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Ultrasonic texture motion analysis: theory and simulation

机译:超声波纹理运动分析:理论与仿真

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A theoretical model was previously developed to evaluate the relationship between the dynamics of ultrasonic speckle and its underlying tissue. The model is divided into an instrumental part represented by the point spread function (in the far field) of the ultrasonic apparatus and a moving tissue component describing the changing tissue acoustical impedance structure as a function of time. In this paper, a theoretical study of the correlation between various linear transformations of the tissue and the corresponding ultrasonic speckle motion is performed, based on a 2-D extension of the envelope crosscorrelation analysis of a narrow-band gaussian noise. In the linear scan case, obviously, tissue translation generates an identical speckle translation. However, tissue/speckle motion correlation decreases with increasing rotation and/or biaxial deformation; lateral deformation (perpendicular to the beam propagation axis) being much less sensitive. With respect to the transducer frequency, the rotation and the axial deformation of the tissue shows a better relationship with their respective speckle motion at lower frequencies while lateral deformation correlation is independent of the pulse frequency. With respect to beam (pulse) size parameters, tissue/speckle correlation decreases with rotation when a wide ultrasonic beam is used while the axial deformation correlation decreases with the axial duration of the pulse. This study sets the ground for the development of an ultrasonic strain gauge particularly useful for the assessment of biomechanical soft tissue properties based on speckle tracking.
机译:以前开发了理论模型以评估超声波斑点的动态与其底层组织之间的关系。该模型被分成由超声波设备的点扩散功能(在远场中的点)表示的仪器部分和作为时间的函数的改变组织声阻抗结构的移动组织组件。在本文中,基于窄带高斯噪声的包络横相关分析的2-D延伸,执行组织的各种线性变换与相应的超声波斑点运动之间的相关性的理论研究。在线性扫描箱中,显然,组织转换产生相同的散斑翻译。然而,组织/散斑运动相关随着旋转和/或双轴变形而降低;横向变形(垂直于光束传播轴)敏感得多。关于换能器频率,组织的旋转和轴向变形显示在较低频率下与它们各自的散斑运动的关系更好,而横向变形相关性与脉冲频率无关。关于光束(脉冲)尺寸参数,当使用宽超声波梁时,组织/散斑相关随着旋转梁的旋转束随着脉冲的轴向持续时间而减小时,随着较宽的超声波束而减小。本研究设定了基于散斑跟踪的生物力学软组织特性进行了超声波应变仪的开发的地面。

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