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A simulation study of the error in dipole source localization for EEG spikes with a realistic head model.

机译:用真实的头部模型对EEG尖峰的偶极源定位误差进行仿真研究。

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OBJECTIVE: We tried to determine the error range of dipole modeling for EEG spikes originating from various clinically important sources by a simulation study employing a realistic head model. The computed error range was also compared with the degree of disturbance of dipole modeling caused by adding background activity to the spike.METHODS: The scalp fields generated by temporal, frontal and rolandic epileptic sources with spatial extent were simulated, and the corresponding 3-dimensional maps of residual variance (RV) were built by computing the RV for a single dipole at each point on a fine imaginary grid in the brain. Single dipole modeling was also performed for the simulated scalp fields after adding real background activity.RESULTS: The brain volume corresponding to a small RV was compact for the frontal sources and the lateral and baso-mesial temporal sources, and large for the anterior and baso-lateral temporal sources. The distribution of dipoles estimated for spikes contaminated with background corresponded to that of the volume of small RV and to spike-amplitude. Estimates were improved by employing inferior temporal electrodes.CONCLUSIONS: When evaluating dipole models of epileptic spikes, error ranges can be estimated and they vary considerably from region to region.SIGNIFICANCE: This study illustrates the variability of the error in dipole modeling of epileptic spikes. This variability is important when considering the clinical interpretation of modeling results.
机译:目的:我们试图通过采用真实头部模型的模拟研究来确定源自各种临床重要来源的脑电图峰值的偶极建模误差范围。方法还比较了计算的误差范围和由于增加背景活动给尖峰造成的偶极子建模的干扰程度。方法:模拟时空,额叶和罗兰癫痫病源在空间范围内产生的头皮场,并相应地进行三维分析通过计算大脑中精细虚构网格上每个点的单个偶极子的RV,可以建立残差方差图(RV)。添加真实的背景活动后,还对模拟的头皮场进行了单偶极子建模。结果:额叶,额叶外侧和基底-颞部颞叶来源的小型RV的大脑体积较小,前额和基底层的大脑体积较大侧颞源。估计被背景污染的尖峰的偶极子分布与小RV的体积和尖峰幅度相对应。结论:当评估癫痫尖峰的偶极子模型时,可以估计误差范围,并且误差范围随区域的不同而有很大的差异。考虑模型结果的临床解释时,这种可变性很重要。

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