Chaos and physiology: deterministic chaos in excitable cell assemblies.
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Summary
This review examined the emerging science of deterministic chaos (nonlinear systems theory) and its application to selected physiological systems and to the neurosciences, demonstrating that the dynamics of neural mass activity reflect psychopathological states.
- Type
- review
- Published
- 1994-01-01
- Cited by
- 625
- References
- 23
- Access
- Open access
- OpenAlex
- https://openalex.org/W1872858710
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:5955147
Keywords
Computer science, Nonlinear system, Dynamical systems theory, Context (archaeology), Chaotic
References
- Variability and Chaos: Neurointegrative Principles in Self-Organization of Motor Patterns
- Chaos-and alpha-preparation in brain function
- Phase-locked rhythms in periodically stimulated heart cell aggregates.
- Dynamics of spontaneous neural activity in the simian motor cortex: The dimension of chaotic neurons
- Instability of Harmonic Responses of Onchidium Pacemaker Neuron
- Filtered noise can mimic low-dimensional chaotic attractors.
- Chaotic behavior in the Onchidium giant neuron under sinusoidal stimulation
- Lyapunov exponents and dimensions determined from experimental time series
- Altered EEG Dynamical Responsivity Associated with Normal Aging and Probable Alzheimer's Disease
- Chaos and phase locking in normal squid axons
- Simple mathematical models with very complicated dynamics
- Components of heart rate variability measured during healing of acute myocardial infarction.
- Central beta-adrenergic mechanisms may modulate ischemic ventricular fibrillation in pigs.
- Chaos and fractals in human physiology.
- The EEG is not a simple noise: strange attractors in intracranial structures
Cited by
- Spatiotemporal analysis of prepyriform, visual, auditory, and somesthetic surface EEGs in trained rabbits.
- No Evidence of Chaos in the Heart Rate Variability of Normal and Cardiac Transplant Human Subjects
- Dimensional complexity and power spectral measures of the EEG during functional versus predicative problem solving.
- Toward a quantitative description of large-scale neocortical dynamic function and EEG
- Localization of electroreceptive function in rabbits.
- Circahoralian (Ultradian) Cellular Rhythms: Initial Studies and Some Results
- Complexity quantification of dense array EEG using sample entropy analysis.
- Hypnotic Abreaction Releases Chaotic Patterns of Electrodermal Activity During Dissociation
- RAPID PREDICTION OF TRAUMA PATIENT SURVIVAL BY ANALYSIS OF HEART RATE COMPLEXITY: IMPACT OF REDUCING DATA SET SIZE
- Multiscale permutation entropy analysis of EEG recordings during sevoflurane anesthesia
- Nonlinear Dynamics Estimation of EEG Signals Accompanying Self-Paced Goal-Directed Movements
- Single-trial readiness potentials and fatigue.
- Detection of Non-Linearity in Schizophrenic Patients Using Magnetoencephalography
- Self-assembly of synthetic and biological components in water using cucurbit[8]uril
- Nonlinear Neurodynamics in Representation of a Rhythm of Speech
- Nonlinear measures and dynamics in psychophysiology of consciousness.
- Clinical Applications of EEG Analyses by Means of Tools Derived from Non-linear System Theory
- Erfassung und Auswertung von Biosignalen des Schlafes
- Assessment of Cardiovascular Regulation After Burns by Nonlinear Analysis of the Electrocardiogram
- Anàlisi de sèries temporals mitjançant la predicció amb xarxes neuronals artificials
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