Measuring Electrical Activity of the Brain: ERP Mapping in Alcohol Research
The recording of brain electrical activity from scalp electrodes provides a noninvasive, sensitive measure of brain function. Event-related potentials (ERP's) are brain waves that are recorded while the subject is exposed to a specific sensory stimulus. Depending on experimental conditions, ERP...
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Published in | Alcohol Health and Research World Vol. 19; no. 4; pp. 315 - 320 |
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Main Authors | , , |
Format | Journal Article |
Language | English |
Published |
United States
U.S. Government Printing Office
01.01.1995
Public Health Service, National Institutes of Health National Institute on Alcohol Abuse and Alcoholism |
Subjects | |
Online Access | Get full text |
ISSN | 0090-838X 1535-7414 |
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Abstract | The recording of brain electrical activity from scalp electrodes provides a noninvasive, sensitive measure of brain function. Event-related potentials (ERP's) are brain waves that are recorded while the subject is exposed to a specific sensory stimulus. Depending on experimental conditions, ERP's are useful in studying many brain functions, such as sensory and information processing (e.g., memory). The assessment of ERP's is useful in studying the effects of alcohol on brain function and in identifying people at risk for developing alcoholism. Computerized mapping techniques produce graphs or color-coded images to summarize data about the generation of ERP's in time and space. |
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AbstractList | The recording of brain electrical activity from scalp electrodes provides a noninvasive, sensitive measure of brain function. Event-related potentials (ERP's) are brain waves that are recorded while the subject is exposed to a specific sensory stimulus. Depending on experimental conditions, ERP's are useful in studying many brain functions, such as sensory and information processing (e.g., memory). The assessment of ERP's is useful in studying the effects of alcohol on brain function and in identifying people at risk for developing alcoholism. Computerized mapping techniques produce graphs or color-coded images to summarize data about the generation of ERP's in time and space.The recording of brain electrical activity from scalp electrodes provides a noninvasive, sensitive measure of brain function. Event-related potentials (ERP's) are brain waves that are recorded while the subject is exposed to a specific sensory stimulus. Depending on experimental conditions, ERP's are useful in studying many brain functions, such as sensory and information processing (e.g., memory). The assessment of ERP's is useful in studying the effects of alcohol on brain function and in identifying people at risk for developing alcoholism. Computerized mapping techniques produce graphs or color-coded images to summarize data about the generation of ERP's in time and space. The recording of brain electrical activity from scalp electrodes provides a noninvasive, sensitive measure of brain function. Event-related potentials (ERP's) are brain waves that are recorded while the subject is exposed to a specific sensory stimulus. Depending on experimental conditions, ERP's are useful in studying many brain functions, such as sensory and information processing (e.g., memory). The assessment of ERP's is useful in studying the effects of alcohol on brain function and in identifying people at risk for developing alcoholism. Computerized mapping techniques produce graphs or color-coded images to summarize data about the generation of ERP's in time and space. |
Audience | Professional Academic |
Author | Porjesz, Bernice Chorlian, David B Cohen, Howard L |
Author_xml | – sequence: 1 givenname: David B surname: Chorlian fullname: Chorlian, David B organization: David B. Chorlian, M.S., is a senior scientific programmer in the Neurodynamics Laboratory, State University of New York (SUNY) Health Science Center at Brooklyn, Brooklyn, New York. Bernice Porjesz, Ph.D., is an assistant professor in the Department of Psychiatry, SUNY Health Science Center at Brooklyn, Brooklyn, New York. Howard L. Cohen, Ph.D., is a research scientist in the Neurodynamics Laboratory, SUNY Health Science Center at Brooklyn, Brooklyn, New York – sequence: 2 givenname: Bernice surname: Porjesz fullname: Porjesz, Bernice organization: David B. Chorlian, M.S., is a senior scientific programmer in the Neurodynamics Laboratory, State University of New York (SUNY) Health Science Center at Brooklyn, Brooklyn, New York. Bernice Porjesz, Ph.D., is an assistant professor in the Department of Psychiatry, SUNY Health Science Center at Brooklyn, Brooklyn, New York. Howard L. Cohen, Ph.D., is a research scientist in the Neurodynamics Laboratory, SUNY Health Science Center at Brooklyn, Brooklyn, New York – sequence: 3 givenname: Howard L surname: Cohen fullname: Cohen, Howard L organization: David B. Chorlian, M.S., is a senior scientific programmer in the Neurodynamics Laboratory, State University of New York (SUNY) Health Science Center at Brooklyn, Brooklyn, New York. Bernice Porjesz, Ph.D., is an assistant professor in the Department of Psychiatry, SUNY Health Science Center at Brooklyn, Brooklyn, New York. Howard L. Cohen, Ph.D., is a research scientist in the Neurodynamics Laboratory, SUNY Health Science Center at Brooklyn, Brooklyn, New York |
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Keywords | evoked potential brain function computer technology brain wave electrodiagnosis diagnostic imaging |
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Snippet | The recording of brain electrical activity from scalp electrodes provides a noninvasive, sensitive measure of brain function. Event-related potentials (ERP's)... The recording of brain electrical activity from scalp electrodes provides a noninvasive, sensitive measure of brain function. Event-related potentials (ERP’s)... |
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SubjectTerms | Alcoholism Brain Diagnostic imaging Electrodiagnosis Evoked potentials (Electrophysiology) Localization of functions |
Title | Measuring Electrical Activity of the Brain: ERP Mapping in Alcohol Research |
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