Tetik Ahmet Önder, Gençer Nevzat Güneri
Electrical and Electronics Engineering Department, Middle East Technical University, Ankara, Türkiye.
Int J Numer Method Biomed Eng. 2025 Jul;41(7):e70063. doi: 10.1002/cnm.70063.
Magneto-acousto-electrical tomography with magnetic field measurement technique (MAET-MI) is a hybrid imaging method that brings high spatial resolution of ultrasound imaging in electrical impedance tomography. This study investigates the impact of the quality factor of circular and figure-of-eight coils on the imaging performance of MAET-MI. Induced MAET signals on the circular coil are accurately obtained by modeling a circuit representation of an air-cored circular coil and deriving its transfer function through impedance measurements. The study demonstrates a significant improvement in signal-to-noise ratio (SNR) using high-quality factor coils compared to unity quality factor coils. Additionally, a 16-element linear phased array (LPA) ultrasound transducer, an air core circular coil, and a figure-of-eight coil are numerically modeled to obtain sector scan images of two-dimensional conductivity distributions. Point spread function (PSF) is characterized, and the lateral resolution of sector scan conductivity images is enhanced through two-dimensional deconvolution with PSF. The combined use of circular and figure-of-eight coils provides comprehensive imaging coverage. Notably, this research presents a practical method for estimating both circular and figure-of-eight coils' transfer functions, achieving 12.9 dB SNR improvement with high-quality factor coils. A simplified breast model is rotated 16 steps, and sector scan conductive boundary images are reconstructed for both coils. A two-dimensional image of a breast model is obtained by combining images from two different coils. These findings offer significant advancements in MAET-MI imaging, particularly in low SNR environments.
带磁场测量技术的磁声电层析成像(MAET-MI)是一种混合成像方法,它将电阻抗断层成像中超声成像的高空间分辨率优势结合了起来。本研究调查了圆形和8字形线圈的品质因数对MAET-MI成像性能的影响。通过对空心圆形线圈的电路表示进行建模,并通过阻抗测量推导其传递函数,准确获取了圆形线圈上感应的MAET信号。研究表明,与品质因数为1的线圈相比,使用高品质因数线圈时信噪比(SNR)有显著提高。此外,对一个16阵元线性相控阵(LPA)超声换能器、一个空心圆形线圈和一个8字形线圈进行了数值建模,以获取二维电导率分布的扇形扫描图像。对点扩散函数(PSF)进行了表征,并通过与PSF的二维去卷积提高了扇形扫描电导率图像的横向分辨率。圆形和8字形线圈的联合使用提供了全面的成像覆盖范围。值得注意的是,本研究提出了一种估计圆形和8字形线圈传递函数的实用方法,使用高品质因数线圈时信噪比提高了12.9 dB。将一个简化的乳房模型旋转16步,为两个线圈重建扇形扫描导电边界图像。通过组合来自两个不同线圈的图像获得乳房模型的二维图像。这些发现为MAET-MI成像带来了重大进展,尤其是在低信噪比环境中。