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Model-Based Reconstructive Elasticity Imaging Using Ultrasound

机译:基于模型的超声重建弹性成像

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Elasticity imaging is a reconstructive imaging technique where tissue motion in response to mechanical excitation is measured using modern imaging systems, and the estimated displacements are then used to reconstruct the spatial distribution of Young's modulus. Here we present an ultrasound elasticity imaging method that utilizes the model-based technique for Young's modulus reconstruction. Based on the geometry of the imaged object, only one axial component of the strain tensor is used. The numerical implementation of the method is highly efficient because the reconstruction is based on an analytic solution of the forward elastic problem. The model-based approach is illustrated using two potential clinical applications: differentiation of liver hemangioma and staging of deep venous thrombosis. Overall, these studies demonstrate that model-based reconstructive elasticity imaging can be used in applications where the geometry of the object and the surrounding tissue is somewhat known and certain assumptions about the pathology can be made.
机译:弹性成像是一种重建成像技术,其中使用现代成像系统测量响应机械激励的组织运动,然后将估计的位移用于重建杨氏模量的空间分布。在这里,我们介绍一种超声弹性成像方法,该方法利用基于模型的技术进行杨氏模量重建。根据成像对象的几何形状,仅使用应变张量的一个轴向分量。该方法的数值实现是高效的,因为重建是基于前向弹性问题的解析解。使用两种潜在的临床应用说明了基于模型的方法:肝血管瘤的分化和深静脉血栓形成的分期。总体而言,这些研究表明,基于模型的重建弹性成像可用于某些情况下可以了解对象和周围组织的几何形状并且可以对病理做出某些假设的应用。

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