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Speckle motion artifact under tissue rotation

机译:组织旋转下的斑点运动伪像

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摘要

Speckle patterns in ultrasound images may move in a way which bears no simple relationship to the motion of the corresponding tissues. In some instances the speckle motion replicates the underlying tissue motion, in others it does not. The authors name "speckle motion artifact" the difference between the speckle and the underlying tissue motion. An echographic image formation model is used to study the motion artifact produced by a rotating phantom and observed by a linear scan imaging system with a Gaussian beam. The authors propose that when the tissue is modeled as a random array of small and numerous scatterers, such motion aberration be accounted for by the 2D phase characteristics of the imaging system. An analytic prediction of this motion artifact in relation to the imaging system characteristics (beam width, transducer frequency, pulse duration) is presented. It is shown that the artifact results from the curvature of the system point spread function, which in turn determines the curvature of the 2D phase characteristics. To the authors' knowledge, it is the first time a comprehensive model of ultrasonic speckle motion artifact is presented. The model has been developed to study rotation-induced artifact; the method is however quite general and can be extended to study the effects of other tissue motion, in particular deformation and shear.
机译:超声图像中的斑点图案可能以与相应组织的运动没有简单关系的方式移动。在某些情况下,斑点运动会复制潜在的组织运动,而在其他情况下则不会。作者将“斑点运动伪影”命名为斑点和基础组织运动之间的差异。回波图像形成模型用于研究由旋转体模产生并由具有高斯光束的线性扫描成像系统观察到的运动伪影。作者提出,当将组织建模为小且众多散射体的随机阵列时,这种运动像差可通过成像系统的2D相位特征来解决。提出了与成像系统特性(光束宽度,换能器频率,脉冲持续时间)相关的运动伪影的解析预测。结果表明,伪影是由系统点扩展函数的曲率产生的,而系统点扩展函数的曲率又决定了2D相位特性的曲率。据作者所知,这是首次提出超声波散斑运动伪像的综合模型。该模型已开发用于研究旋转引起的伪影;但是,该方法非常通用,可以扩展到研究其他组织运动的影响,尤其是变形和剪切。

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