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首页> 外文期刊>Ultrasonics, Ferroelectrics and Frequency Control, IEEE Transactions on >Anechoic sphere phantoms for estimating 3-D resolution of very-high-frequency ultrasound scanners
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Anechoic sphere phantoms for estimating 3-D resolution of very-high-frequency ultrasound scanners

机译:消声球体模,用于估计超高频超声扫描仪的3D分辨率

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摘要

Two phantoms have been constructed for assessing performance of high-frequency ultrasound imagers. They also allow for periodic quality assurance tests and training technicians in the use of higher-frequency scanners. The phantoms contain eight blocks of tissue-mimicking material; each block contains a spatially random distribution of suitably small anechoic spheres having a small distribution of diameters. The eight mean sphere diameters are distributed from 0.10 to 1.09 mm. The two phantoms differ primarily in terms of the frequency dependence of the backscatter coefficient of the background material. Because spheres have no preferred orientation, all three (spatial) dimensions of resolution contribute to sphere detection on an equal basis; thus, the resolution is termed 3-D. Two high-frequency scanners are compared. One employs single-element (fixed focus) transducers (25 and 55 MHz), and the other employs variable focus linear arrays (20, 30, and 40 MHz). The depth range for detection of spheres of each size is determined corresponding to determination of 3-D resolution as a function of depth. As expected, the single-element transducers are severely limited in useful imaging depth ranges compared with the linear arrays. In this preliminary report, only one human observer analyzed images.
机译:已经构建了两个模型,用于评估高频超声成像仪的性能。它们还允许进行定期质量保证测试,并培训使用高频扫描仪的技术人员。幻影包含八块模仿组织的材料。每个块包含具有较小直径分布的适当小的消声球的空间随机分布。八个平均球体直径分布在0.10到1.09 mm之间。这两个体模的主要区别在于背景材料的反向散射系数的频率依赖性。因为球体没有首选的方向,所以分辨率的所有三个(空间)维均等地有助于球体检测。因此,分辨率称为3-D。比较了两个高频扫描仪。一种采用单元素(固定焦点)换能器(25和55 MHz),另一种采用可变焦点线性阵列(20、30和40 MHz)。对应于作为深度的函数的3-D分辨率的确定,确定用于检测各种尺寸的球的深度范围。不出所料,与线性阵列相比,单元素换能器在有用的成像深度范围内受到了严重限制。在这份初步报告中,只有一名观察员对图像进行了分析。

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