Products related to EEG:
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EEG
*WINNER OF THE BEST TRANSLATED BOOK AWARD USA**SHORTLISTED FOR THE EBRD PRIZE**SHORTLISTED FOR THE OXFORD-WEIDENFELD PRIZE*"A writer and thinker of ever greater relevance, a voice whose wide-ranging screeds we ignore at our peril" CLAIRE MESSUD"Her work is of such power and scope that had she remained alive, she would have been a contender for the Nobel Prize in Literature" JOSIP NOVAKOVICH, Los Angeles Review of BooksAn urgent new novel about death, war and memory, and a bristling follow-on from Belladonna. In this extraordinary final work, Daša Drndic's combative, probing voice reaches new heights.In her relentless search for truth she delves into the darkest corners of our lives. And as she chastises, she also atones. Andreas Ban failed in his suicide attempt. Even as his body falters and his lungs constrict, he taps on the glass of history - an impenetrable case filled with silent figures - and tries to summon those imprisoned within.Mercilessly, fearlessly, he continues to dissect society and his environment, shunning all favours as he goes after the evils and hidden secrets of others.History remembers the names of perpetrators, not of the victims. Ban travels from Rijeka to Rovinj in nearby Istria, from Belgrade to Toronto to Tirana, from Parisian avenues to Italian palazzi.Ghosts follow him wherever he goes: chess grandmasters who disappeared during WWII; the lost inhabitants of Latvia; war criminals who found work in the C.I.A. and died peacefully in their beds. Ban's family is with him too: those he has lost and those with one foot in the grave.As if left with only a few pieces in a chess game, Andreas Ban plays a stunning last match against Death. Translated from the Croatian by Celia Hawkesworth
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MEG-EEG Primer
Magnetoencephalography (MEG) and electroencephalography (EEG) provide complementary views to the neurodynamics of healthy and diseased human brains.Both methods are totally noninvasive and can track with millisecond temporal resolution spontaneous brain activity, evoked responses to various sensory stimuli, as well as signals associated with the performance of motor, cognitive and affective tasks. MEG records the magnetic fields, and EEG the potentials associated with the same neuronal currents, which however are differentially weighted due to the physical and physiological differences between the methods.MEG is rather selective to activity in the walls of cortical folds, whereas EEG senses currents from the cortex (and brain) more widely, making it harder to pinpoint the locations of the source currents in the brain.Another important difference between the methods is that skull and scalp dampen and smear EEG signals, but do not affect MEG.Hence, to fully understand brain function, information from MEG and EEG should be combined.Additionally, the excellent neurodynamical information these two methods provide can be merged with data from other brain-imaging methods, especially functional magnetic resonance imaging where spatial resolution is a major strength. MEG-EEG Primer is the first-ever volume to introduce and discuss MEG and EEG in a balanced manner side-by-side, starting from their physical and physiological bases and then advancing to methods of data acquisition, analysis, visualization, and interpretation.The authors pay special attention to careful experimentation, guiding readers to differentiate brain signals from various artifacts and to assure that the collected data are reliable.The book weighs the strengths and weaknesses of MEG and EEG relative to one another and to other methods used in systems, cognitive, and social neuroscience.The authors also discuss the role of MEG and EEG in the assessment of brain function in various clinical disorders.The book aims to bring members of multidisciplinary research teams onto equal footing so that they can contribute to different aspects of MEG and EEG research and to be able to participate in future developments in the field.
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Rowan's Primer of EEG
Practical, brief, and easy to understand, Rowan's Primer of EEG, 3rd Edition, teaches the difficult technical aspects of how to perform and interpret EEGs.Direct, concise text, numerous illustrations and teaching points, and an extensive video library make this up-to-date reference a valuable resource for students, residents, neurologists, and epileptologists alike. Features a vibrant, full-color design and brief, to-the-point text from experts in the field. Discusses advances in the field such as intracranial EEG and quantitative EEG in the ICU. Includes dozens of videos detailing clinical descriptions of seizures and EEG interpretation, both with and without annotations, so you can practice reading EEGs firsthand and then learn from the annotations. Offers enhanced coverage of epilepsy syndromes with a quick-access chart highlighting age of onset, prognosis, clinical characteristics, and EEG characteristics. Contains pediatric content and a concise chart of the EEG changes throughout the neonatal period. Provides self-assessment questions and answers online for each chapter. Uses the recently updated nomenclature from the International League Against Epilepsy (ILAE) and American Clinical Neurophysiology Society. An eBook version is included with purchase. The eBook allows you to access all of the text, figures, and references, with the ability to search, customize your content, make notes and highlights, and have content read aloud.Any additional digital ancillary content may publish up to 6 weeks following the publication date.
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Getting Started with EEG Neurofeedback
Neurofeedback training combines the principles of complementary medicine with the power of electronics.This book provides lucid explanations of the mechanisms underlying neurofeedback as well as the research history that led to its implementation.Essential for all clinicians in this field, this book will guide clinicians through the process of diagnosis and treatment.
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How to Read an EEG
The EEG is a simple and widely available neurophysiological test that, if interpreted correctly, can provide valuable insight into the functioning of the brain.However, despite its increasing usage in a range of settings, there is a common misconception that the EEG is inherently difficult to interpret.Compounding the problem is the lack of dedicated training and no standardized approach by encephalographers.This book provides a clear and concise guide to reading and interpreting EEGs in a systematic way.Presented in three sections, the first delivers foundational technical knowledge of how EEGs work, and the second concentrates on a comprehensive, stepwise approach to reading and interpreting an EEG.The third section contains examples of EEGs in common scenarios, such as seizures and post-cardiac arrest, enabling readers to correlate their findings to clinical indications.Heavily illustrated with over 200 example EEGs, this is an essential pocket guide to interpreting these tests.
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EEG Methods for the Psychological Sciences
A unique and important resource, full of critical practical knowledge and technical details made readily accessible. - Tiffany Ito, University of Colorado at Boulder "A comprehensive and engaging guide to EEG methods in social neuroscience; Dickter and Kiefabber offer practical details for conducting EEG research in a social/personality lab, with a broad perspective on how neuroscience can inform psychology.This is a unique and invaluable resource - a must-have for scientists interested in the social brain." - David M.Amodio, New York University Electroencephalography (EEG) has seen a dramatic increase in application as a research tool in the psychological sciences in recent years. This book provides an introduction to the technology and techniques of EEG in the context of social and cognitive neuroscience research that will appeal to investigators (students or researchers) wishing to broaden their research aims to include EEG, and to those already using EEG but wishing to expand their analytic repertoire.It can also serve as a textbook for a postgraduate course or upper-level undergraduate course in any area of behavioural neuroscience. The book provides an introduction to the theory, technology, and techniques of EEG data analysis along with the practical skills required to engage this popular technology.Beginning with a background in the neural origins and physical principles involved in recording EEG, readers will also find discussions of practical considerations regarding the recording of EEG in humans as well as tips for the configuration of an EEG laboratory. The analytic methods covered include event-related brain potentials (ERPs), spectral asymmetry, and time-frequency analyses.A conceptual background and review of domain-specific applications of the method is provided for each type of analysis.There's also comprehensive guided analysis for each analytic method that includes tutorial-style instruction and sample datasets. This book is perfect for advanced students and researchers in the psychological sciences and related disciplines who are using EEG in their research.
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Introduction to Quantitative EEG and Neurofeedback
Introduction to Quantitative EEG and Neurofeedback, Third Edition offers a window into brain physiology and function via computer and statistical analyses, suggesting innovative approaches to the improvement of attention, anxiety, mood and behavior.Resources for understanding what QEEG and neurofeedback are, how they are used, and to what disorders and patients they can be applied are scarce, hence this volume serves as an ideal tool for clinical researchers and practicing clinicians.Sections cover advancements (including Microcurrent Electrical Stimulation, photobiomodulation), new applications (e.g.Asperger's, music therapy, LORETA, etc.), and combinations of prior approaches. New chapters on smart-phone technologies and mindfulness highlight their clinical relevance.Written by top scholars in the field, this book offers both the breadth needed for an introductory scholar and the depth desired by a clinical professional.
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Brain Computer Interface : EEG Signal Processing
Brain Computer Interface: EEG Signal Processing discusses electroencephalogram (EEG) signal processing using effective methodology and algorithms.This book provides a basic introduction to EEG and a classification of different components present in EEG.It also helps the reader to understand the scope of processing EEG signals and their associated applications.Further, it covers specific aspects such as epilepsy detection; exploitation of P300 for various applications; design of an EEG acquisition system; and detection of saccade, fix, and blink from EEG and EOG data. Key Features: Explains the basis of brain computer interface and how it can be established using different EEG signal characteristics Covers the detailed classification of different types of EEG signals with respect to their physical characteristics Explains detection and diagnosis of epileptic seizures from the EEG data of a subject Reviews the design and development of a low-cost and robust EEG acquisition system Provides mathematical analysis of EEGs, including MATLAB® codes for students to experiment with EEG dataThis book is aimed at graduate students and researchers in biomedical, electrical, electronics, communication engineering, healthcare, and cyber physical systems.
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Similar search terms for EEG:
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What is the EEG surcharge?
The EEG surcharge, also known as the EEG-Umlage in Germany, is a fee that electricity consumers pay to support the country's transition to renewable energy sources. It is used to fund the feed-in tariffs paid to renewable energy producers, such as solar and wind power plants. The EEG surcharge is added to electricity bills and its amount can vary each year depending on the costs of supporting renewable energy production.
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How can an EEG be manipulated?
An EEG can be manipulated by altering the electrical activity of the brain through various means. This can be done through the use of drugs that affect neurotransmitter levels, such as sedatives or stimulants. Additionally, external stimuli like flashing lights or auditory cues can influence brain activity and produce changes in the EEG readings. Finally, psychological factors such as stress or relaxation techniques can also impact EEG patterns.
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How can an EEG be falsified?
An EEG can be falsified by intentionally altering the signals recorded by the electrodes, either by manipulating the input to the electrodes or by tampering with the recording equipment. This can be done to produce false results or to hide certain brain activity. Additionally, artifacts such as muscle movements or electrical interference can also contaminate the EEG signals, leading to inaccurate interpretations. It is important for researchers and clinicians to be aware of these potential sources of falsification and to take measures to ensure the integrity of the EEG data.
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What can be determined with EEG?
EEG, or electroencephalography, can be used to measure and record the electrical activity of the brain. It is commonly used to diagnose conditions such as epilepsy, sleep disorders, and brain injuries. EEG can also provide valuable information about brain function, such as identifying patterns of brain activity associated with different cognitive processes like attention, memory, and emotion.
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How long does an EEG take?
An EEG typically takes about 30-60 minutes to complete. The actual recording of brain activity usually lasts around 20-40 minutes, with additional time needed for preparation and setup. The duration may vary depending on the specific type of EEG being performed and the individual's cooperation during the procedure.
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What can be determined with an EEG?
An EEG, or electroencephalogram, can be used to measure and record the electrical activity in the brain. This can help in diagnosing conditions such as epilepsy, sleep disorders, and brain injuries. EEGs can also provide information about brain function and help in monitoring brain activity during surgeries or in research studies.
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Can an EEG indicate a brain tumor?
Yes, an EEG (electroencephalogram) can sometimes indicate the presence of a brain tumor. EEG results can show abnormal patterns of electrical activity in the brain, which may suggest the presence of a tumor or other neurological abnormalities. However, an EEG alone is not enough to diagnose a brain tumor definitively; further imaging tests such as MRI or CT scans are usually needed for a conclusive diagnosis.
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What exactly is done during an EEG?
During an EEG (electroencephalogram), small metal discs called electrodes are attached to the scalp to detect electrical activity in the brain. The electrodes are connected to a machine that records the brain's electrical impulses as wave patterns. The patient is usually asked to relax with their eyes closed, and then may be asked to perform certain tasks, such as deep breathing or flashing lights, to provoke specific brain wave patterns. The entire process is painless and non-invasive, and typically takes about 30-60 minutes to complete.
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