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Acoustic radiation force impulse imaging: a parametric analysis of factors affecting image quality

机译:声辐射力脉冲成像:影响图像质量的因素的参数分析

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Acoustic radiation force impulse (ARFI) imaging utilizes brief, high energy, focused acoustic pulses to generate radiation force in tissue, and conventional diagnostic ultrasound methods to detect the resulting tissue displacements in order to image the mechanical properties of tissue. The goal of this work was to perform a parametric analysis of the effect of system parameters and target characteristics on image quality. METHODS: FEM simulations and phantom experiments have been performed using varying system configurations and tissue properties to determine their impact on ARFI image quality. Phantom experimental results were utilized to validate the FEM models. RESULTS: Matched simulation and FEM experiments support the validity of the FEM model. Due to the dynamic nature of ARFI excitation, lesion contrast is temporally dependent. Contrast efficiencies (CE) were computed immediately after force cessation, prior to appreciable wave propagation. CE does not vary with applied force, increases with lesion stiffness, and increases as the forcing volume size decreases with respect to the size of the structure being imaged. CONCLUSIONS: The response of tissue to ARFI excitation is complex and depends upon tissue geometry, forcing function geometry, and tissue mechanical and acoustic properties. These studies indicate that improved contrast in ARFI images will be achieved as forcing volume size decreases relative to the structure being imaged. Frame rate and thermal considerations present tradeoffs with small load volume sizes for ARFI imaging.
机译:声辐射力脉冲(ARFI)成像利用短暂的高能量聚焦声脉冲在组织中产生辐射力,并使用常规的诊断超声方法来检测所产生的组织位移,以对组织的机械特性成像。这项工作的目的是对系统参数和目标特性对图像质量的影响进行参数分析。方法:已经使用各种系统配置和组织特性进行了有限元模拟和幻像实验,以确定它们对ARFI图像质量的影响。虚拟实验结果被用来验证有限元模型。结果:匹配的仿真和FEM实验支持FEM模型的有效性。由于ARFI激发的动态特性,病变对比度在时间上是依赖的。在力停止后,可观的波传播之前立即计算对比度效率(CE)。 CE不会随所施加的力而变化,而是随病灶刚度而增加,并且随着施力体积的大小相对于要成像的结构的大小而减小。结论:组织对ARFI激发的反应是复杂的,并且取决于组织的几何形状,强迫功能的几何形状以及组织的机械和声学特性。这些研究表明,相对于要成像的结构,随着体积大小的减小,ARFI图像中的对比度将得到改善。帧速率和散热方面的考虑为ARFI成像提供了较小负载量尺寸的折衷方案。

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