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基于非均匀各向异性电导率的磁感应磁声信号产生的数值研究。

Numerical study of magnetoacoustic signal generation with magnetic induction based on inhomogeneous conductivity anisotropy.

机构信息

College of Computer Science, Hangzhou Dianzi University, Hangzhou 310018, China.

出版信息

Comput Math Methods Med. 2013;2013:161357. doi: 10.1155/2013/161357. Epub 2013 Mar 26.

Abstract

Magnetoacoustic tomography with magnetic induction (MAT-MI) is a noninvasive imaging modality for generating electrical conductivity images of biological tissues with high spatial resolution. In this paper, we create a numerical model, including a permanent magnet, a coil, and a two-layer coaxial cylinder with anisotropic electrical conductivities, for the MAT-MI forward problem. We analyze the MAT-MI sources in two cases, on a thin conductive boundary layer and in a homogeneous medium, and then develop a feasible numerical approach to solve the MAT-MI sound source densities in the anisotropic conductive model based on finite element analysis of electromagnetic field. Using the numerical finite element method, we then investigate the magnetoacoustic effect of anisotropic conductivity under the inhomogeneous static magnetic field and inhomogeneous magnetic field, quantitatively compute the boundary source densities in the conductive model, and calculate the sound pressure. The anisotropic conductivity contributes to the distribution of the eddy current density, Lorentz force density, and acoustic signal. The proposed models and approaches provide a more realistic simulation environment for MAT-MI.

摘要

磁感应磁声断层成像(MAT-MI)是一种非侵入性成像方式,可用于生成具有高空间分辨率的生物组织电导率图像。本文为 MAT-MI 正问题创建了一个数值模型,包括一个永磁体、一个线圈和一个具有各向异性电导率的两层同轴圆柱。我们分析了两种情况下的 MAT-MI 源,即在薄导电边界层和均匀介质中,然后开发了一种可行的数值方法,基于电磁场的有限元分析来求解各向异性导电模型中的 MAT-MI 声源密度。然后,我们使用数值有限元方法研究了各向异性电导率在非均匀静态磁场和非均匀磁场下的磁声效应,定量计算了导电模型中的边界源密度,并计算了声压。各向异性电导率会影响涡流密度、洛伦兹力密度和声波信号的分布。所提出的模型和方法为 MAT-MI 提供了更逼真的模拟环境。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8df5/3622383/ea65d1f2d11f/CMMM2013-161357.001.jpg

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