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Sound speed based patient-specific biomechanical modeling for registration of USCT volumes with X-ray mammograms

机译:基于声速的患者特定生物力学模型,用于将USCT体积与X射线乳房X线照片进行配准

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Ultrasound Computer Tomography is an upcoming imaging modality for early breast cancer detection. For evaluation of the method, comparison with the standard method X-ray mammography is of strongest interest. To overcome the significant differences in dimensionality and compression state of the breast, in earlier work a registration method based on biomechanical modeling of the breast was proposed. However only homogeneous models could be applied, i.e. inner structures of the breast were neglected. In this work we extend the biomechanical modeling of the breast by estimating patient-specific tissue parameters automatically from the speed of sound volume. Two heterogeneous models are proposed modeling a quadratic and an exponential relationship between speed of sound and tissue stiffness. The models were evaluated using phantom images and clinical data. The size of all lesions is better preserved using heterogeneous models, especially using an exponential relationship. The presented approach yields promising results and gives a physical justification to our registration method. It can be considered as a first step towards a realistic modeling of the breast.
机译:超声计算机断层扫描是一种早期乳腺癌早期检测的成像方式。为了评估该方法,与标准方法X射线乳腺摄影相比较是最令人感兴趣的。为了克服乳房的尺寸和压缩状态的显着差异,在较早的工作中,提出了一种基于乳房生物力学模型的配准方法。但是,只能应用同质模型,即忽略了乳房的内部结构。在这项工作中,我们通过从音量的速度自动估计患者特定的组织参数,扩展了乳房的生物力学模型。提出了两个异质模型,它们对声速和组织刚度之间的二次关系和指数关系进行建模。使用幻影图像和临床数据评估模型。使用异质模型,尤其是使用指数关系,可以更好地保留所有病变的大小。提出的方法产生了令人鼓舞的结果,并为我们的注册方法提供了物理依据。可以将其视为对乳房进行逼真的建模的第一步。

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