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Tunability of Acoustic and Mechanical Behaviors in Breast Tissue Mimicking Materials

机译:模仿乳腺组织的声学和机械行为的可调谐性

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In radiology practices, the ultrasound-guided breast biopsy is among the most commonly performed minimally invasive procedures. However, many radiology residents in their graduate residencies are found with little or no hands-on experience with ultrasound-guided breast procedures. To enhance safety, the problem can be solved by the use of anthropomorphic training phantoms which can provide the resident with realistic ultrasound imaging and needle insertion haptic feedback. Stiffness and acoustic properties of breast tissues vary between different people. The training breast phantom should be able to possess different acoustic and mechanical properties which conform the inconsistencies found in real tissues among people. Therefore, this paper investigates the tunability of acoustic and mechanical behaviors in breast tissue mimicking materials (TMMs). Experiments of central composite design (CCD) with a center point, four corner points, and an additional four axis points were used to fit the non-linear regression model of the speed of sound. The same design of experiment approach was then used to fit the second-order response surface of the attenuation coefficient. Suitable series of tissue mimicking materials for the glandular tissue and malignant lesion were suggested. Latin hypercube design method was conducted to evaluate the main factors that affected the mechanical property (Young’s modulus) of tissue mimicking materials. The results showed that the recipe of tissue mimicking materials could be customized to possess different acoustic and mechanical properties which conform the inconsistencies found in real breast tissues.
机译:在放射学实践中,超声引导下的乳腺活检是最常见的微创手术之一。但是,发现许多研究生居住的放射科住院医师很少或根本没有超声引导下的乳房手术的实际操作经验。为了提高安全性,可以通过使用拟人训练模型来解决该问题,该模型可以为住院者提供逼真的超声成像和针头插入触觉反馈。乳房组织的刚度和声学特性因人而异。训练的乳房幻像应该能够具有不同的声学和机械特性,这些特性与人之间真实组织中发现的不一致相符。因此,本文研究了乳腺组织模拟材料(TMM)中声学和机械行为的可调谐性。具有中心点,四个角点和另外四个轴点的中央复合设计(CCD)实验用于拟合声速的非线性回归模型。然后使用相同的实验方法设计来拟合衰减系数的二阶响应面。建议了适用于腺组织和恶性病变的组织模拟材料系列。进行了拉丁超立方体设计方法,以评估影响组织模仿材料的机械性能(杨氏模量)的主要因素。结果表明,可以对组织模仿材料的配方进行定制,使其具有不同的声学和机械特性,从而与真实乳腺组织中发现的不一致相符。

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