The functional brain connectivity has been studied by analyzing synchronization between dynamic oscillations of identical frequency or between different frequencies of distinct brain areas. It has been hypothesized that cross-frequency coupling (CFC) between different frequency bands is the carrier mechanism for the coordination of global and local neural processes and hence supports the distributed information processing in the brain. In the present study, we attempt to study the dynamic evolution of CFC at resting-state and during a mental task. The concept of CFC microstates (CFCμstates) is introduced as emerged short-lived patterns of CFC. We analyzed dynamic CFC (dCFC) at resting-state and during a comparison task by adopting a phase-a...
Cross-frequency coupling (CFC) is thought to represent a basic mechanism of functional integration o...
It is generally assumed that different electroencephalogram (EEG) frequency bands are somehow relate...
The human brain is functionally organized into large-scale neural networks that are dynamically inte...
The functional brain connectivity has been studied by analyzing synchronization between dynamic osci...
Phase synchronization of neuronal oscillations in specific frequency bands coordinates anatomically ...
Phase synchronization of neuronal oscillations in specific frequency bands coordinates anatomically ...
Phase synchronization of neuronal oscillations in specific frequency bands coordinates anatomically ...
Summarization: Recent studies have investigated the possible role of dynamic functional connectivity...
Cross-frequency, phase-to-amplitude coupling (PAC) between neuronal oscillations at rest may serve a...
Synchronous, rhythmic changes in the membrane polarization of neurons form oscillations in local fie...
© 2018, The Author(s). Frequency-specific oscillations and phase-coupling of neuronal populations ar...
Brain functional connectivity measured by resting-state fMRI varies over multiple time scales, and r...
Although neural interactions are usually characterized only by their coupling strength and direction...
Here we demonstrate the suitability of a local mutual information measure for estimating the tempora...
Available online 3 June 2019.The human brain is functionally organized into large-scale neural netwo...
Cross-frequency coupling (CFC) is thought to represent a basic mechanism of functional integration o...
It is generally assumed that different electroencephalogram (EEG) frequency bands are somehow relate...
The human brain is functionally organized into large-scale neural networks that are dynamically inte...
The functional brain connectivity has been studied by analyzing synchronization between dynamic osci...
Phase synchronization of neuronal oscillations in specific frequency bands coordinates anatomically ...
Phase synchronization of neuronal oscillations in specific frequency bands coordinates anatomically ...
Phase synchronization of neuronal oscillations in specific frequency bands coordinates anatomically ...
Summarization: Recent studies have investigated the possible role of dynamic functional connectivity...
Cross-frequency, phase-to-amplitude coupling (PAC) between neuronal oscillations at rest may serve a...
Synchronous, rhythmic changes in the membrane polarization of neurons form oscillations in local fie...
© 2018, The Author(s). Frequency-specific oscillations and phase-coupling of neuronal populations ar...
Brain functional connectivity measured by resting-state fMRI varies over multiple time scales, and r...
Although neural interactions are usually characterized only by their coupling strength and direction...
Here we demonstrate the suitability of a local mutual information measure for estimating the tempora...
Available online 3 June 2019.The human brain is functionally organized into large-scale neural netwo...
Cross-frequency coupling (CFC) is thought to represent a basic mechanism of functional integration o...
It is generally assumed that different electroencephalogram (EEG) frequency bands are somehow relate...
The human brain is functionally organized into large-scale neural networks that are dynamically inte...