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Effects of uncertainty in head tissue conductivity and complexity on EEG forward modeling in neonates

机译:头部组织电导率和复杂性的不确定性对新生儿脑电图正向建模的影响

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摘要

In this study, we investigated the impact of uncertainty in head tissue conductivities and inherent geometrical complexities including fontanels in neonates. Based on MR and CT coregistered images, we created a realistic neonatal head model consisting of scalp, skull, fontanels, cerebrospinal fluid (CSF), gray matter (GM), and white matter (WM). Using computer simulations, we investigated the effects of exclusion of CSF and fontanels, discrimination between GM and WM, and uncertainty in conductivity of neonatal head tissues on EEG forward modeling. We found that exclusion of CSF from the head model induced the strongest widespread effect on the EEG forward solution. Discrimination between GM and white matter also induced a strong widespread effect, but which was less intense than that of CSF exclusion. The results also showed that exclusion of the fontanels from the neonatal head model locally affected areas beneath the fontanels, but this effect was much less pronounced than those of exclusion of CSF and GM/WM discrimination. Changes in GM/WM conductivities by 25% with respect to reference values induced considerable effects in EEG forward solution, but this effect was more pronounced for GM conductivity. Similarly, changes in skull conductivity induced effects in the EEG forward modeling in areas covered by the cranial bones. The least intense effect on EEG was caused by changes in conductivity of the fontanels. Our findings clearly emphasize the impact of uncertainty in conductivity and deficiencies in head tissue compartments on modeling research and localization of brain electrical activity in neonates. . © .
机译:在这项研究中,我们调查了不确定性对新生儿头部组织电导率和固有几何复杂性(包括font)的影响。基于MR和CT共同配准的图像,我们创建了一个现实的新生儿头模型,包括头皮,头骨,skull门,脑脊液(CSF),灰质(GM)和白质(WM)。使用计算机模拟,我们调查了脑脊液和font门的排除,GM和WM之间的区别以及新生儿头部组织电导率的不确定性对EEG正向建模的影响。我们发现,从脑模型中排除脑脊液对脑电正向解决方案的影响最大。 GM和白质之间的区分也引起了强烈的广泛影响,但没有CSF排斥那么强烈。结果还表明,从新生儿头部模型中排除the门会局部影响the门下方的区域,但这种效果远不如排除CSF和GM / WM歧视的效果明显。相对于参考值,GM / WM电导率变化25%会在EEG正向溶液中产生相当大的影响,但对于GM电导率而言,这种影响更为明显。同样,颅骨电导率的变化在脑电图正向建模中在颅骨覆盖区域诱发效应。对EEG影响最小的是was门电导率的变化。我们的发现清楚地强调了头组织隔室中电导率和缺陷的不确定性对新生儿模型研究和脑电活动定位的影响。 。 ©。

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