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Computational EEG Analysis: Methods and Applications: Biological and Medical Physics, Biomedical Engineering

Editat de Chang-Hwan Im
en Limba Engleză Hardback – 28 aug 2018
This book introduces and reviews all of the currently available methods being used for computational electroencephalogram (EEG) analysis, from the fundamentals through to the state-of-the-art. The aim of the book is to help biomedical engineers and medical doctors who use EEG to better understand the methods and applications of computational EEG analysis from a single, well-organized resource.
Following a brief introduction to the principles of EEG and acquisition techniques, the book is divided into two main sections. The first of these covers analysis methods, beginning with preprocessing, and then describing EEG spectral analysis, event-related potential analysis, source imaging and multimodal neuroimaging, and functional connectivity analysis. The following section covers application of EEG analysis to specific fields, including the diagnosis of psychiatric diseases and neurological disorders, brain-computer interfacing, and social neuroscience.
Aimed at practicing medical specialists, engineers, researchers and advanced students, the book features contributions from world-renowned biomedical engineers working across a broad spectrum of computational EEG analysis techniques and EEG applications.
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Specificații

ISBN-13: 9789811309076
ISBN-10: 9811309078
Pagini: 279
Ilustrații: XII, 228 p. 59 illus., 36 illus. in color.
Dimensiuni: 155 x 235 mm
Greutate: 0.52 kg
Ediția:1st ed. 2018
Editura: Springer Nature Singapore
Colecția Springer
Seria Biological and Medical Physics, Biomedical Engineering

Locul publicării:Singapore, Singapore

Cuprins

Part I. Introduction.- Chapter 1.  Basics of EEG: Generation, Acquisition and Applications of EEG – Chang-Hwan Im.- Part II. Methods.- Chapter 2. Preprocessing of EEG – Sung-Phil Kim.- Chapter 3. EEG Spectral Analysis – Do-Won Kim and Chang-Hwan Im.- Chapter 4. The Analysis of Event-Related Potentials – Marco Congedo.- Chapter 5.  EEG Source Imaging and Multimodal Neuroimaging - Yingchun Zhang.- Chapter 6. Methods for Functional Connectivity Analysis – Jeong-Woo Choi and Kyung-Hwan Kim.- Part III. Applications.- Chapter 7. Computational EEG Analysis for the Diagnosis of Psychiatric Illnesses – Seung-Hwan Lee and Yeonsoo Park.- Chapter 8. Analysis of EEG in Medically Intractable Epilepsy – Ki-Young Jung.- Chapter 9. Computational EEG Analysis for Brain-Computer Interfaces – Garett D. Johnson and Dean J. Krusienski.- Chapter 10. EEG Analysisfor Hyperscanning and Social Neuroscience - Dan Zhang.

Notă biografică

Prof. Chang-Hwan Im graduated from the School of Electrical Engineering of Seoul National University, Korea, in 1999. He received his MS and PhD from the same university in 2001 and 2005, respectively. He worked as a Post-doctor in the Department of Biomedical Engineering at the University of Minnesota, MN, USA, from 2005 to 2006. From 2006 to 2011, he worked for the Department of Biomedical Engineering at Yonsei University, Korea, as an Assistant/Associate Professor. Since 2011, he has been working for the Department of Biomedical Engineering at Hanyang University, Korea, as a Professor. His research interests cover various fields of computational neuroengineering, especially brain-computer interfaces, the diagnosis of neuropsychiatric diseases, noninvasive brain stimulation, bioelectromagnetic source imaging, neuromarketing, and dynamic neuroimaging. He has authored more than 150 articles in peer-reviewed international journals. He is currently a Director of the Computational Neuroengineering Laboratory of Hanyang University, and he is Associate Editors of Biomedical Engineering Letters, Experimental Neurobiology, and Brain-Computer Interfaces.


Textul de pe ultima copertă

This book introduces and reviews all of the currently available methods being used for computational electroencephalogram (EEG) analysis, from the fundamentals through to the state-of-the-art. The aim of the book is to help biomedical engineers and medical doctors who use EEG to better understand the methods and applications of computational EEG analysis from a single, well-organized resource.
 
Following a brief introduction to the principles of EEG and acquisition techniques, the book is divided into two main sections. The first of these covers analysis methods, beginning with preprocessing, and then describing EEG spectral analysis, event-related potential analysis, source imaging and multimodal neuroimaging, and functional connectivity analysis. The following section covers application of EEG analysis to specific fields, including the diagnosis of psychiatric diseases and neurological disorders, brain-computer interfacing, and social neuroscience.  
Aimed at practicing medical specialists, engineers, researchers and advanced students, the book features contributions from world-renowned biomedical engineers working across a broad spectrum of computational EEG analysis techniques and EEG applications.


Caracteristici

Provides an overview of the principles and applications of computational EEG analysis techniques Describes cutting-edge techniques used for various applications including diagnosis of neurological disorder and psychiatric disease Written by established world-class researchers developing state-of-the-art techniques