首页> 外文会议>Proceedings of the ASME international mechanical engineering congress and exposition 2009 >QUANTITATIVE IMAGES OF ELASTIC MODULUS USING TISSUE DYNAMICS IN THE REGION OF IMPULSIVE ACOUSTIC RADIATION FORCE EXCITATION
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QUANTITATIVE IMAGES OF ELASTIC MODULUS USING TISSUE DYNAMICS IN THE REGION OF IMPULSIVE ACOUSTIC RADIATION FORCE EXCITATION

机译:脉冲声辐射力激发区域中基于组织动力学的弹性模量定量图像

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Focused, impulsive, acoustic radiation force excitations can generate shear waves with microns of displacement in tissue. The speed of shear wave propagation is directly related to the tissue's shear modulus, which can be correlated with tissue pathology to diagnose disease and to follow disease progression. Shear wave speed reconstruction has conventionally been measured over spatial domains that are spatially-offset from the region of excitation (ROE). While these methods are very robust in clinical studies characterizing large, homogeneous organs, their spatial resolution can be limited when generating quantitative images of shear elasticity. The ROETTP algorithm measures time-to-peak (TTP) displacements along the axis-of-symmetry in the ROE of an impulsive acoustic radiation force excitation. These TTP displacements are inversely proportional to shear stiffness and are dependent on the excitation-beam geometry. Lookup tables (LUTs) specific to an excitation/displacement tracking transducer configuration were generated from simulated data, and shear stiffnesses were estimated from experimental data as a function of depth using the LUTs. Quantitative ROETTP shear elasticity images of spherical inclusions in a calibrated tissue-mimicking phantom have been generated. Shear wave reflections and interference can lead to an underestimation of the absolute reconstructed shearrnmodulus (20-25%), but the ratio of absolute shear stiffnesses is well-preserved (3.3 vs. 3.5).
机译:聚焦的脉冲声辐射力激发会在组织中产生具有微小位移的剪切波。剪切波传播的速度与组织的剪切模量直接相关,而剪切模量可以与组织病理学相关联以诊断疾病并跟踪疾病进展。传统上,已经在相对于激发区域(ROE)在空间上偏移的空间域上测量了剪切波速度的重建。尽管这些方法在表征大型,均质器官的临床研究中非常可靠,但是当生成定量的剪切弹性图像时,它们的空间分辨率可能会受到限制。 ROETTP算法测量脉冲声辐射力激励的ROE中沿对称轴的时间峰值(TTP)位移。这些TTP位移与剪切刚度成反比,并取决于激发光束的几何形状。从模拟数据生成特定于激励/位移跟踪换能器配置的查找表(LUT),并使用LUT从实验数据估计剪切刚度作为深度的函数。定量的模仿组织模型中球形夹杂物的定量ROETTP剪切弹性图像已生成。剪切波的反射和干扰可能会导致低估了绝对重建的剪切模量(20-25%),但是绝对剪切刚度的比率得到了很好的保留(3.3 vs. 3.5)。

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