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The Oxford Handbook of EEG Frequency

The Oxford Handbook of EEG Frequency

9780192898340
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Description
The use of electroencephalography (EEG) to study the human mind has seen tremendous growth across a vast array of disciplines due to increased ease of use and affordability of the technology. Typically, researchers study how the magnitude of the waves changes over time or how the rhythm (frequency) of the waves changes over time. The Oxford Handbook of EEG Frequency is arguably the first book to comprehensively describe the ways to study how the frequency of the waves changes over time and how changes in frequency are linked to cognitive, affective, and motor processes.Consisting of 23 chapters written by leading authorities in the field, the book is separated into three sections, with the first focusing on the basics of EEG frequency research, linking frequency analyses to core components of EEG research with event-related potential (ERP) components and local field potentials (LFPs) in non-human animals. The second section looks at specific EEG frequency components that are commonly studied using traditional frequency bands of activity to study specificpsychological processes. Finally, the third section explores EEG frequency analyses in special populations and altered states. Each chapter provides a diverse perspective on the topic, giving readers the opportunity to learn about a vast array of methods to conduct EEG frequency analyses, fromtraditional to cutting-edge techniques, providing a comprehensive and in-depth overview of electroencephalography (EEG).
Product Details
OUP Oxford
93507
9780192898340
9780192898340

Data sheet

Publication date
2022
Issue number
1
Cover
hard cover
Pages count
640
Dimensions (mm)
171 x 246
Weight (g)
1356
  • Introduction: Methods for Collecting EEG Data for Frequency Analyses in Humans; Logic behind EEG Frequency Analysis: Basic Electricity and Assumptions; From Neural Oscillations to Cognitive Processes; Time-Frequency Decomposition Methods for Event-Related Potential Analysis; Time Frequency Analyses in Event-Related Potential Methodologies; The Relationship Between Evoked and Induced EEG/MEG Changes: Going Beyond Labels; Frequency Analysis of the Monkey Neocortical Local Field Potential; Gamma Activity in Sensory and Cognitive Processing; Frontal Midline Theta as a Model Specimen of Cortical Theta; The Role of Alpha and Beta Oscillations in the Human EEG during Perception and Memory Processes; Theory and Research on Asymmetric Frontal Cortical Activity as Assessed by EEG Frequency Analyses; Oscillatory Activity in Sensorimotor Function; EEG Frequency Development across Infancy and Childhood; Developmental Research on Time-Frequency Activity in Adolescence and Early Adulthood; Theta-Beta EEG Ratio: An Electrophysiological Signature of Motivation and Attentional Control in Normal and Abnormal Behavior; Cortical Source Localization in EEG Frequency Analysis; Frequency Characteristics of Sleep; A Review of Oscillatory Brain Dynamics in Schizophrenia; EEG Frequency Techniques for Imaging Control Functions in Anxiety; Bivariate Functional Connectivity Measures for Within- and Cross-Frequency Coupling of Neuronal Oscillations; Multivariate Methods for Functional Connectivity Analysis; Brain Stimulation Approaches to Investigate EEG Oscillations; Parameterizing Neural Field Potential Data;
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