Clinical Physics Laboratory, Department of Pediatrics, Radboud University Nijmegen MedicalCenter, Nijmegen, The Netherlands.
Phys Med Biol. 2010 Jun 7;55(11):3201-18. doi: 10.1088/0031-9155/55/11/014. Epub 2010 May 17.
Ultrasound strain imaging is used to measure local tissue deformations. Usually, only strains along the ultrasound beam are estimated, because those estimates are most precise, due to the availability of phase information. For estimating strain in other directions we propose to steer the ultrasound beam at an angle, which allows estimating different projections of the 2D strain tensor, while phase information remains available. This study investigates beam steering at maximally three different angles to determine the full 2D strain tensor. The method was tested on simulated and experimental data of an inclusion phantom and a vessel phantom. The combination of data from a non-steered acquisition and acquisitions at a large positive and an equally large but negative steering angle enabled the most precise estimation of the strain components. The method outperforms conventional methods that do not use beam steering.
超声应变成像用于测量局部组织变形。通常,仅估计超声束沿线的应变,因为由于相位信息的可用性,这些估计最为精确。为了估计其他方向的应变,我们建议将超声束引导至一个角度,这允许估计二维应力量子的不同投影,同时保持相位信息可用。本研究在包含体模和血管体模的模拟和实验数据上调查了在最大三个不同角度上的波束转向,以确定完整的二维应力量子。该方法在非转向采集的数据以及在大正角和同样大的负角转向采集的数据的组合上进行了测试,从而能够最精确地估计应变分量。该方法优于不使用波束转向的常规方法。