论文标题

通过差异相通过与角化合物形成对比的速度成像

Speed-of-sound imaging by differential phase contrast with angular compounding

论文作者

Khetan, Nikunj, Weber, Timothy, Mertz, Jerome

论文摘要

我们描述了一种揭示回声样本中的速度变化(SOS)变化的技术。该技术使用基于平面波化合物的标准脉冲回波成像使用的接收数据相同,并且可以并行操作。随机分布在整个样品中的点状散射器,用作由样品中的差异结构引起的下游发射光束移动的局部探针。相移以不同的方式监测,提供了局部样品SOS的横向梯度的特征。签名的对比是通过一种角色复合方法来增强的,该方法提供了``对图像的启发''的``焦点''控制清晰度的控制,从而使样品中的样本内内包含在样本中的视觉定位可以在2D中进行2D执行。当用标准的B模式成像时,可以在3D中进行codefters tode torce torce torce torce torce torce tode cortiftion。差异对比度(DPC)成像,并大致概括了用弹性幻像获得的实验结果,我们证明了我们的技术很容易揭示相对的SOS变异,最终可以实时实时使用。

We describe a technique to reveal speed-of-sound (SoS) variations within an echogenic sample. The technique uses the same receive data as standard pulse-echo imaging based on plane-wave compounding, and can be operated in parallel. Point-like scatterers randomly distributed throughout the sample serve as local probes of the downstream transmit-beam phase shifts caused by aberrating structures within the sample. Phase shifts are monitored in a differential manner, providing signatures of transverse gradients of the local sample SoS. The contrast of the signatures is augmented by a method of angular compounding, which provides ``focus" control of the image sharpness, which, in turn, enables a visual localization of aberrating inclusions within the sample on the fly. The localization can be performed in 2D when operated with standard B-mode imaging, or in 3D when operated with C-mode imaging. Finally, we present a wave-acoustic forward model that provides insight into the principle of differential phase contrast (DPC) imaging, and roughly recapitulates experimental results obtained with an elastography phantom. In particular, we demonstrate that our technique easily reveals relative SoS variations as small as 0.5\% in real time. Such imaging may ultimately be useful for clinical diagnosis of pathologies in soft tissue.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源