High Gamma Power Is Phase-Locked to Theta Oscillations in Human Neocortex
Explore this paper's citation graph
Summary
The results indicate that transient coupling between low- and high-frequency brain rhythms coordinates activity in distributed cortical areas, providing a mechanism for effective communication during cognitive processing in humans.
- Type
- article
- Published
- 2006-09-15
- Cited by
- 2,664
- References
- 42
- Access
- Open access
- OpenAlex
- https://openalex.org/W2165730296
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:553618
Keywords
Neocortex, Hertz, Coupling (piping), Neuroscience, Physics
References
- Cortico-Hippocampal Interplay and the Representation of Contexts in the Brain
- Gamma (40-100 Hz) oscillation in the hippocampus of the behaving rat
- Gamma Oscillations in the Entorhinal Cortex of the Freely Behaving Rat
- Phase-coupling of theta-gamma EEG rhythms during short-term memory processing.
- High gamma activity in response to deviant auditory stimuli recorded directly from human cortex.
- Hippocampal network patterns of activity in the mouse.
- Prestimulus Oscillations Enhance Psychophysical Performance in Humans
- Gamma-band synchronization in visual cortex predicts speed of change detection
- Resonate-and-fire neurons
- Electric Fields of the Brain: The Neurophysics of EEG
- Coupling Between Neuronal Firing, Field Potentials, and fMRI in Human Auditory Cortex
- Electric Fields of the Brain: The Neurophysics of Eeg
- Hemodynamic Signals Correlate Tightly with Synchronized Gamma Oscillations
- The many faces of the gamma band response to complex visual stimuli
- Tumours of the Skin and other Delayed Effects of External Beta Irradiation of Mice Using 90Sr and 32P
- A mechanism for cognitive dynamics: neuronal communication through neuronal coherence.
- An oscillatory hierarchy controlling neuronal excitability and stimulus processing in the auditory cortex.
- Neurophysiological investigation of the basis of the fMRI signal
- Human hippocampal theta activity during virtual navigation
- Theta and Gamma Oscillations during Encoding Predict Subsequent Recall
Cited by
- Reading your own mind: dynamic visualization of real-time neural signals
- High-frequency network oscillations in cerebellar cortex.
- Phase coupling between rhythmic slow activity and gamma characterizes mesiotemporal rapid-eye-movement sleep in humans.
- Hemicraniectomy: A New Model for Human Electrophysiology with High Spatio-Temporal Resolution
- Cross-frequency coupling in mesiotemporal EEG recordings of epileptic patients.
- Intrinsic Coupling between Gamma Oscillations, Neuronal Discharges, and Slow Cortical Oscillations during Human Slow-Wave Sleep
- GABAergic Synapse Properties May Explain Genetic Variation in Hippocampal Network Oscillations in Mice
- Human hippocampal theta oscillations and the formation of episodic memories
- Emergence of Physiological Oscillation Frequencies in a Computer Model of Neocortex
- Large-Scale Heterogeneous Representation of Sound Attributes in Rat Primary Auditory Cortex: From Unit Activity to Population Dynamics
- Theta power during encoding predicts subsequent‐memory performance and default mode network deactivation
- Memory, navigation and theta rhythm in the hippocampal-entorhinal system
- Parallel prefrontal pathways reach distinct excitatory and inhibitory systems in memory-related rhinal cortices
- Neurosystems: brain rhythms and cognitive processing
- Standing Waves as an Explanation for Generic Stationary Correlation Patterns in Noninvasive EEG of Focal Onset Seizures
- Functions of gamma‐band synchronization in cognition: from single circuits to functional diversity across cortical and subcortical systems
- Can spurious indications for phase synchronization due to superimposed signals be avoided?
- Stimulus-Related Neuroimaging in Task-Engaged Subjects Is Best Predicted by Concurrent Spiking
- Active inference and epistemic value
- Defining regions of interest using cross-frequency coupling in extratemporal lobe epilepsy patients
Related papers
- Embryonic mouse medial neocortex as a model system for studying the radial glial scaffold in fetal human neocortex
- Neocortex in early mammals and its subsequent variations
- Radio Waves – Part IV: on the False Electric Waves of Delusional Heinrich Hertz
- Expression of monoclonal antibody Q113 immunoreactivity in the rat cerebral cortex: Unique differential sublayering of layer I. Staining of radial glia
- Expression of CYP19 (aromatase) mRNA in different areas of the human brain.
- An investigation of phase relations between theta-rhythm potentials in the neocortex and hippocampus of rabbits
- Analysis of theta-rhythms recorded in an isolated strip of rabbit sensomotor cortex
- [Basic principles of structural asymmetry of cortex formations in the human brain].
- [Microvascularization of the human cerebral cortex during development].