Anatomically constrained electrical impedance tomography for three-dimensional anisotropic bodies

被引:25
作者
Glidewell, ME
Ng, KT
机构
[1] RINCON RES CORP,TUCSON,AZ 85711
[2] NEW MEXICO STATE UNIV,KLIPSCH SCH ELECT & COMP ENGN,DEPT 3 0,LAS CRUCES,NM 88003
关键词
anatomical constraint; electrical impedance tomography; finite element method; three-dimensional anisotropy;
D O I
10.1109/42.640746
中图分类号
TP39 [计算机的应用];
学科分类号
081203 ; 0835 ;
摘要
As shown previously for two-dimensional geometrics, anisotropy effects should not be ignored in electrical impedance tomography (EIT) and structural information is important for the reconstruction of anisotropic conductivities, Here, we will describe the static reconstruction of an anisotropic conductivity distribution for the more realistic three-dimensional (3-D) case, Boundaries between different conductivity regions are anatomically constrained using magnetic resonance imaging (MRI) data, The values of the conductivities are then determined using gradient-type algorithms in a nonlinear-indirect approach, At each iteration, the forward problem is solved by the finite element method, The approach is used to reconstruct the 3-D conductivity profile of a canine torso. Both computational performance and simulated reconstruction results are presented together with a detailed study on the sensitivity of the prediction error with respect to different parameters, In particular, the use of an intracavity catheter to better extract interior conductivities is demonstrated.
引用
收藏
页码:572 / 580
页数:9
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