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A nonlinear elasticity phantom containing spherical inclusions

机译:包含球形夹杂物的非线性弹性体模

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The strain image contrast of some in vivo breast lesions changes with increasing applied load. This change is attributed to differences in the nonlinear elastic properties of the constituent tissues suggesting some potential to help classify breast diseases by their nonlinear elastic properties. A phantom with inclusions and long-term stability is desired to serve as a test bed for nonlinear elasticity imaging method development, testing, etc. This study reports a phantom designed to investigate nonlinear elastic properties with ultrasound elastographic techniques. The phantom contains four spherical inclusions and was manufactured from a mixture of gelatin, agar and oil. The phantom background and each of the inclusions have distinct Young's modulus and nonlinear mechanical behavior. This phantom was subjected to large deformations (up to 20%) while scanning with ultrasound, and changes in strain image contrast and contrast-to-noise ratio between inclusion and background, as a function of applied deformation, were investigated. The changes in contrast over a large deformation range predicted by the finite element analysis (FEA) were consistent with those experimentally observed. Therefore, the paper reports a procedure for making phantoms with predictable nonlinear behavior, based on independent measurements of the constituent materials, and shows that the resulting strain images (e.g., strain contrast) agree with that predicted with nonlinear FEA.
机译:某些体内乳腺病变的应变图像对比度随施加的负荷增加而变化。这种变化归因于组成组织的非线性弹性特性的差异,这暗示了一些有助于通过其非线性弹性特性对乳腺疾病进行分类的潜力。需要具有夹杂物和长期稳定性的体模作为非线性弹性成像方法开发,测试等的测试平台。本研究报告了一种体模,旨在通过超声弹性成像技术研究非线性弹性特性。人体模型包含四个球形内含物,由明胶,琼脂和油的混合物制成。幻影背景和每个夹杂物具有不同的杨氏模量和非线性机械性能。在用超声波扫描时,该体模经受了大的变形(高达20%),并且研究了应变图像对比度以及夹杂物和背景之间的对比度噪声比随施加的变形而变化的情况。通过有限元分析(FEA)预测的大变形范围内的对比度变化与实验观察到的一致。因此,该论文报告了基于成分材料的独立测量来制作具有可预测的非线性行为的体模的过程,并显示了所得的应变图像(例如,应变对比)与使用非线性FEA预测的图像吻合。

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