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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >A finite-element method model of soft tissue response to impulsive acoustic radiation force
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A finite-element method model of soft tissue response to impulsive acoustic radiation force

机译:软组织对脉冲声辐射力响应的有限元模型

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Several groups are studying acoustic radiation force and its ability to image the mechanical properties of tissue. Acoustic radiation force impulse (ARFI) imaging is one modality using standard diagnostic ultrasound scanners to generate localized, impulsive, acoustic radiation forces in tissue. The dynamic response of tissue is measured via conventional ultrasonic speckle-tracking methods and provides information about the mechanical properties of tissue. A finite-element method (FEM) model has been developed that simulates the dynamic response of tissues, with and without spherical inclusions, to an impulsive acoustic radiation force excitation from a linear array transducer. These FEM models were validated with calibrated phantoms. Shear wave speed, and therefore elasticity, dictates tissue relaxation following ARFI excitation, but Poisson's ratio and density do not significantly alter tissue relaxation rates. Increased acoustic attenuation in tissue increases the relative amount of tissue displacement in the near field compared with the focal depth, but relaxation rates are not altered. Applications of this model include improving image quality, and distilling material and structural information from tissue's dynamic response to ARFI excitation. Future work on these models includes incorporation of viscous material properties and modeling the ultrasonic tracking of displaced scatterers.
机译:几个小组正在研究声辐射力及其成像组织机械特性的能力。声辐射力脉冲(ARFI)成像是一种使用标准诊断超声扫描仪在组织中生成局部脉冲声辐射力的方式。组织的动态响应是通过常规的超声波斑点跟踪方法测量的,并提供有关组织机械性能的信息。已经开发了一种有限元方法(FEM)模型,该模型可以模拟具有或不具有球形夹杂物的组织对线性阵列换能器的脉冲声辐射力激发的动态响应。这些FEM模型已通过校准的体模进行了验证。剪切波的速度以及因此的弹性决定了ARFI激发后的组织松弛,但是泊松比和密度不会显着改变组织松弛率。与焦点深度相比,增加的组织中的声音衰减会增加近场中组织位移的相对量,但松弛率不会改变。该模型的应用包括改善图像质量,并从组织对ARFI激发的动态响应中提取材料和结构信息。这些模型的未来工作包括并入粘性材料特性和对位移散射体的超声跟踪建模。

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