Sensitivity distributions of EEG and MEG measurements

被引:93
作者
Malmivuo, J
Suihko, V
Eskola, H
机构
[1] Ragnar Granit Institute, Tampere University of Technology
基金
芬兰科学院;
关键词
bioelectromagnetism; electroencephalography; magnetoencephalography;
D O I
10.1109/10.554766
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
It is generally believed that because the skull has low conductivity to electric current but is transparent to magnetic fields, the measurement sensitivity of the magnetoencephalography (MEG) in the brain region should be more concentrated than that of the electroencephalography (EEG), It is also believed that the information recorded by these techniques is very different, If this were indeed the ease, it might be possible to justify the cost of MEG instrumentation which is at least 25 times higher than that of EEG instrumentation. The localization of measurement sensitivity using these techniques was evaluated quantitatively in an inhomogeneous spherical head model using a nov concept called half-sensitivity volume (HSV). It is shown that the planar gradiometer has a far smaller HSV than the axial gradiometer, However, using the EEG it is possible to achieve even smaller HSV's than with whole-head planar gradiometer MEG devices, The micro-superconducting quantum interference device (SQUID) MEG device does have HSV's comparable to those of the EEG, The sensitivity distribution of planar gradiometers, however, closely resembles that of dipolar EEG leads and, therefore, the MEG and EEG record the electric activity of the brain in a very similar way.
引用
收藏
页码:196 / 208
页数:13
相关论文
共 24 条
[1]   NUMERICAL-CALCULATION OF THE POTENTIAL DISTRIBUTION DUE TO DIPOLE SOURCES IN A SPHERICAL MODEL OF THE HEAD [J].
ABBOUD, S ;
ESHEL, Y ;
LEVY, S ;
ROSENFELD, M .
COMPUTERS AND BIOMEDICAL RESEARCH, 1994, 27 (06) :441-455
[2]   LOCALIZATION OF IMPLANTED DIPOLES BY MAGNETOENCEPHALOGRAPHY [J].
BALISH, M ;
SATO, S ;
CONNAUGHTON, P ;
KUFTA, C .
NEUROLOGY, 1991, 41 (07) :1072-1076
[3]   MEG VERSUS EEG LOCALIZATION TEST USING IMPLANTED SOURCES IN THE HUMAN BRAIN [J].
COHEN, D ;
CUFFIN, BN ;
YUNOKUCHI, K ;
MANIEWSKI, R ;
PURCELL, C ;
COSGROVE, GR ;
IVES, J ;
KENNEDY, JG ;
SCHOMER, DL .
ANNALS OF NEUROLOGY, 1990, 28 (06) :811-817
[4]   IMAGES OF CONFLICT - MEG VS EEG [J].
CREASE, RP .
SCIENCE, 1991, 253 (5018) :374-375
[5]   TESTS OF EEG LOCALIZATION ACCURACY USING IMPLANTED SOURCES IN THE HUMAN BRAIN [J].
CUFFIN, BN ;
COHEN, D ;
YUNOKUCHI, K ;
MANIEWSKI, R ;
PURCELL, C ;
COSGROVE, GR ;
IVES, J ;
KENNEDY, J ;
SCHOMER, D .
ANNALS OF NEUROLOGY, 1991, 29 (02) :132-138
[6]   CORRELATION BETWEEN SKULL THICKNESS ASYMMETRY AND SCALP POTENTIAL ESTIMATED BY A NUMERICAL-MODEL OF THE HEAD [J].
ESHEL, Y ;
WITMAN, SL ;
ROSENFELD, M ;
ABBOUD, S .
IEEE TRANSACTIONS ON BIOMEDICAL ENGINEERING, 1995, 42 (03) :242-249
[7]   CORRECTED UNIPOSITIONAL LEAD SYSTEM FOR VECTOR MAGNETOCARDIOGRAPHY [J].
ESKOLA, HJ ;
MALMIVUO, JAV ;
NOUSIAINEN, JJO ;
LEKKALA, JO .
IEEE TRANSACTIONS ON BIOMEDICAL ENGINEERING, 1987, 34 (02) :81-90
[8]  
Helmholtz H., 1853, ANN PHYS CHEM, V89, P354
[9]  
Helmholtz H., 1853, Annalen der Physik, V165, P211, DOI [DOI 10.1002/ANDP.18531650702, DOI 10.1002/ANDP.18531650603]
[10]  
MALMIVUO J, 1995, BIOELECTROMAGNETISM, P480