首页> 外文期刊>Royal Society Open Science >Finite-element analysis of microwave scattering from a three-dimensional human head model for brain stroke detection
【24h】

Finite-element analysis of microwave scattering from a three-dimensional human head model for brain stroke detection

机译:三维人头模型微波散射对脑卒中检测的有限元分析

获取原文
           

摘要

In this paper, a detailed analysis of microwave (MW) scattering from a three-dimensional (3D) anthropomorphic human head model is presented. It is the first time that the finite-element method (FEM) has been deployed to study the MW scattering phenomenon of a 3D realistic head model for brain stroke detection. A major contribution of this paper is to add anatomically more realistic details to the human head model compared with the literature available to date. Using the MRI database, a 3D numerical head model was developed and segmented into 21 different types through a novel tissue-mapping scheme and a mixed-model approach. The heterogeneous and frequency-dispersive dielectric properties were assigned to brain tissues using the same mapping technique. To mimic the simulation set-up, an eight-elements antenna array around the head model was designed using dipole antennae. Two types of brain stroke (haemorrhagic and ischaemic) at various locations inside the head model were then analysed for possible detection and classification. The transmitted and backscattered signals were calculated by finding out the solution of the Helmholtz wave equation in the frequency domain using the FEM. FE mesh convergence analysis for electric field values and comparison between different types of iterative solver were also performed to obtain error-free results in minimal computational time. At the end, specific absorption rate analysis was conducted to examine the ionization effects of MW signals to a 3D human head model. Through computer simulations, it is foreseen that MW imaging may efficiently be exploited to locate and differentiate two types of brain stroke by detecting abnormal tissues’ dielectric properties. A significant contrast between electric field values of the normal and stroke-affected brain tissues was observed at the stroke location. This is a step towards generating MW scattering information for the development of an efficient image reconstruction algorithm.
机译:本文提出了一种从三维(3D)拟人人头模型的微波(MW)散射的详细分析。首次部署了有限元方法(FEM),以研究脑卒中检测3D现实头模型的MW散射现象。与迄今为止可用的文献相比,本文的主要贡献是向人头模型添加到人体头部模型的解剖更现实的细节。使用MRI数据库,通过新颖的组织映射方案和混合模型方法开发了3D数值头模型并分割成21种不同类型。使用相同的映射技术将异构和分散介电性能分配给脑组织。为了模拟模拟设置,使用偶极天线设计了头部模型周围的八元天线阵列。然后分析头部模型内部各个位置的两种类型的脑卒中(出血和缺血)以进行检测和分类。通过使用FEM的频域中的Helmholtz波方程的解决方案来计算发送和反向散射信号。还执行用于电场值的FE网格收敛性和不同类型的迭代求解器之间的比较以获得最大的计算时间内无差错的结果。最后,进行了特异性吸收率分析以检查MW信号对3D人头模型的电离效应。通过计算机模拟,预见到通过检测异常组织的介电性质,可以有效地利用MW成像来定位和区分两种类型的脑卒中。在行程位置观察到正常和中风影响脑组织的电场值之间的显着对比。这是朝向产生高效图像重建算法的开发的MW散射信息的步骤。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号