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Tissue-mimicking materials for breast phantoms up to 50 GHz

机译:用于乳房幻影的组织模拟材料高达50 GHz

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Millimeter (mm)-wave imaging has been recently proposed as a new technique for breast cancer detection, based on the significant dielectric contrast between healthy and tumor tissues. Here we propose a procedure to fabricate, electromagnetically characterize and preserve realistic breast tissue-mimicking phantoms for testing mm-wave imaging prototypes. Low-cost, non-toxic and easy-to-produce mixtures made of sunflower oil, water and gelatin were prepared and their dielectric properties were for the first time measured in the (0.5-50) GHz frequency range using a coaxial probe kit. Different oil and gelatin percentages were tested. An alternative recipe based on a waste-oil hardener was also proposed. Finally, water and sunflower oil were investigated as preservation media. The mixtures electromagnetic properties were in good agreement with those of human breast ex vivo samples. By changing the ingredient concentrations or using different solidifying agents it was possible to mimic different tissue types. Besides, we show that sunflower oil represents an effective preservation medium for the developed materials. The first breast phantom mimicking a tumor mass into healthy tissues up to 50 GHz was also successfully fabricated. Results demonstrated the potential of the designed recipes to mimic breast tissues with different biological characteristics, preserving dielectric properties over time. Thus, this study represents a fundamental step towards the development of heterogeneous breast phantoms able to mimic the electromagnetic behavior of healthy and tumor tissues for mm-wave imaging applications.
机译:毫米(mm)-wave成像最近已经提出作为乳腺癌检测的新技术的基础上,健康组织和肿瘤组织之间的电介质显著对比度。在这里,我们提出以制造过程中,电磁表征和保持逼真乳房仿组织模体中的测试毫米波成像原型。低成本,无毒性和易于食材制成葵花子油,水和明胶的混合物制备和它们的介电特性是用于使用同轴探针试剂盒中(0.5-50)GHz频率范围内测量的第一时间。不同油和明胶百分比进行了测试。还有人提出了基于废油固化剂的替代配方。最后,水和葵花籽油进行了调查作为保存介质。混合物的电磁特性吻合较好与人类乳腺癌的体外样品。通过改变成分的浓度或使用不同的固化剂是可能的模拟物不同的组织类型。此外,我们表明,葵花籽油为代表的发达材料的有效保存培养基中。第一乳房假体模仿肿瘤块到健康组织高达50 GHz也成功制造。结果表明所设计的配方的电位模拟乳腺组织具有不同的生物学特性,随着时间的推移保持介电性能。因此,本研究是朝着异构乳房幻影能够为毫米波成像应用健康组织和肿瘤组织的模拟物的电磁行为的发展的一个基本步骤。

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