy learned, and can it be unlearned?Q37032396
Universal organization of resting brain activity at the thermodynamic critical pointQ37111647
Macroscopic models of local field potentials and the apparent 1/f noise in brain activityQ37263208
Spontaneous cortical activity in awake monkeys composed of neuronal avalanches.Q37320735
Homeostasis of neuronal avalanches during postnatal cortex development in vitroQ37345455
Fading signatures of critical brain dynamics during sustained wakefulness in humansQ37381894
Neuronal avalanches imply maximum dynamic range in cortical networks at criticality.Q37390161
Scaling laws in cognitive sciences.Q37723747
The functional benefits of criticality in the cortex.Q38012969
Analytical investigation of self-organized criticality in neural networksQ41809212
Fractal complexity in spontaneous EEG metastable-state transitions: new vistas on integrated neural dynamicsQ41901728
Self-similar correlation function in brain resting-state functional magnetic resonance imagingQ42701161
Self-organized criticality occurs in non-conservative neuronal networks during Up statesQ42846566
Griffiths phases and the stretching of criticality in brain networks.Q44554083
Self-organization and neuronal avalanches in networks of dissociated cortical neuronsQ46617924
Finite-size effects of avalanche dynamicsQ47173911
Neuronal avalanches in neocortical circuits.Q47873994
P407language of work or nameEnglishQ1860
P921main subjectself-organizationQ609408
P304page(s)166
P577publication date2014-09-23
P1433published inFrontiers in Systems NeuroscienceQ15816495
P1476titleSelf-organized criticality as a fundamental property of neural systems
P478volume8

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