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Performance comparison of rigid and affine models for motion estimation using ultrasound radio-frequency signals

机译:使用超声射频信号进行运动估计的刚性模型和仿射模型的性能比较

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摘要

Tissue motion estimation is widely used in many ultrasound techniques. Rigid-model-based and nonrigid-modelbased methods are two main groups of space-domain methods of tissue motion estimation. The affine model is one of the commonly used nonrigid models. The performances of the rigid model and affine model have not been compared on ultrasound RF signals, which have been demonstrated to obtain higher accuracy, precision, and resolution in motion estimation compared with B-mode images. In this study, three methods, i.e., the normalized cross-correlation method with rigid model (NCC), the optical flow method with rigid model (OFRM), and the optical flow method with affine model (OFAM), are compared using ultrasound RF signals, rather than the B-mode images used in previous studies. Simulations, phantom, and in vivo experiments are conducted to make the comparison. In the simulations, the root-mean-square errors (RMSEs) of axial and lateral displacements and strains are used to assess the accuracy of motion estimation, and the elastographic signal-tonoise ratio (SNRe) and contrast-to-noise ratio (CNRe) are used to evaluate the quality of axial strain images. In the phantom experiments, the registration error between the pre- and postdeformation RF signals, as well as the SNRe and CNRe of axial strain images, are utilized as the evaluation criteria. In the in vivo experiments, the registration error is used to evaluate the estimation performance. The results show that the affinemodel- based method (i.e., OFAM) obtains the lowest RMSE or registration error and the highest SNRe and CNRe among all the methods. The affine model is demonstrated to be superior to the rigid model in motion estimation based on RF signals.
机译:组织运动估计在许多超声技术中被广泛使用。基于刚性模型和基于非刚性模型的方法是组织运动估计的空间域方法的两大类。仿射模型是常用的非刚性模型之一。刚性模型和仿射模型的性能尚未在超声RF信号上进行比较,与B模式图像相比,已证明在运动估计中可以获得更高的准确性,精度和分辨率。在这项研究中,使用超声波RF比较了三种方法,即刚性模型的归一化互相关方法(NCC),刚性模型的光流方法(OFRM)和仿射模型的光流方法(OFAM)。信号,而不是先前研究中使用的B模式图像。进行了模拟,体模和体内实验以进行比较。在仿真中,轴向和横向位移和应变的均方根误差(RMSE)用于评估运动估计的准确性,以及弹性成像的信噪比(SNRe)和对比度噪声比(CNRe )用于评估轴向应变图像的质量。在体模实验中,将变形前和变形后RF信号之间的配准误差以及轴向应变图像的SNRe和CNRe用作评估标准。在体内实验中,配准误差用于评估估计性能。结果表明,在所有方法中,基于仿射模型的方法(即OFAM)获得的最低RMSE或配准误差以及最高的SNRe和CNRe。仿射模型在基于RF信号的运动估计中被证明优于刚性模型。

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