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采用多角度平面波激发的改进型磁声电计算机断层扫描(MAE-CT)

Improved Magneto-Acousto-Electrical Computed Tomography (MAE-CT) With Multi-Angle Plane Wave Excitation.

作者信息

Lin Haoming, Chen Yi, Yu LinGuo, Xie Siyuan, Sun Tong, Yu Mengmeng, Chen Siping, Chen Mian, Chen Xin

出版信息

IEEE Trans Biomed Eng. 2023 May;70(5):1493-1503. doi: 10.1109/TBME.2022.3220645. Epub 2023 Apr 20.

Abstract

As a tissue conductivity imaging method, magneto-acousto-electric tomography (MAET) has the advantage of high axial spatial resolution compared with traditional electrical impedance imaging methods. However, it has the problems of difficulty in imaging targets with irregular conductivity distribution and poor lateral spatial resolution. Although the rotation-based MAET method can partly solve the irregular target problem, there is still a poor imaging signal-to-noise ratio (SNR) problem. Our previous study established a framework of an innovative MAET method, which has a very similar imaging theory and reconstruction algorithm to those of computed tomography (CT). Therefore, we name the method magneto-acoustic-electric computed tomography (MAE-CT). This paper proposes an improved implementation of MAE-CT based on multi-angle plane wave excitation. This method combines the electronic steering of the linear array transducer with the mechanical rotation to increase the number of projection angles while keeping the imaging complexity. In this study, we first established a finite element simulation model to verify the method's feasibility. Then phantom experiments were conducted to systematically investigate the performance of the proposed method. Finally, in vitro liver tissue experiment was conducted to further explore the feasibility of the method. The experimental results show that our method improves both the SNR and spatial resolution of the reconstructed image. For the phantom results, this method can detect conductivity of 0.67 S/m in an area with a size of 2 mm. To the best of our knowledge, this is the best result of spatial resolution available for MAET.

摘要

作为一种组织电导率成像方法,磁声电断层扫描(MAET)与传统电阻抗成像方法相比,具有轴向空间分辨率高的优点。然而,它存在对电导率分布不规则的目标成像困难以及横向空间分辨率差的问题。尽管基于旋转的MAET方法可以部分解决不规则目标问题,但仍存在成像信噪比(SNR)差的问题。我们之前的研究建立了一种创新的MAET方法框架,其成像理论和重建算法与计算机断层扫描(CT)非常相似。因此,我们将该方法命名为磁声电计算机断层扫描(MAE-CT)。本文提出了一种基于多角度平面波激发的MAE-CT改进实施方案。该方法将线性阵列换能器的电子转向与机械旋转相结合,在保持成像复杂度的同时增加投影角度数量。在本研究中,我们首先建立了有限元仿真模型来验证该方法的可行性。然后进行了体模实验,系统地研究了所提方法的性能。最后,进行了体外肝脏组织实验,进一步探索该方法的可行性。实验结果表明,我们的方法提高了重建图像的信噪比和空间分辨率。对于体模结果,该方法能够在尺寸为2mm的区域检测到0.67S/m的电导率。据我们所知,这是MAET可获得的空间分辨率的最佳结果。

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