Contains fulltext : 99195.pdf (publisher's version ) (Open Access)Spatially distributed phase-amplitude coupling (PAC) is a possible mechanism for selectively routing information through neuronal networks. If so, two key properties determine its selectivity and flexibility, phase diversity over space, and frequency diversity. To investigate these issues, we analyzed 42 human electrocorticographic recordings from 27 patients performing a working memory task. We demonstrate that (1) spatially distributed PAC occurred at distances > 10 cm, (2) involved diverse preferred coupling phases, and (3) involved diverse frequencies. Using a novel technique [N-way decomposition based on the PARAFAC (for Parallel Factor analysis) model]...
Intrinsic coupling of neuronal assemblies constitutes a key feature of ongoing brain activity, yield...
Phase synchronization among neuronal oscillations within the same frequency band has been hypothesiz...
Neuroscience time series data from a range of techniques and species reveal complex, non-linear inte...
Spatially distributed phase-amplitude coupling (PAC) is a possible mechanism for selectively routing...
Spatially distributed phase-amplitude coupling (PAC) is a possible mechanism for selectively routing...
Spatially distributed coherent oscillations provide temporal windows of excitability that allow for ...
Phase synchronization of neuronal oscillations in specific frequency bands coordinates anatomically ...
Phase consistent neuronal oscillations are ubiquitous in electrophysiological recordings, and they m...
Phase synchronization of neuronal oscillations in specific frequency bands coordinates anatomically ...
Phase synchronization of neuronal oscillations in specific frequency bands coordinates anatomically ...
Contains fulltext : 143490.pdf (Publisher’s version ) (Closed access)It is well es...
Phase synchronization of neuronal oscillations in specific frequency bands coordinates anatomically ...
Phase synchronization of neuronal oscillations in specific frequency bands coordinates anatomically ...
It is well established that neuronal oscillations at different frequencies interact with each other ...
Contains fulltext : 155903.pdf (publisher's version ) (Closed access)Neuronal osci...
Intrinsic coupling of neuronal assemblies constitutes a key feature of ongoing brain activity, yield...
Phase synchronization among neuronal oscillations within the same frequency band has been hypothesiz...
Neuroscience time series data from a range of techniques and species reveal complex, non-linear inte...
Spatially distributed phase-amplitude coupling (PAC) is a possible mechanism for selectively routing...
Spatially distributed phase-amplitude coupling (PAC) is a possible mechanism for selectively routing...
Spatially distributed coherent oscillations provide temporal windows of excitability that allow for ...
Phase synchronization of neuronal oscillations in specific frequency bands coordinates anatomically ...
Phase consistent neuronal oscillations are ubiquitous in electrophysiological recordings, and they m...
Phase synchronization of neuronal oscillations in specific frequency bands coordinates anatomically ...
Phase synchronization of neuronal oscillations in specific frequency bands coordinates anatomically ...
Contains fulltext : 143490.pdf (Publisher’s version ) (Closed access)It is well es...
Phase synchronization of neuronal oscillations in specific frequency bands coordinates anatomically ...
Phase synchronization of neuronal oscillations in specific frequency bands coordinates anatomically ...
It is well established that neuronal oscillations at different frequencies interact with each other ...
Contains fulltext : 155903.pdf (publisher's version ) (Closed access)Neuronal osci...
Intrinsic coupling of neuronal assemblies constitutes a key feature of ongoing brain activity, yield...
Phase synchronization among neuronal oscillations within the same frequency band has been hypothesiz...
Neuroscience time series data from a range of techniques and species reveal complex, non-linear inte...