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Laboratory Designs and Validations of a Glandularity-adjustable Dual-purpose Breast Tissue Phantom

机译:腺体可调节的两用乳房组织幻影的实验室设计和验证

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The objectives of this study were to develop and evaluate a breast tissue equivalent phantom that can be used for dual purposes, conventional x-ray imaging and ultrasonography. This phantom was designed based on the prototype of an intralipid-gel soft tissue mimicking phantom used for laser photothermal therapy. The glandularities and the densities of the phantom can be adjusted by modifying the ratio of intralipid and other ingredients and adding fiber powders. An adipose tissue phantom and a glandular tissue phantom were firstly developed and phantoms of different glandularities were further developed through mixing different weight proportions of adipose and glandular. To validate the properties of the phantom for the applications of x-ray imaging techniques, three methods were employed: (1) the compositions of the elements contained in the phantoms were estimated through calculations; (2) the x-ray mass attenuation coefficients of the phantom were calculated based on the elemental compositions; (3) the x-ray photon energies deposit in the phantoms with different glandularities were simulated using Geant4 Simulation Tool Kit. The results showed high agreements with the real breast tissues at corresponding breast glandularities. For the application in ultrasonography, the elasticity of the phantom was determined by measuring the value of Young's modulus and the value of 39 ± 10 kPa indicated the satisfactory of the requirement of being used as phantom for ultrasound imaging. Therefore, the phantoms developed in this study potentially provided a solution of dual-purpose breast tissue mimicking phantom in the needs of different level of glandularity.
机译:这项研究的目的是开发和评估可用于双重目的的乳房组织等效体模,即传统的X射线成像和超声检查。该体模是基于模仿激光的光热疗法的体模的脂质体内凝胶软组织的原型设计的。体模的腺体和密度可以通过改变脂质和其他成分的比例并添加纤维粉末来调节。首先发展了脂肪组织体模和腺体组织体模,并通过混合不同重量比例的脂肪和腺体,进一步发展了不同腺体的体模。为了验证体模在X射线成像技术中的应用性能,采用了三种方法:(1)通过计算估算体模中所含元素的组成; (2)根据元素组成计算出人体模型的X射线质量衰减系数。 (3)使用Geant4 Simulation Tool Kit对具有不同腺体的体模中的X射线光子能量沉积进行了模拟。结果显示在相应的乳房腺体上与真实的乳房组织高度吻合。对于超声检查应用,通过测量杨氏模量值来确定体模的弹性,并且39±10 kPa的值表明满足用作超声成像体模的要求。因此,在这项研究中开发的体模有可能为满足不同腺体需求的模仿体模的两用乳腺组织提供解决方案。

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