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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Experimental investigation of computed tomography sound velocity reconstruction using incomplete data
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Experimental investigation of computed tomography sound velocity reconstruction using incomplete data

机译:利用不完整数据重建计算机断层扫描声速的实验研究

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摘要

An approach for reconstructing the sound velocity distribution in the breast was previously proposed and verified by simulations, and the present study investigated the approach experimentally. The experimental setup comprised a 5-MHz, 128-channel linear array, a programmable digital array system, a phantom containing objects with differing physical properties, and a computer. The array system was used to collect channel data for simultaneous B-mode image formation and limited-angle tomographic sound velocity reconstruction. The phantom was constructed from materials mimicking the following tissues in the breast: glandular tissue, fat, cysts, high-attenuation tumors, and irregular tumors. The sound velocities in these materials matched those in the corresponding real tissues. The imaging setup is similar to that of X-ray mammography, in which a linear array is placed at the top of the breast and a metal plate is placed at the bottom for reflecting sound waves. Thus, both B-mode images and the sound velocity distribution can be acquired using the same setup. An algorithm based on a convex programming formulation was used to reconstruct the sound velocity images. By scanning the phantom at different positions, nine cases were evaluated. In each of the nine cases, the image object comprised a background (glandular tissue) and one or three regions of interest (fat, tumor, or cyst). The sound velocity was accurately estimated in the nine cases evaluated, with sound velocity errors being less than 5 m/s in 8 of 11 regions of interest. Thus, obtaining the sound velocity distribution is feasible with a B-mode imaging setup using linear arrays. Knowledge of the sound velocity distribution in the breast can be used to complement B-mode imaging and to enhance the detection of breast cancer.
机译:先前提出了一种重建乳房声速分布的方法,并通过仿真进行了验证,并且本研究通过实验研究了该方法。实验装置包括一个5 MHz,128通道线性阵列,一个可编程数字阵列系统,一个包含具有不同物理特性的对象的幻像以及一台计算机。该阵列系统用于收集通道数据,以便同时进行B模式成像和有限角度层析成像声速重建。幻影由模仿乳房以下组织的材料制成:腺组织,脂肪,囊肿,高衰减性肿瘤和不规则肿瘤。这些材料中的声速与相应的实际组织中的声速匹配。成像设置类似于X射线乳腺摄影,其中线性阵列放置在乳房的顶部,金属板放置在底部以反射声波。因此,可以使用相同的设置获取B模式图像和声速分布。使用基于凸规划公式的算法来重建声速图像。通过在不同位置扫描体模,评估了9例。在这九种情况的每一种中,图像对象均包含背景(腺组织)和一个或三个感兴趣区域(脂肪,肿瘤或囊肿)。在评估的九种情况下,准确估计了声速,在11个感兴趣区域中的8个中,声速误差小于5 m / s。因此,获得声速分布对于使用线性阵列的B模式成像设置是可行的。乳房中声速分布的知识可用于补充B型成像并增强对乳腺癌的检测。

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