BACKGROUND: Two measures of cross-frequency coupling are phase-amplitude coupling (PAC) and bicoherence. The estimation of PAC with meaningful bandwidth for the high-frequency amplitude is crucial in order to avoid misinterpretations. While recommendations on the bandwidth of PAC's amplitude component exist, there is no consensus yet. Theoretical relationships between PAC and bicoherence can provide insights on how to set PAC's filters. NEW METHOD: To illustrate this, PAC estimated from simulated and empirical data are compared to the bispectrum. We used simulations replicated from earlier studies and empirical data from human electro-encephalography and rat local field potentials. PAC's amplitude component was estimated using a filter band...
There is increasing interest in understanding how the phase and amplitude of distinct neural oscilla...
There is increasing interest in understanding how the phase and amplitude of distinct neural oscilla...
There is increasing interest in understanding how the phase and amplitude of distinct neural oscilla...
Oscillations have been increasingly recognized as a core property of neural responses that contribut...
Oscillations have been increasingly recognized as a core property of neural responses that contribut...
Oscillations have been increasingly recognized as a core property of neural responses that contribut...
Growing experimental evidence suggests an important role for cross-frequency coupling in neural proc...
AbstractBackgroundGrowing experimental evidence suggests an important role for cross-frequency coupl...
In this paper we make two contributions to the analysis of brain oscillations with CFC techniques. F...
Oscillations have been increasingly recognized as a core property of neural responses that contribut...
BACKGROUND: Cross-frequency coupling methods allow for the identification of non-linear interactions...
Background: Cross-frequency coupling methods allow for the identification of non-linear interactions...
Abstract—Phase–amplitude cross-frequency coupling (CFC)— where the phase of a low-frequency signal m...
Neuroscience time series data from a range of techniques and species reveal complex, non-linear inte...
Contains fulltext : 143490.pdf (Publisher’s version ) (Closed access)It is well es...
There is increasing interest in understanding how the phase and amplitude of distinct neural oscilla...
There is increasing interest in understanding how the phase and amplitude of distinct neural oscilla...
There is increasing interest in understanding how the phase and amplitude of distinct neural oscilla...
Oscillations have been increasingly recognized as a core property of neural responses that contribut...
Oscillations have been increasingly recognized as a core property of neural responses that contribut...
Oscillations have been increasingly recognized as a core property of neural responses that contribut...
Growing experimental evidence suggests an important role for cross-frequency coupling in neural proc...
AbstractBackgroundGrowing experimental evidence suggests an important role for cross-frequency coupl...
In this paper we make two contributions to the analysis of brain oscillations with CFC techniques. F...
Oscillations have been increasingly recognized as a core property of neural responses that contribut...
BACKGROUND: Cross-frequency coupling methods allow for the identification of non-linear interactions...
Background: Cross-frequency coupling methods allow for the identification of non-linear interactions...
Abstract—Phase–amplitude cross-frequency coupling (CFC)— where the phase of a low-frequency signal m...
Neuroscience time series data from a range of techniques and species reveal complex, non-linear inte...
Contains fulltext : 143490.pdf (Publisher’s version ) (Closed access)It is well es...
There is increasing interest in understanding how the phase and amplitude of distinct neural oscilla...
There is increasing interest in understanding how the phase and amplitude of distinct neural oscilla...
There is increasing interest in understanding how the phase and amplitude of distinct neural oscilla...