IEEE Trans Med Imaging. 2014 May;33(5):1148-62. doi: 10.1109/TMI.2014.2305846.
Quantification of regional myocardial motion and deformation from cardiac ultrasound is fostering considerable research efforts. Despite the tremendous improvements done in the field, all existing approaches still face a common limitation which is intrinsically connected with the formation of the ultrasound images. Specifically, the reduced lateral resolution and the absence of phase information in the lateral direction highly limit the accuracy in the computation of lateral displacements. In this context, this paper introduces a novel setup for the estimation of cardiac motion with ultrasound. The framework includes an unconventional beamforming technique and a dedicated motion estimation algorithm. The beamformer aims at introducing phase information in the lateral direction by producing transverse oscillations. The estimator directly exploits the phase information in the two directions by decomposing the image into two 2-D single-orthant analytic signals. An in silico evaluation of the proposed framework is presented on five ultra-realistic simulated echocardiographic sequences, where the proposed motion estimator is contrasted against other two phase-based solutions exploiting the presence of transverse oscillations and against block-matching on standard images. An implementation of the new beamforming strategy on a research ultrasound platform is also shown along with a preliminary in vivo evaluation on one healthy subject.
从心脏超声中定量评估局部心肌运动和变形正在引起相当多的研究工作。尽管该领域已经取得了巨大的进展,但所有现有的方法仍然面临着一个共同的限制,这与超声图像的形成密切相关。具体来说,横向分辨率的降低和横向方向上相位信息的缺失极大地限制了横向位移计算的准确性。在这种情况下,本文提出了一种用于超声估计心脏运动的新方法。该框架包括一种非常规的波束形成技术和一种专用的运动估计算法。该波束形成器旨在通过产生横向振动来引入横向相位信息。该估计器通过将图像分解成两个二维单半轴解析信号,直接利用两个方向的相位信息。在五个超真实模拟超声心动图序列上对所提出的框架进行了仿真评估,其中将所提出的运动估计器与利用横向振动的另外两种基于相位的解决方案以及在标准图像上的块匹配进行了对比。还展示了在研究超声平台上实现新的波束形成策略的情况,并对一名健康受试者进行了初步的体内评估。