Analyzing non-invasive recordings of electroencephalography (EEG) and magnetoencephalography (MEG) directly in sensor space, using the signal from individual sensors, is a convenient and standard way of working with this type of data. However, volume conduction introduces considerable challenges for sensor space analysis. While the general idea of signal mixing due to volume conduction in EEG/MEG is recognized, the implications have not yet been clearly exemplified. Here, we illustrate how different types of activity overlap on the level of individual sensors. We show spatial mixing in the context of alpha rhythms, which are known to have generators in different areas of the brain. Using simulations with a realistic 3D head model and lead f...
Recent advances in signal analysis have engendered EEG with the status of a true brain mapping and b...
Human cognition involves dynamic neural activities in distributed brain areas. For studying such neu...
The imaginary part of coherency is a measure to investigate the synchronization of brain sources on ...
Analyzing non-invasive recordings of electroencephalography (EEG) and magnetoencephalography (MEG) d...
Contains fulltext : 158451.pdf (publisher's version ) (Open Access)Oscillatory neu...
Although the long-range temporal correlation (LRTC) of the amplitude fluctuations of neuronal EEG/ME...
BACKGROUND: Large-scale synchronous neural activity produces electrical fields that can be measured ...
A popular way to analyze resting-state electroencephalography (EEG) and magneto encephalography (MEG...
The objective of this work is to quantify how patterns of cortical activity at different spatial sca...
A popular way to analyze resting-state electroencephalography (EEG) and magneto encephalography (MEG...
Contains fulltext : 178654.pdf (publisher's version ) (Closed access)A popular way...
The objective of this work is to quantify how patterns of cortical activity at different spatial sca...
Interactions between functionally specialized brain regions are crucial for normal brain function. M...
A theoretical framework supporting experimental measures of dynamic properties of human EEG is propo...
The common factor that underlies several types of functional brain imaging is the electric current o...
Recent advances in signal analysis have engendered EEG with the status of a true brain mapping and b...
Human cognition involves dynamic neural activities in distributed brain areas. For studying such neu...
The imaginary part of coherency is a measure to investigate the synchronization of brain sources on ...
Analyzing non-invasive recordings of electroencephalography (EEG) and magnetoencephalography (MEG) d...
Contains fulltext : 158451.pdf (publisher's version ) (Open Access)Oscillatory neu...
Although the long-range temporal correlation (LRTC) of the amplitude fluctuations of neuronal EEG/ME...
BACKGROUND: Large-scale synchronous neural activity produces electrical fields that can be measured ...
A popular way to analyze resting-state electroencephalography (EEG) and magneto encephalography (MEG...
The objective of this work is to quantify how patterns of cortical activity at different spatial sca...
A popular way to analyze resting-state electroencephalography (EEG) and magneto encephalography (MEG...
Contains fulltext : 178654.pdf (publisher's version ) (Closed access)A popular way...
The objective of this work is to quantify how patterns of cortical activity at different spatial sca...
Interactions between functionally specialized brain regions are crucial for normal brain function. M...
A theoretical framework supporting experimental measures of dynamic properties of human EEG is propo...
The common factor that underlies several types of functional brain imaging is the electric current o...
Recent advances in signal analysis have engendered EEG with the status of a true brain mapping and b...
Human cognition involves dynamic neural activities in distributed brain areas. For studying such neu...
The imaginary part of coherency is a measure to investigate the synchronization of brain sources on ...