Brusseau Elisabeth, Bernard Adeline, Meynier Cyril, Chaudet Philippe, Detti Valérie, Férin Guillaume, Basset Olivier, Nguyen-Dinh An
Université de Lyon, INSA-Lyon, Université Claude Bernard Lyon 1, UJM-Saint Etienne, CNRS, Inserm, CREATIS UMR 5220, U1206, Lyon, France.
Université de Lyon, INSA-Lyon, Université Claude Bernard Lyon 1, UJM-Saint Etienne, CNRS, Inserm, CREATIS UMR 5220, U1206, Lyon, France.
Ultrasound Med Biol. 2017 Dec;43(12):2904-2913. doi: 10.1016/j.ultrasmedbio.2017.06.018. Epub 2017 Oct 12.
Ultrasound applications such as elastography can benefit from 3-D data acquisition and processing. In this article, we describe a specific ultrasound probe, designed to acquire series of three adjacent imaging planes over time. This data acquisition makes it possible to consider the out-of-plane motion that can occur at the central plane during medium scanning, and is proposed with the aim of improving the results of strain imaging. In this first study, experiments were conducted on phantoms, and controlled axial and elevational displacements were applied to the probe using a motorized system. Radiofrequency ultrasound data were acquired at a 40-MHz sampling frequency with an Ultrasonix ultrasound scanner, and processed using a 3-D motion estimation method. For each of the 2-D regions of interest of the central plane in pre-compression data, a 3-D search was run to determine its corresponding version in post-compression data, with this search taking into account the region-of-interest deformation model chosen. The results obtained with the proposed ultrasound data acquisition and strain estimation were compared with results from a classic approach and illustrate the improvement produced by considering the medium's local displacements in elevation, with notably an increase in the mean correlation coefficients achieved.
诸如弹性成像之类的超声应用可受益于三维数据采集和处理。在本文中,我们描述了一种特定的超声探头,其设计用于随时间获取三个相邻成像平面的序列。这种数据采集使得考虑在介质扫描期间中心平面可能发生的平面外运动成为可能,并且提出该方法的目的是改善应变成像的结果。在这项初步研究中,我们对仿体进行了实验,并使用电动系统对探头施加可控的轴向和仰角位移。使用Ultrasonix超声扫描仪以40MHz的采样频率采集射频超声数据,并使用三维运动估计方法进行处理。对于预压缩数据中中心平面的每个二维感兴趣区域,进行三维搜索以确定其在压缩后数据中的对应版本,该搜索考虑了所选的感兴趣区域变形模型。将所提出的超声数据采集和应变估计所获得的结果与经典方法的结果进行比较,结果表明考虑介质在仰角方向的局部位移可带来改善,尤其是平均相关系数有所提高。