Phase synchronization of neuronal oscillations in specific frequency bands coordinates anatomically distributed neuronal processing and communication. Typically, oscillations and synchronization take place concurrently in many distinct frequencies, which serve separate computational roles in cognitive functions. While within-frequency phase synchronization has been studied extensively, less is known about the mechanisms that govern neuronal processing distributed across frequencies and brain regions. Such integration of processing between frequencies could be achieved via cross-frequency coupling (CFC), either by phase-amplitude coupling (PAC) or by n:m-cross-frequency phase synchrony (CFS). So far, studies have mostly focused on local CFC ...
Frequency-specific oscillations and phase-coupling of neuronal populations are essential mechanisms ...
Neuroscience time series data from a range of techniques and species reveal complex, non-linear inte...
Frequency-specific oscillations and phase-coupling of neuronal populations are essential mechanisms ...
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 ...
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 ...
Phase synchronization of neuronal oscillations in specific frequency bands coordinates anatomically ...
The functional brain connectivity has been studied by analyzing synchronization between dynamic osci...
Neuronal oscillations and their inter‐areal synchronization may be instrumental in regulating neuron...
Neuronal oscillations and their inter‐areal synchronization may be instrumental in regulating neuron...
Synchronization of neuronal activity, often associated with network oscillations, is thought to prov...
Frequency-specific oscillations and phase-coupling of neuronal populations are essential mechanisms ...
Frequency-specific oscillations and phase-coupling of neuronal populations are essential mechanisms ...
Neuroscience time series data from a range of techniques and species reveal complex, non-linear inte...
Frequency-specific oscillations and phase-coupling of neuronal populations are essential mechanisms ...
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 ...
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 ...
Phase synchronization of neuronal oscillations in specific frequency bands coordinates anatomically ...
The functional brain connectivity has been studied by analyzing synchronization between dynamic osci...
Neuronal oscillations and their inter‐areal synchronization may be instrumental in regulating neuron...
Neuronal oscillations and their inter‐areal synchronization may be instrumental in regulating neuron...
Synchronization of neuronal activity, often associated with network oscillations, is thought to prov...
Frequency-specific oscillations and phase-coupling of neuronal populations are essential mechanisms ...
Frequency-specific oscillations and phase-coupling of neuronal populations are essential mechanisms ...
Neuroscience time series data from a range of techniques and species reveal complex, non-linear inte...
Frequency-specific oscillations and phase-coupling of neuronal populations are essential mechanisms ...