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Neuroimage ; 14(2): 383-90, 2001 Aug.
Article in English | MEDLINE | ID: mdl-11467912

ABSTRACT

Frequency-transformed EEG resting data has been widely used to describe normal and abnormal brain functional states as function of the spectral power in different frequency bands. This has yielded a series of clinically relevant findings. However, by transforming the EEG into the frequency domain, the initially excellent time resolution of time-domain EEG is lost. The topographic time-frequency decomposition is a novel computerized EEG analysis method that combines previously available techniques from time-domain spatial EEG analysis and time-frequency decomposition of single-channel time series. It yields a new, physiologically and statistically plausible topographic time-frequency representation of human multichannel EEG. The original EEG is accounted by the coefficients of a large set of user defined EEG like time-series, which are optimized for maximal spatial smoothness and minimal norm. These coefficients are then reduced to a small number of model scalp field configurations, which vary in intensity as a function of time and frequency. The result is thus a small number of EEG field configurations, each with a corresponding time-frequency (Wigner) plot. The method has several advantages: It does not assume that the data is composed of orthogonal elements, it does not assume stationarity, it produces topographical maps and it allows to include user-defined, specific EEG elements, such as spike and wave patterns. After a formal introduction of the method, several examples are given, which include artificial data and multichannel EEG during different physiological and pathological conditions.


Subject(s)
Brain Mapping , Cerebral Cortex/physiopathology , Electroencephalography , Epilepsy, Temporal Lobe/physiopathology , Signal Processing, Computer-Assisted , Adult , Alpha Rhythm , Child , Epilepsy, Temporal Lobe/diagnosis , Evoked Potentials/physiology , Female , Humans , Male , Mathematical Computing , Reference Values , Sleep Stages/physiology
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