Van Hoey G, Vanrumste B, D'Havé M, Van de Walle R, Lemahieu I, Boon P
Department of Electronics & Information Systems, Ghent University, Belgium.
Med Biol Eng Comput. 2000 May;38(3):287-96. doi: 10.1007/BF02347049.
Measurement noise in the electro-encephalogram (EEG) and inaccurate information about the locations of the EEG electrodes on the head induce localisation errors in the results of EEG dipole source analysis. These errors are studied by performing dipole source localisation for simulated electrode potentials in a spherical head model, for a range of different dipole locations and for two different numbers (27 and 148) of electrodes. Dipole source localisation is performed by iteratively minimising the residual energy (RE), using the simplex algorithm. The ratio of the dipole localisation error (cm) to the noise level (%) of Gaussian measurement noise amounts to 0.15 cm/% and 0.047 cm/% for the 27 and 148 electrode configurations, respectively, for a radial dipole with 40% eccentricity The localisation error due to noise can be reduced by taking into account multiple time instants of the measured potentials. In the case of random displacements of the EEG electrodes, the ratio of dipole localisation errors to electrode location errors amounts to 0.78 cm-1 cm and 0.27 cm-1 cm for the 27 and 148 electrode configurations, respectively. It is concluded that it is important to reduce the measurement noise, and particularly the electrode mislocalisation, as the influence of the latter is not reduced by taking into account multiple time instants.
脑电图(EEG)中的测量噪声以及EEG电极在头部位置的不准确信息会导致EEG偶极子源分析结果出现定位误差。通过在球形头部模型中对模拟电极电位进行偶极子源定位,针对一系列不同的偶极子位置以及两种不同数量(27个和148个)的电极来研究这些误差。使用单纯形算法通过迭代最小化残余能量(RE)来进行偶极子源定位。对于偏心度为40%的径向偶极子,在27电极配置和148电极配置下,偶极子定位误差(厘米)与高斯测量噪声水平(%)的比值分别为0.15厘米/%和0.047厘米/%。通过考虑测量电位的多个时刻,可以降低由噪声引起的定位误差。在EEG电极随机位移的情况下,对于27电极配置和148电极配置,偶极子定位误差与电极位置误差的比值分别为0.78厘米/厘米和0.27厘米/厘米。得出的结论是,降低测量噪声,尤其是电极定位错误非常重要,因为考虑多个时刻并不能减少后者的影响。