Mode dynamics of interacting neural populations by bi-orthogonal spectral decomposition
Explore this paper's citation graph
Summary
It is proposed that, in biological systems, the settings of internal and external coupling strengths will affect the behaviour of the system to a greater degree than the input frequency.
- Type
- article
- Published
- 2000-02-09
- Cited by
- 4
- References
- 51
- OpenAlex
- https://openalex.org/W10664110
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:22592392
Keywords
Physics, Chemistry
References
- Visuomotor integration is associated with zero time-lag synchronization among cortical areas
- Cholinergic modulation of cortical oscillatory dynamics.
- Multiple modes of activity in a model neuron suggest a novel mechanism for the effects of neuromodulators.
- Thalamic Networks for Relay and Modulation
- Analysis of neural excitability and oscillations
- Spatiotemporal Patterns of Spindle Oscillations in Cortex and Thalamus
- A mechanism for generation of long-range synchronous fast oscillations in the cortex
- Spike synchronization and rate modulation differentially involved in motor cortical function.
- Synchronization of low-frequency rhythms in corticothalamic networks.
- Information coding on the basis of synchronization of neuronal activity.
- A quantitative description of membrane current and its application to conduction and excitation in nerve
- Relationship between posterior thalamic nucleus unit activity and parietal cortical rhythms (beta) in the waking cat.
- SPATIAL, TEMPORAL, AND GLOBAL MODE ENTROPY IN A THALAMO–CORTICAL NETWORK
- Oscillations, complex spatiotemporal behavior, and information transport in networks of excitatory and inhibitory neurons.
- Temporal structure in spatially organized neuronal ensembles: a role for interneuronal networks.
- Low-dimensional models of coherent structures in turbulence
- Synchrony in Excitatory Neural Networks
- On measures of disorder in globally coupled oscillators
- Numerical Recipes: The Art of Scientific Computing (3rd Edition) is written by William H. Press, Saul A. Teukolsky, William T. Vetterling, and Brian P. Flannery, and published by Cambridge University Press, © 2007, hardback, ISBN 978-0-521-88068-8, 1235 pp.
- Regulation of excitatory and inhibitory neurotransmitter-gated ion channels by protein phosphorylation.
Cited by
- Dynamic regulation of EEG power and coherence is lost early and globally in probable DAT
- Neural pattern dynamics in an oscillator model of the thalamo-reticular system.
- Low-dimensional dynamics and bifurcations in oscillator networks via bi-orthogonal spectral decomposition
- Burst and spike synchronization of coupled neural oscillators
Related papers
No related papers recorded.