Intrinsic Coupling between Gamma Oscillations, Neuronal Discharges, and Slow Cortical Oscillations during Human Slow-Wave Sleep
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Summary
In the first electrocorticograms, Richardaton connected a mirror galvanometer to exposed rabbit brains and observed slow sleep-related fluctuations and the then-fledgling technique of scalp EEG to classify sleep stages in humans was applied.
- Type
- article
- Published
- 2010-10-27
- Cited by
- 13
- References
- 25
- Access
- Open access
- OpenAlex
- https://openalex.org/W20980583
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:15609572
Keywords
Environmental science, Astrobiology, Atmospheric sciences, Geology, Physics
References
- Intracellular analysis of relations between the slow (< 1 Hz) neocortical oscillation and other sleep rhythms of the electroencephalogram
- Eye movement patterns in REM sleep.
- The Human K-Complex Represents an Isolated Cortical Down-State
- How Ongoing Fluctuations in Human Visual Cortex Predict Perceptual Awareness: Baseline Shift versus Decision Bias
- Frequency-band coupling in surface EEG reflects spiking activity in monkey visual cortex.
- Endogenous Electric Fields May Guide Neocortical Network Activity
- Cerebral states during sleep, as studied by human brain potentials
- Correlation of high-frequency oscillations with the sleep-wake cycle and cognitive activity in humans.
- Theta and Gamma Coordination of Hippocampal Networks during Waking and Rapid Eye Movement Sleep
- State-dependent spike timing relationships between hippocampal and prefrontal circuits during sleep
- Gamma EEG dynamics in neocortex and hippocampus during human wakefulness and sleep
- Relationship between task‐related gamma oscillations and BOLD signal: New insights from combined fMRI and intracranial EEG
- Phase-locking of hippocampal interneurons' membrane potential to neocortical up-down states
- Large-Scale Microelectrode Recordings of High-Frequency Gamma Oscillations in Human Cortex during Sleep
- Effect of sleep stage on interictal high‐frequency oscillations recorded from depth macroelectrodes in patients with focal epilepsy
- Triggering sleep slow waves by transcranial magnetic stimulation
- Human gamma-frequency oscillations associated with attention and memory.
- Laminar analysis of slow wave activity in humans.
- Ripples in the medial temporal lobe are relevant for human memory consolidation.
- Spontaneous neural activity during human slow wave sleep
Cited by
- Large-Scale Heterogeneous Representation of Sound Attributes in Rat Primary Auditory Cortex: From Unit Activity to Population Dynamics
- Sleep spindle and K-complex detection using tunable Q-factor wavelet transform and morphological component analysis
- On noninvasive source imaging of the human K-complex.
- Human Gamma Oscillations during Slow Wave Sleep
- Learning machines and sleeping brains: Automatic sleep stage classification using decision-tree multi-class support vector machines.
- Spanning the rich spectrum of the human brain: slow waves to gamma and beyond
- Noninvasive Source Localization of Extended Cortical Sources: Electroencephalographic and Magnetoencephalographic Source Imaging of Human K-complexes and Temporal Lobe Spikes
- Neural oscillations in the infralimbic cortex after electrical stimulation of the amygdala. Relevance to acute stress processing
- High‐Frequency Oscillations in the Normal Human Brain
- Gamma-band modulation in the human amygdala during reaching movements
- On Evolution and the Quantum and Classical Regimes in Brain Function
- On the Nature of Consciousness
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