Widely acclaimed when it first published in 1981, this book has been brought up-to-date with this second edition. Topics covered include synaptic sources, electrode placement, choice of reference, volume conduction, power and coherence, projection of scalp potentials to dura surface, dynamic signatures of conscious experience, and neural networks immersed in global fields of synaptic action.
Widely acclaimed when it first published in 1981, this book has been brought up-to-date with this second edition. Topics covered include synaptic sources, electrode placement, choice of reference, volume conduction, power and coherence, projection of scalp potentials to dura surface, dynamic signatures of conscious experience, and neural networks immersed in global fields of synaptic action.Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Paul L. Nunez, Professor of Biomedical Engineering, Tulane University, USA and Ramesh Srinivasan, Department of Cognitive Sciences, University of California, Irvine, USA
Inhaltsangabe
1: The physics-EEG interface 2: Fallacies in EEG 3: An overview of electromagnetic fields 4: Electric fields and currents in biological tissue 5: Current sources in a homogeneous and isotropic medium 6: Current sources in inhomogeneous and isotropic media 7: Recording strategies, reference issues, and dipole localization 8: High-resolution EEG 9: Measures of EEG dynamic properties 10: Spatial-temporal properties of EEG 11: Neocortical dynamics, EEG, and cognition Appendices A: Introduction to the calculus of vector fields B: Quasi-static reduction of Maxwell's equations C: Surface magnetic field due to a dipole at an arbitrary location in a volume conductor D: Derivation of the membrane diffusion equation E: Solutions to the membrane diffusion equation F: Point source in a five layered plane medium G: Radial dipole and dipole layer inside the 4-sphere model H: Tangential dipole inside concentric spherical shells I: Spherical harmonics J: The spline Laplacian K: Impressed currents and cross-scale relations in volume conductors L: Outline of neocortical dynamic global theory
1: The physics-EEG interface 2: Fallacies in EEG 3: An overview of electromagnetic fields 4: Electric fields and currents in biological tissue 5: Current sources in a homogeneous and isotropic medium 6: Current sources in inhomogeneous and isotropic media 7: Recording strategies, reference issues, and dipole localization 8: High-resolution EEG 9: Measures of EEG dynamic properties 10: Spatial-temporal properties of EEG 11: Neocortical dynamics, EEG, and cognition Appendices A: Introduction to the calculus of vector fields B: Quasi-static reduction of Maxwell's equations C: Surface magnetic field due to a dipole at an arbitrary location in a volume conductor D: Derivation of the membrane diffusion equation E: Solutions to the membrane diffusion equation F: Point source in a five layered plane medium G: Radial dipole and dipole layer inside the 4-sphere model H: Tangential dipole inside concentric spherical shells I: Spherical harmonics J: The spline Laplacian K: Impressed currents and cross-scale relations in volume conductors L: Outline of neocortical dynamic global theory
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