Lütkenhöner B
Institute of Experimental Audiology, University of Münster, Germany.
Electroencephalogr Clin Neurophysiol. 1998 Apr;106(4):314-21. doi: 10.1016/s0013-4694(97)00140-5.
By analyzing simulated neuromagnetic recordings with a 37 channel magnetometer system, it was shown that the accuracy of a dipole source localization is considerably improved if the standard least-squares fit procedure is replaced by a maximum likelihood estimation accounting for the covariances of the noise in the measurement channels. Spatially correlated noise was generated by random dipoles homogeneously distributed in a sphere representing the brain. The study suggests that a maximum likelihood estimation reduces the standard deviations of the estimated dipole parameters by roughly a factor of two.
通过使用37通道磁力计系统分析模拟的神经磁记录结果表明,如果用考虑测量通道噪声协方差的最大似然估计取代标准最小二乘拟合程序,偶极子源定位的准确性将得到显著提高。空间相关噪声由均匀分布在代表大脑的球体中的随机偶极子产生。该研究表明,最大似然估计可将估计的偶极子参数的标准差大致降低一半。