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P J Franaszczuk

Showing results (1-10 of 28) with videos related to

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Biological Cybernetics|August 6, 1999
An autoregressive method for the measurement of synchronization of interictal and ictal EEG signalsP J Franaszczuk, G K Bergey
Biological Cybernetics|January 1, 1985
Linear model of brain electrical activity--EEG as a superposition of damped oscillatory modesP J Franaszczuk, K J Blinowska
Conference Proceedings : ... Annual International Conference of the IEEE Engineering in Medicine and Biology Society. IEEE Engineering in Medicine and Biology Society. Annual Conference|February 3, 2007
Software system for data management and distributed processing of multichannel biomedical signalsP J Franaszczuk, C C Jouny
Clinical Neurophysiology : Official Journal of the International Federation of Clinical Neurophysiology|February 13, 2001
Epileptic seizures are characterized by changing signal complexityG K Bergey, P J Franaszczuk
Brain Topography|October 3, 1998
Application of the directed transfer function method to mesial and lateral onset temporal lobe seizuresP J Franaszczuk, G K Bergey
Acta Physiologica Polonica|July 1, 1989
FAD-parametric description of EEG time seriesP J Franaszczuk, P Mitraszewski, K Blinowska
Computers and Biomedical Research, an International Journal|October 1, 1995
Detection of spontaneous postsynaptic potentialsP J Franaszczuk, G K Bergey, P Kudela
Biological Cybernetics|January 1, 1985
The application of parametric multichannel spectral estimates in the study of electrical brain activityP J Franaszczuk, K J Blinowska, M Kowalczyk
Biological Cybernetics|July 1, 1997
A simple computer model of excitable synaptically connected neuronsP Kudela, P J Franaszczuk, G K Bergey
International Journal of Bio-Medical Computing|March 1, 1988
A new method of presentation of the average spectral properties of the EEG time seriesK J Blinowska, P J Franaszczuk, P Mitraszewski
Pageof 3

Showing results (1-10 of 28) with videos related to

Sort By:
Pageof 3
Biological Cybernetics|August 6, 1999
An autoregressive method for the measurement of synchronization of interictal and ictal EEG signalsP J Franaszczuk, G K Bergey
Biological Cybernetics|January 1, 1985
Linear model of brain electrical activity--EEG as a superposition of damped oscillatory modesP J Franaszczuk, K J Blinowska
Conference Proceedings : ... Annual International Conference of the IEEE Engineering in Medicine and Biology Society. IEEE Engineering in Medicine and Biology Society. Annual Conference|February 3, 2007
Software system for data management and distributed processing of multichannel biomedical signalsP J Franaszczuk, C C Jouny
Clinical Neurophysiology : Official Journal of the International Federation of Clinical Neurophysiology|February 13, 2001
Epileptic seizures are characterized by changing signal complexityG K Bergey, P J Franaszczuk
Brain Topography|October 3, 1998
Application of the directed transfer function method to mesial and lateral onset temporal lobe seizuresP J Franaszczuk, G K Bergey
Acta Physiologica Polonica|July 1, 1989
FAD-parametric description of EEG time seriesP J Franaszczuk, P Mitraszewski, K Blinowska
Computers and Biomedical Research, an International Journal|October 1, 1995
Detection of spontaneous postsynaptic potentialsP J Franaszczuk, G K Bergey, P Kudela
Biological Cybernetics|January 1, 1985
The application of parametric multichannel spectral estimates in the study of electrical brain activityP J Franaszczuk, K J Blinowska, M Kowalczyk
Biological Cybernetics|July 1, 1997
A simple computer model of excitable synaptically connected neuronsP Kudela, P J Franaszczuk, G K Bergey
International Journal of Bio-Medical Computing|March 1, 1988
A new method of presentation of the average spectral properties of the EEG time seriesK J Blinowska, P J Franaszczuk, P Mitraszewski
Pageof 3