Electroencephalography (EEG) allows recording of cortical activity at high temporal resolution. EEG recordings can be summarized along different dimensions using network-level quantitative measures, such as channel-to-channel correlation, or band power distributions across channels. These reveal network patterns that unfold over a range of different timescales and can be tracked dynamically. Here we describe the dynamics of network state transitions in EEG recordings of spontaneous brain activity in normally developing infants and infants with severe early infantile epileptic encephalopathies (n = 8, age: 1–8 months). We describe differences in measures of EEG dynamics derived from band power, and correlation-based summaries of network-wide...
Communication between specialized regions of the brain is a dynamic process allowing for different c...
Large-scale brain signals exhibit rich intermittent patterning, reflecting the fact that the cortex ...
Scalp electroencephalographic (EEG) signals are influenced by several factors, including volume cond...
Electroencephalography (EEG) allows recording of cortical activity at high temporal resolution. EEG ...
OBJECTIVE: It remains unclear to what extent brain networks are altered at an early stage of epileps...
Epileptic seizures are known to follow specific changes in brain dynamics. While some algorithms can...
Epileptic seizures are known to follow specific changes in brain dynamics. While some algorithms can...
This study presents a new methodology for obtaining functional brain networks (FBNs) using multichan...
Graph theory has evolved into a useful tool for studying complex brain networks inferred from a vari...
During infancy, the human brain rapidly expands in size and complexity as neural networks mature and...
INTRODUCTION: Functional Electroencephalography (EEG) networks in infants have been proposed as usef...
<div><p>Despite a wealth of EEG epilepsy data that accumulated for over half a century, our ability ...
Recent neuroimaging and behavioral studies have revealed that children with new onset epilepsy alrea...
During childhood, brain structure and function changes substantially. Recently, graph theory has bee...
During infancy, the human brain rapidly expands in size and complexity as neural networks mature and...
Communication between specialized regions of the brain is a dynamic process allowing for different c...
Large-scale brain signals exhibit rich intermittent patterning, reflecting the fact that the cortex ...
Scalp electroencephalographic (EEG) signals are influenced by several factors, including volume cond...
Electroencephalography (EEG) allows recording of cortical activity at high temporal resolution. EEG ...
OBJECTIVE: It remains unclear to what extent brain networks are altered at an early stage of epileps...
Epileptic seizures are known to follow specific changes in brain dynamics. While some algorithms can...
Epileptic seizures are known to follow specific changes in brain dynamics. While some algorithms can...
This study presents a new methodology for obtaining functional brain networks (FBNs) using multichan...
Graph theory has evolved into a useful tool for studying complex brain networks inferred from a vari...
During infancy, the human brain rapidly expands in size and complexity as neural networks mature and...
INTRODUCTION: Functional Electroencephalography (EEG) networks in infants have been proposed as usef...
<div><p>Despite a wealth of EEG epilepsy data that accumulated for over half a century, our ability ...
Recent neuroimaging and behavioral studies have revealed that children with new onset epilepsy alrea...
During childhood, brain structure and function changes substantially. Recently, graph theory has bee...
During infancy, the human brain rapidly expands in size and complexity as neural networks mature and...
Communication between specialized regions of the brain is a dynamic process allowing for different c...
Large-scale brain signals exhibit rich intermittent patterning, reflecting the fact that the cortex ...
Scalp electroencephalographic (EEG) signals are influenced by several factors, including volume cond...