The correlation coefficient and the goodness of fit in source localization of noise recorded by magnetoencephalography

被引:1
作者
Siedenberg, R
Goodin, DS
Aminoff, MJ
Rowley, HA
Roberts, TPI
机构
[1] UNIV CALIF SAN FRANCISCO,DEPT NEUROL,SAN FRANCISCO,CA 94243
[2] UNIV CALIF SAN FRANCISCO,DEPT RADIOL,SAN FRANCISCO,CA 94143
关键词
magnetoencephalography; equivalent current dipole; correlation coefficient; goodness of fit; noise;
D O I
10.1007/BF01200709
中图分类号
R74 [神经病学与精神病学];
学科分类号
摘要
We recorded magnetic field activity to evaluate the specificity of the correlation coefficient and the goodness of fit in source localization. Magnetic noise was recorded (bandpass 1-200 Hz) with a 37-channel magnetometer with and without a subject present in a magnetically shielded room After averaging of the recorded epochs, the data were subjected to a single equivalent current dipole algorithm. The correlation coefficient and the goodnesses of fit were computed for each dipole fit. The number of high correlations and high goodnesses of fit was determined. In recordings without a subject present the averaged original data never achieved a correlation higher than 0.70 and a goodness of fit higher than 0.85. After more restrictive filtering (bandpass 1-20 Hz) there was a significant increase for both correlation and goodness of fit. In recordings with a subject present (but not receiving external stimulation) the correlation and the goodness of fit for the averaged original data reached 0.96 and 0.97; after filtering, both measures reached values greater than or equal to 0.99. The results of this study indicate that both the correlation coefficient and the goodness of fit lack the specificity to distinguish stimulus-related brain activity from background noise.
引用
收藏
页码:95 / 100
页数:6
相关论文
共 21 条
[1]  
ACHIM A, 1988, Brain Topography, V1, P22, DOI 10.1007/BF01129336
[2]  
[Anonymous], 1987, METHODS ANAL BRAIN E
[3]  
BLEANEY BI, 1983, ELECT MAGNETISM
[4]   INTRASUBJECT RELIABILITY AND VALIDITY OF SOMATOSENSORY SOURCE LOCALIZATION USING A LARGE ARRAY BIOMAGNETOMETER [J].
GALLEN, CC ;
SCHWARTZ, B ;
RIEKE, K ;
PANTEV, C ;
SOBEL, D ;
HIRSCHKOFF, E ;
BLOOM, FE .
ELECTROENCEPHALOGRAPHY AND CLINICAL NEUROPHYSIOLOGY, 1994, 90 (02) :145-156
[5]   NONINVASIVE PRESURGICAL NEUROMAGNETIC MAPPING OF SOMATOSENSORY CORTEX [J].
GALLEN, CC ;
ROBERTS, DW ;
SOBEL, DF ;
WALTZ, T ;
CRANDALL, PH ;
AUNG, M ;
COPELAND, B ;
SCHWARTZ, BJ ;
HIRSCHKOFF, EC ;
BLOOM, FE .
NEUROSURGERY, 1993, 33 (02) :260-268
[6]   CEREBRAL MAGNETIC RESPONSES TO STIMULATION OF ULNAR AND MEDIAN NERVES [J].
HUTTUNEN, J ;
HARI, R ;
LEINONEN, L .
ELECTROENCEPHALOGRAPHY AND CLINICAL NEUROPHYSIOLOGY, 1987, 66 (04) :391-400
[7]  
KAUKORANTA E, 1986, EXP BRAIN RES, V63, P60
[8]  
KOOPMANS LH, 1987, INTRO CONT STAT METH
[9]  
LYPCHUK T, 1990, DIPOLE FIT ALGORITHM
[10]   TONOTOPIC ORGANIZATION OF THE HUMAN AUDITORY-CORTEX REVEALED BY TRANSIENT AUDITORY EVOKED MAGNETIC-FIELDS [J].
PANTEV, C ;
HOKE, M ;
LEHNERTZ, K ;
LUTKENHONER, B ;
ANOGIANAKIS, G ;
WITTKOWSKI, W .
ELECTROENCEPHALOGRAPHY AND CLINICAL NEUROPHYSIOLOGY, 1988, 69 (02) :160-170