This paper details a methodology which, when applied to magnetoencephalography (MEG) data, is capable of measuring the spatio-temporal dynamics of \u27disorder\u27 in the human brain. Our method, which is based upon signal entropy, shows that spatially separate brain regions (or networks) generate temporally independent entropy time-courses. These time-courses are modulated by cognitive tasks, with an increase in local neural processing characterised by localised and transient increases in entropy in the neural signal. We explore the relationship between entropy and the more established time-frequency decomposition methods, which elucidate the temporal evolution of neural oscillations. We observe a direct but complex relationship between en...
The complexity change in brain activity in schizophrenia is an interesting topic clinically. Schizop...
Gamma band oscillations participate in the temporal binding needed to synchronize cortical networks,...
Altered electroencephalography (EEG) activity in schizotypal individuals is a powerful indicator of ...
The brain operates in a complex way. The temporal complexity underlying macroscopic and spontaneous ...
We investigated the differences in brain fMRI signal complexity in patients with schizophrenia while...
<div><p>We investigated the differences in brain fMRI signal complexity in patients with schizophren...
The aim of the present study was to characterize the neural network reorganization during a cognitiv...
Empirical studies over the past two decades have provided support for the hypothesis that schizophre...
Complexity measures have been enormously used in schizophrenia patients to estimate brain dynamics. ...
Magnetoencephalography (MEG), in combination with complex analysis techniques, has made large contr...
Empirical studies over the past two decades have provided support for the hypothesis that schizophre...
The past decade has seen several attempts to employ the entropy of neuroimaging signals as a potenti...
Producción CientíficaThe aim of this study was to assess brain complexity dynamics in schizophrenia ...
Spectral entropy (SE) allows comparing task-related modulation of electroencephalogram (EEG) between...
The complexity change in brain activity in schizophrenia is an interesting topic clinically. Schizop...
Gamma band oscillations participate in the temporal binding needed to synchronize cortical networks,...
Altered electroencephalography (EEG) activity in schizotypal individuals is a powerful indicator of ...
The brain operates in a complex way. The temporal complexity underlying macroscopic and spontaneous ...
We investigated the differences in brain fMRI signal complexity in patients with schizophrenia while...
<div><p>We investigated the differences in brain fMRI signal complexity in patients with schizophren...
The aim of the present study was to characterize the neural network reorganization during a cognitiv...
Empirical studies over the past two decades have provided support for the hypothesis that schizophre...
Complexity measures have been enormously used in schizophrenia patients to estimate brain dynamics. ...
Magnetoencephalography (MEG), in combination with complex analysis techniques, has made large contr...
Empirical studies over the past two decades have provided support for the hypothesis that schizophre...
The past decade has seen several attempts to employ the entropy of neuroimaging signals as a potenti...
Producción CientíficaThe aim of this study was to assess brain complexity dynamics in schizophrenia ...
Spectral entropy (SE) allows comparing task-related modulation of electroencephalogram (EEG) between...
The complexity change in brain activity in schizophrenia is an interesting topic clinically. Schizop...
Gamma band oscillations participate in the temporal binding needed to synchronize cortical networks,...
Altered electroencephalography (EEG) activity in schizotypal individuals is a powerful indicator of ...