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Electrical Conductivity Imaging of Postmortem Canine Brains using Magnetic Resonance Electrical Impedance Tomography

机译:使用磁共振电阻断层扫描的后蛋白犬大脑电导率成像

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Cross-sectional images of a conductivity distribution inside a postmortem canine brain were reconstructed using Magnetic Resonance Electrical Impedance Tomography (MREIT) techniques. Injecting currents through pairs of surface electrodes, we measured distributions of induced magnetic flux densities inside the brain using a 3T MRI scanner. We used a conductivity image reconstruction algorithm called the harmonic B{sub}z algorithm to produce conductivity images. The spatial resolution of conductivity images was 1.406×1.406mm{sup}2 and they showed a clear contrast between white and gray matters. Conductivity ratios of white to gray matters were between 1.13 and 1.20 depending on the choice of a region of interest in reconstructed images. Higher conductivity values of white matters stem from the fact that reconstructed equivalent isotropic conductivity values of white matters are more affected by longitudinal components of their anisotropic conductivity tensors. In this postmortem experimental study, the amplitude of the injection current was 40mA that is too high any in vivo experiments. From the postmortem experimental results summarized in this paper, we proposed an experimental protocol for in vivo animal experiments in our future studies.
机译:使用磁共振电阻断层扫描(MREIT)技术来重建后模糊犬脑内导电分布的横截面图像。通过一对表面电极注入电流,我们使用3T MRI扫描仪测量脑内诱导磁通密度的分布。我们使用称为谐波B {Sub} Z算法的电导率图像重建算法来产生电导率图像。电导率图像的空间分辨率为1.406×1.406mm {sup} 2,它们在白色和灰色问题之间显示出明显的对比。白色到灰色问题的电导率比在1.13和1.20之间,这取决于在重建图像中的感兴趣区域的选择。白色物质的较高电导率源于白色物质的重建等效各向同性电导率值,其各向异性导电性张量的纵向部件的影响更大。在该淘汰的实验研究中,喷射电流的幅度为40mA,其在体内实验中过高。从本文总结的后期实验结果来看,我们提出了在我们未来的研究中体内动物实验的实验方案。

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