DocumentCode
1294371
Title
Reproducibility of MEG auditory evoked field source localizations in normal human subjects using a seven-channel gradiometer
Author
Teale, Peter ; Goldstein, Leigh ; Reite, Martin ; Sheeder, Jeanelle ; Richardson, Douglas ; Edrich, Jochen ; Zimmerman, James E.
Author_Institution
Dept. of Psychiatry, Univ. of Colorado Health Sci. Centre, Denver, CO, USA
Volume
43
Issue
9
fYear
1996
Firstpage
967
Lastpage
969
Abstract
Magnetoencephalographic (MEG) auditory evoked fields (EF) were recorded from 12 normal adult subjects over both hemispheres on two separate occasions at least one week apart using a seven-channel second-order gradiometer. Stimuli were computer-generated at 25-msec duration, 1 kHz tone pips. Responses to 100 stimuli were averaged, and source estimates with confidence intervals were computed, for the 100-msec latency auditory EF component, termed M100. Root-mean-squared (rms) differences in x, y, and z locations were approximately 0.7 cm on the two occasions; strength and orientation differences were 18 nA-m and 11°, respectively. This spatial accuracy using a seven-channel instrument, compares favorably with other currently available technologies for localization of brain function.
Keywords
hearing; magnetoencephalography; measurement errors; 1 kHz; 1 wk; 100 ms; 25 ms; MEG auditory evoked field source localizations reproducibility; brain function localization; cerebral hemispheres; normal adult subjects; normal human subjects; root-mean-squared differences; seven-channel gradiometer; spatial accuracy; tone pips; Delay; Humans; Instruments; Laboratories; Magnetic field measurement; Magnetic recording; Magnetic separation; Psychology; Reproducibility of results; Sampling methods; Adult; Analysis of Variance; Confidence Intervals; Evoked Potentials, Auditory; Female; Humans; Magnetoencephalography; Male; Reference Values; Reproducibility of Results;
fLanguage
English
Journal_Title
Biomedical Engineering, IEEE Transactions on
Publisher
ieee
ISSN
0018-9294
Type
jour
DOI
10.1109/10.532131
Filename
532131
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