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3D Quasi-Static Ultrasound Elastography With Plane Wave In Vivo

机译:体内平面波的3D准静态超声弹性成像

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In biological tissue, an increase in elasticity is often a marker of abnormalities. Techniques such as quasi-static ultrasound elastography have been developed to assess the strain distribution in soft tissues in two dimensions using a quasi-static compression. However, as abnormalities can exhibit very heterogeneous shapes, a three dimensional approach would be necessary to accurately measure their volume and remove operator dependency. Acquisition of volumes at high rates is also critical to performing real-time imaging with a simple freehand compression. In this study, we developed for the first time a 3D quasi-static ultrasound elastography method with plane waves that estimates axial strain distribution in vivo in entire volumes at high volume rate. Acquisitions were performed with a 2D matrix array probe of 2.5 MHz frequency and 256 elements. Plane waves were emitted at a volume rate of 100 volumes/s during a continuous motorized and freehand compression. 3D B-mode volumes and 3D cumulative axial strain volumes were successfully estimated in inclusion phantoms and in ex vivo canine liver before and after a high intensity focused ultrasound ablation. We also demonstrated the in vivo feasibility of the method using freehand compression on the calf muscle of a human volunteer and were able to retrieve 3D axial strain volume at a high volume rate depicting the differences in stiffness of the two muscles which compose the calf muscle. 3D ultrasound quasi-static elastography with plane waves could become an important technique for the imaging of the elasticity in human bodies in three dimensions using simple freehand scanning.
机译:在生物组织中,弹性增加通常是异常的标志。已经开发了诸如准静态超声弹性成像之类的技术,以使用准静态压缩来评估二维软组织中的应变分布。然而,由于异常可能表现出非常不同的形状,因此需要一种三维方法来准确地测量其体积并消除操作员的依赖性。高速采集体积对于通过简单的徒手压缩执行实时成像也至关重要。在这项研究中,我们首次开发了一种利用平面波的3D准静态超声弹性成像方法,该方法可估计高体积率下体内整个体积中的轴向应变分布。使用2.5 MHz频率和256个元素的2D矩阵探头进行采集。在连续的电动和徒手压缩过程中,平面波以100个体积/秒的体积速率发射。在高强度聚焦超声消融之前和之后,成功地估计了包含体模和离体犬肝中的3D B模式体积和3D累积轴向应变体积。我们还证明了在人类志愿者的小腿肌肉上使用徒手压缩的方法的体内可行性,并且能够以高容积率检索3D轴向应变体积,描绘了组成小腿肌肉的两条肌肉的刚度差异。平面波的3D超声准静态弹性成像可以成为使用简单的徒手扫描在三个维度上成像人体弹性的一项重要技术。

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    《IEEE Transactions on Medical Imaging》 |2017年第2期|357-365|共9页
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  • 入库时间 2022-08-17 13:03:25

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