Inter-areal synchronization of neuronal oscillations at frequencies below ~100 Hz is a pervasive feature of neuronal activity and is thought to regulate communication in neuronal circuits. In contrast, faster activities and oscillations have been considered to be largely local-circuit-level phenomena without large-scale synchronization between brain regions. We show, using human intracerebral recordings, that 100–400 Hz high-frequency oscillations (HFOs) may be synchronized between widely distributed brain regions. HFO synchronization expresses individual frequency peaks and exhibits reliable connectivity patterns that show stable community structuring. HFO synchronization is also characterized by a laminar profile opposite to that of lower...
Synchronization of neuronal activity, often associated with network oscillations, is thought to prov...
Spatially distributed coherent oscillations provide temporal windows of excitability that allow for ...
Neuronal oscillations and their inter‐areal synchronization may be instrumental in regulating neuron...
Inter-areal synchronization of neuronal oscillations at frequencies below ~100 Hz is a pervasive fea...
Inter-areal synchronization of neuronal oscillations at frequencies below similar to 100Hz is a perv...
Inter-areal synchronization of neuronal oscillations at frequencies below ~100 Hz is a pervasive fea...
Inter-areal synchronization of neuronal oscillations at frequencies below ~100 Hz is a pervasive fea...
Inter-areal synchronization of neuronal oscillations at frequencies below ~100 Hz is a pervasive fea...
Inter-areal synchronization of neuronal oscillations at frequencies below ~100 Hz is a pervasive fea...
Inter-areal synchronization of neuronal oscillations at frequencies below ~100 Hz is a pervasive fea...
Inter-areal synchronization of neuronal oscillations at frequencies below ~100 Hz is a pervasive fea...
High-frequency oscillations (HFOs) are common in mammalian brains and have been assumed to be strict...
AbstractInter-areal synchronization of neuronal oscillations below 100 Hz is ubiquitous in cortical ...
SummaryNormal brain function requires the dynamic interaction of functionally specialized but widely...
Normal brain function requires the dynamic interaction of functionally specialized but widely distri...
Synchronization of neuronal activity, often associated with network oscillations, is thought to prov...
Spatially distributed coherent oscillations provide temporal windows of excitability that allow for ...
Neuronal oscillations and their inter‐areal synchronization may be instrumental in regulating neuron...
Inter-areal synchronization of neuronal oscillations at frequencies below ~100 Hz is a pervasive fea...
Inter-areal synchronization of neuronal oscillations at frequencies below similar to 100Hz is a perv...
Inter-areal synchronization of neuronal oscillations at frequencies below ~100 Hz is a pervasive fea...
Inter-areal synchronization of neuronal oscillations at frequencies below ~100 Hz is a pervasive fea...
Inter-areal synchronization of neuronal oscillations at frequencies below ~100 Hz is a pervasive fea...
Inter-areal synchronization of neuronal oscillations at frequencies below ~100 Hz is a pervasive fea...
Inter-areal synchronization of neuronal oscillations at frequencies below ~100 Hz is a pervasive fea...
Inter-areal synchronization of neuronal oscillations at frequencies below ~100 Hz is a pervasive fea...
High-frequency oscillations (HFOs) are common in mammalian brains and have been assumed to be strict...
AbstractInter-areal synchronization of neuronal oscillations below 100 Hz is ubiquitous in cortical ...
SummaryNormal brain function requires the dynamic interaction of functionally specialized but widely...
Normal brain function requires the dynamic interaction of functionally specialized but widely distri...
Synchronization of neuronal activity, often associated with network oscillations, is thought to prov...
Spatially distributed coherent oscillations provide temporal windows of excitability that allow for ...
Neuronal oscillations and their inter‐areal synchronization may be instrumental in regulating neuron...