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首页> 外文期刊>Physics in medicine and biology. >Spherical lesion phantoms for testing the performance of elastography systems.
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Spherical lesion phantoms for testing the performance of elastography systems.

机译:球形病变体模,用于测试弹性成像系统的性能。

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A set of three cubic one-litre phantoms containing spherical simulated lesions was produced for use in comparing lesion detection performance of different elastography systems. The materials employed are known to be stable in heterogeneous configurations regarding geometry and elastic contrast identical with (storage modulus of lesion material) / (storage modulus of background material), and regarding ultrasound and NMR properties. The materials mimic soft tissues in terms of elastic, ultrasound and NMR properties. Each phantom has only one value of elastic contrast (3.3, 4.6 or 5.5) and contains arrays of 1.6 mm, 2 mm, 3 mm and 4 mm diameter spherical simulated lesions. All the spheres of a given diameter are arranged in a regular array with coplanar centres. Elastograms of an array made with ultrasound allow determination of the depth range over which lesions of that diameter and elastic contrast can be detected. Two phantoms are made from agar-plus-gelatin-based materials, and one is made from oil-in-gelatin dispersions. The methods for producing the phantoms are described in detail. Lesion detection performances for two ultrasound systems, both operating at about 7.5 MHz and focused at about 5 cm, were quantified with distinctions between the two systems demonstrated. Neither system was capable of detecting any of the 1.6 mm lesions. Phantoms such as these should be useful in research labs that are refining hardware and/or software for elastography.
机译:制作了一组包含球形模拟病变的三个立方一升体模,用于比较不同弹性成像系统的病变检测性能。已知所使用的材料在几何形状和弹性对比度与(病变材料的储能模量)/(背景材料的储能模量)相同,以及关于超声和NMR特性方面在异质构型中是稳定的。该材料在弹性,超声和NMR特性方面模仿软组织。每个体模仅具有一个弹性对比值(3.3、4.6或5.5),并包含直径1.6毫米,2毫米,3毫米和4毫米的球形模拟病变阵列。给定直径的所有球体均以规则的阵列排列,并具有共面的中心。用超声制成的阵列的弹性图允许确定深度范围,在该深度范围内可以检测到该直径的损伤和弹性对比。两种幻影由琼脂加明胶基材料制成,一种幻影由明胶油分散液制成。详细描述了产生幻影的方法。量化了两个超声系统的病变检测性能,这两个超声系统都工作在约7.5 MHz且聚焦在约5 cm处,并通过两个系统之间的区别进行了量化。两种系统都无法检测任何1.6毫米的病灶。诸如此类的幻影在研究实验室中正在有用,这些实验室正在完善用于弹性成像的硬件和/或软件。

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