首页> 外文会议>2011 8th IEEE International Symposium on Biomedical Imaging: From Nano to Macro >Anisotropic equivalent conductivity tensors for bioelectric modeling of partial volume effects in cerebrospinal fluid spaces
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Anisotropic equivalent conductivity tensors for bioelectric modeling of partial volume effects in cerebrospinal fluid spaces

机译:各向异性等效电导率张量用于脑脊髓液空间中部分体积效应的生物电模拟

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Accurate modeling of bioelectric propagation within the head is necessary for precise electromagnetic source localization. We present here a new approach for modeling spaces fractionally composed of grey matter and cerebrospinal fluid. Using information about the orientation of the cortical surface, we construct anisotropic conductivity tensors to model the partial volume effects frequently present within sulci. Our results indicate that the CSF region has significant effect upon the resulting model, and can more accurately be accounted for using anisotropic conductivities. We validate our method using a whole brain statistical error analysis of the signal topography and magnitude.
机译:头部内生物电传播的准确模型对于精确的电磁源定位是必需的。我们在这里提出了一种新的方法来建模由灰质和脑脊髓液组成的空间。使用有关皮质表面取向的信息,我们构造各向异性电导率张量以模拟沟渠中经常出现的部分体积效应。我们的结果表明,CSF区域对生成的模型有重大影响,并且可以使用各向异性电导率更准确地进行解释。我们使用信号形态和大小的全脑统计误差分析来验证我们的方法。

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