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首页> 外文期刊>Sensors >A 2D Magneto-Acousto-Electrical Tomography Method to Detect Conductivity Variation Using Multifocus Image Method
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A 2D Magneto-Acousto-Electrical Tomography Method to Detect Conductivity Variation Using Multifocus Image Method

机译:二维磁声电层析成像方法,利用多焦点成像方法检测电导率变化

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As magneto-acoustic-electrical tomography (MAET) combines the merits of high contrast and high imaging resolution, and is extremely useful for electrical conductivity measurement, so it is expected to be a promising medical imaging modalities for diagnosis of early-stage cancer. Based on the Verasonics system and the MC600 displacement platform, we designed and implemented a MAET system with a chirp pulse stimulation (MAET-CPS) method and a focal probe was utilized for stepscan focus excitation to enhance the imaging resolution. The relevant experiments were conducted to explore the influence of excitation positions of the single-focus point, and the effect of the excitation position on the amplitudes of the conductivity variation was clearly demonstrated. In order to take advantage of the merits of multifocus imaging, we firstly proposed a single focus MAET system with a chirp pulse stimulation (sfMAET-CPS) method and a multifocus MAET system with a chirp pulse stimulation (mfMAET-CPS) method for high-resolution conductivity imaging, and a homogenous gelatin phantom with a cuboid-shaped hole was used to investigate the accuracy of mfMAET-CPS. Comparative experiments were carried out on the same uniform phantom by the sfMAET-CPS and the mfMAET-CPS, respectively. The results showed that: (1) the electrical conductivity distributions of the homogenous phantom with a cuboid-shaped hole were detected by the sfMAET-CPS but were easily affected by the focal point, which demonstrated that the sfMAET-CPS had a low imaging resolution. (2) Compared with the sfMAET-CPS, the imaging effect of the mfMAET-CPS was much better than that of the sfMAET-CPS. (3) A linear interpolation algorithm was used to process the 2D conductivity distribution; it increased the smoothness of the conductivity distribution and improved the imaging effect. The stepscan focus excitation and the linearly frequency-modulated theory provide an alternative scheme for the clinical application of MAET.
机译:磁声电层析成像(MAET)结合了高对比度和高成像分辨率的优点,并且对电导率测量极为有用,因此有望成为诊断早期癌症的有前途的医学成像方式。基于Verasonics系统和MC600位移平台,我们设计并实现了具有ET脉冲刺激(MAET-CPS)方法的MAET系统,并使用聚焦探头进行阶跃聚焦激发以提高成像分辨率。进行了相关实验,探讨了单焦点激励位置的影响,并明确证明了激励位置对电导率变化幅度的影响。为了利用多焦点成像的优点,我们首先提出了一种采用chi脉冲刺激的单焦点MAET系统(sfMAET-CPS)和采用a脉冲刺激的多焦点MAET系统(mfMAET-CPS),分辨率电导率成像,并使用具有长方体形孔的均质明胶体模来研究mfMAET-CPS的准确性。分别通过sfMAET-CPS和mfMAET-CPS在相同的统一体模上进行了对比实验。结果表明:(1)sfMAET-CPS检测到具有长方体形状的同形幻影的电导率分布,但容易受到焦点的影响,表明sfMAET-CPS的成像分辨率较低。 。 (2)与sfMAET-CPS相比,mfMAET-CPS的成像效果要好于sfMAET-CPS。 (3)使用线性插值算法处理二维电导率分布;它增加了电导率分布的平滑度并改善了成像效果。步骤可以聚焦激励,线性调频理论为MAET的临床应用提供了一种替代方案。

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