Toda Shogo, Takemae Tadashi, Kosugi Yukio, Hongo Minoru
Graduate School of Science and Technology, Shizuoka University, Shizuoka 422-8529, Japan.
IEEE Trans Biomed Eng. 2009 Feb;56(2):400-6. doi: 10.1109/TBME.2008.2008169. Epub 2008 Oct 31.
A new contactless technique for electrical impedance imaging, using an eddy current managed along with the tetrapolar circuit method, is proposed. The eddy current produced by a magnetic field is superimposed on a constant current that is normally used in the tetrapolar circuit method, and thus is used to control the current distribution in the body. By changing the current distribution, a set of voltage differences is measured with a pair of electrodes. This set of voltage differences is used in the image reconstruction of the resistivity distribution. The least square error minimization method is used in the reconstruction algorithm. The principle of this method is explained theoretically. A backprojection algorithm was used to get 2-D images. Based on this principle, a measurement system was developed and model experiments were conducted with a saline-filled phantom. The estimated shape of each model in the reconstructed image was similar to that of the corresponding model. From the results of these experiments, it is confirmed that the proposed method is applicable to the realization of electrical conductivity imaging.
提出了一种新的用于电阻抗成像的非接触技术,该技术利用与四极电路法协同管理的涡流。由磁场产生的涡流叠加在四极电路法中通常使用的恒定电流上,从而用于控制体内的电流分布。通过改变电流分布,用一对电极测量一组电压差。这组电压差用于电阻率分布的图像重建。重建算法采用最小二乘误差最小化方法。从理论上解释了该方法的原理。使用反投影算法获得二维图像。基于此原理,开发了一个测量系统,并对充满盐水的模型进行了模型实验。重建图像中每个模型的估计形状与相应模型的形状相似。从这些实验结果可以确认,所提出的方法适用于电导率成像的实现。