LEICI, Facultad de Ingeniería, Universidad Nacional de La Plata, Calle 1 y 47, B1900TAG La Plata, Buenos Aires, Argentina.
Comput Methods Programs Biomed. 2011 Jul;103(1):1-9. doi: 10.1016/j.cmpb.2010.05.008. Epub 2010 Jul 5.
We analyze the effect of electrode mislocation on the electroencephalography (EEG) inverse problem using the Cramér-Rao bound (CRB) for single dipolar source parameters. We adopt a realistic head shape model, and solve the forward problem using the Boundary Element Method; the use of the CRB allows us to obtain general results which do not depend on the algorithm used for solving the inverse problem. We consider two possible causes for the electrode mislocation, errors in the measurement of the electrode positions and an imperfect registration between the electrodes and the scalp surfaces. For 120 electrodes placed in the scalp according to the 10-20 standard, and errors on the electrode location with a standard deviation of 5mm, the lower bound on the standard deviation in the source depth estimation is approximately 1mm in the worst case. Therefore, we conclude that errors in the electrode location may be tolerated since their effect on the EEG inverse problem are negligible from a practical point of view.
我们使用单偶极子源参数的克拉美-罗界(CRB)分析了电极定位误差对脑电图(EEG)逆问题的影响。我们采用了一个现实的头部形状模型,并使用边界元法求解正问题;CRB 的使用使我们能够获得不依赖于用于求解逆问题的算法的一般结果。我们考虑了电极定位误差的两种可能原因,即电极位置测量误差和电极与头皮表面之间的不完美配准。对于根据 10-20 标准放置在头皮上的 120 个电极,以及电极位置的标准偏差为 5mm 的误差,在最坏情况下,源深度估计中标准偏差的下限约为 1mm。因此,我们得出结论,电极位置的误差是可以容忍的,因为从实际角度来看,它们对 EEG 逆问题的影响可以忽略不计。