Description
Edited by Schomer Donald L.; Edited by Lopes da Silva, Fernando H.
:
Niedermeyer”s Electroencephalography: Basic Principles, Clinical Applications, and Related Fields, Seventh Edition keeps the clinical neurophysiologist on the forefront of medical advancements. This authoritative text covers basic neurophysiology, neuroanatomy, and neuroimaging to provide a better understanding of clinical neurophysiological findings. This edition further delves into current state-of-the-art recording EEG activity both in the normal clinical environment and unique situations such as the intensive care unit, operating rooms, and epilepsy monitoring suites. As computer technology evolves, so does the integration of analytical methods that significantly affect the reader”s interpretations of waveforms and trends that are occurring on long-term monitoring sessions. Compiled and edited by Donald L. Schomer and Fernando H. Lopes da Silva, along with a global team of experts, they collectively bring insight to crucial sections including basic principles of EEG and MEG, normal EEG, EEG in a clinical setting, clinical EEG in seizures and epilepsy, complementary and special techniques, event-related EEG phenomena, and shed light on the future of EEG and clinical neurophysiology. Akin to an encyclopedia of everything EEG, this comprehensive work is perfect for neurophysiology fellows, as well as neurology, neurosurgery, and general medical residents, and for the interns and medical students, and is a one-stop-shop for anyone training in EEG or preparing for neurophysiology or epilepsy board exams.
Table of contents:
Contributors ListPart I:Basic PrinciplesChapter 1: Historical Aspects of ElectroencephalographyRaoul Sutter, MD, Peter W. Kaplan, MB, BS, FRCP, and Donald L. Schomer, MDChapter 2: Cellular Substrates of Brain RhythmsFlorin Amzica, PhD and Fernando H. Lopes da Silva, MD, PhDChapter 3: Dynamics of EEGs as Signals of Neuronal Populations: Models and Theoretical ConsiderationsFabrice Wendling, MD, PhD and Fernando H. Lopes da Silva, MD, PhDChapter 4: Biophysical Aspects of EEG and MEG GenerationWytse J. Wadman PhD and Fernando H. Lopes da Silva, MD, PhDChapter 5: Recording Principles: Analog and Digital Principles; Polarity and Field Determinations; Multimodal Monitoring, Polygraphy (EOG, EMG, ECG, SaO2)Donald L. Schomer, MD, Charles M. Epstein, MD, Susan T. Herman, MD, and Bruce J. Fisch, MDChapter 6: Anterotemporal, Basal Temporal, Nasopharyngeal and Sphenoidal Electrodes and High-Density ArraysAndrew Schomer, MD, Margitta Seeck, MD, Andres M. Kanner, MD, FANA, and Donald L. Schomer, MDPart II: Normal EEGChapter 7: Normal EEG and Sleep: Preterm; Term; Infant; AdolescentPhillip L. Pearl, MD, Jules Beal, MD, Monika Eisermann, MD, Sunita Misra, MD, PhD, Perrine Plouin, MD, Solomon L. Moshe, MD, James J. Riviello, Jr., MD, Douglas R. Nordli, Jr., MD, and Eli M. Mizrahi, MDChapter 9: Validating Biomarkers and Diagnostic Tests in Clinical Neurophysiology: Developing Strong Experimental Designs and Recognizing ConfoundsJoshua B. Ewen, MD and Sándor Beniczky, MD, PhDChapter 10: EEG Activation MethodsMouhsin M. Shafi, MD, PhD and M. Brandon Westover, MD, PhDChapter 11: Artifacts of Recording and Common Errors in Interpretation William O. Tatum, DO, Claus Reinsberger, MD, PhD, and Barbara A. Dworetzky, MDPart III: Clinical EEG: General TopicsChapter 12: Patterns of Unclear SignificanceJonathan Charles Edwards, MD and Ekrem Kutluay, MDChapter 13: The EEG in Degenerative Disorders of the CNS: Congenital Malformations, Neurocutaneous Disorders, Inherited Disorders of Metabolism, Cerebral Palsy, and Autism Spectrum DisordersJohn Gaitanis, MD, Phillip L. Pearl, MD, and Howard Goodkin, MDChapter 14: Brain Tumors and Other Space-Occupying LesionsAdam L. Hartman, MD and Ronald P. Lesser, MDChapter 15: EEG in Inflammatory Disorders, Cerebrovascular Diseases, Trauma and Migraine.






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