Seo Jin Keun, Pyo Hyun Chan, Park Chunjae, Kwon Ohin, Woo Eung Je
Department of Mathematics, Yonsei University, Korea.
Phys Med Biol. 2004 Sep 21;49(18):4371-82. doi: 10.1088/0031-9155/49/18/012.
We describe a novel method of reconstructing images of an anisotropic conductivity tensor distribution inside an electrically conducting subject in magnetic resonance electrical impedance tomography (MREIT). MREIT is a recent medical imaging technique combining electrical impedance tomography (EIT) and magnetic resonance imaging (MRI) to produce conductivity images with improved spatial resolution and accuracy. In MREIT, we inject electrical current into the subject through surface electrodes and measure the z-component Bz of the induced magnetic flux density using an MRI scanner. Here, we assume that z is the direction of the main magnetic field of the MRI scanner. Considering the fact that most biological tissues are known to have anisotropic conductivity values, the primary goal of MREIT should be the imaging of an anisotropic conductivity tensor distribution. However, up to now, all MREIT techniques have assumed an isotropic conductivity distribution in the image reconstruction problem to simplify the underlying mathematical theory. In this paper, we firstly formulate a new image reconstruction method of an anisotropic conductivity tensor distribution. We use the relationship between multiple injection currents and the corresponding induced Bz data. Simulation results show that the algorithm can successfully reconstruct images of anisotropic conductivity tensor distributions. While the results show the feasibility of the method, they also suggest a more careful design of data collection methods and data processing techniques compared with isotropic conductivity imaging.
我们描述了一种在磁共振电阻抗断层成像(MREIT)中重建导电物体内部各向异性电导率张量分布图像的新方法。MREIT是一种最新的医学成像技术,它结合了电阻抗断层成像(EIT)和磁共振成像(MRI),以生成具有更高空间分辨率和准确性的电导率图像。在MREIT中,我们通过表面电极向物体注入电流,并使用MRI扫描仪测量感应磁通密度的z分量Bz。在此,我们假设z是MRI扫描仪主磁场的方向。考虑到大多数生物组织已知具有各向异性的电导率值这一事实,MREIT的主要目标应该是对各向异性电导率张量分布进行成像。然而,到目前为止,所有MREIT技术在图像重建问题中都假设电导率分布是各向同性的,以简化基础数学理论。在本文中,我们首先制定了一种新的各向异性电导率张量分布图像重建方法。我们利用多个注入电流与相应感应Bz数据之间的关系。模拟结果表明,该算法能够成功重建各向异性电导率张量分布的图像。虽然结果显示了该方法的可行性,但与各向同性电导率成像相比,它们也表明需要更精心地设计数据收集方法和数据处理技术。